明日の足診療シリーズIII 足のスポーツ外傷・障害の診かた

出版社: 全日本病院出版会
著者:
発行日: 2022-11-10
分野: 臨床医学:外科  >  整形外科学
ISBN: 9784865198164
電子書籍版: 2022-11-10 (第1版第1刷)
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スポーツに起因する足の疾患を完全網羅!
アスリートだけでなく部活動や日常的な運動によっても発生する外傷や障害、その診断や治療は患者のスポーツ生命をも左右することがあります。
エキスパートによる疾患や最新研究の解説だけでなく、プロ・アマ問わず患者に寄り添う治療法、その決定の仕方も紹介しています。

目次

  • I章 総 論
     1 スポーツ動作における足のバイオメカニクス
     2 診 断
     3 保存療法
      1)運動療法
      2)装具療法と物理療法
      3)体外衝撃波療法
      4)PRP療法
      5)超音波ガイド下インターベンション
     4 足・足関節の鏡視下手術(歴史,道具,ポータル作成に必要な解剖)
     5 メディカルチェック

    II章 各 論 <下腿>
     1 新鮮アキレス腱断裂
      1)保存療法vs手術療法
      2)保存療法
      3)手術療法
     2 陳旧性アキレス腱断裂
     3 アキレス腱障害
      1)アキレス腱付着部障害(Haglund病を含む)
      2)アキレス腱症
     4 腓腹・ヒラメ筋肉離れ
     5 腓骨筋腱障害
     6 シンスプリント
     7 下腿慢性コンパートメント症候群

    III章 各 論 <足関節>
     1 距骨骨軟骨損傷
     2 足関節外側靱帯損傷
      1)解 剖
      2)診断(足関節捻挫における鑑別診断も含む;距骨外側突起骨折など)
      3)足関節捻挫:新鮮損傷の治療
      4)慢性足関節不安定症:保存療法
      5)慢性足関節不安定症:手術療法:修復術および補強術
      6)慢性足関節不安定症:手術療法:再建術
     3 距骨下関節不安定症
     4 遠位脛腓靱帯損傷
     5 三角靱帯損傷
     6 足関節後方インピンジメント症候群
     7 足関節前方インピンジメント症候群
     8 足根洞症候群(accessory anterolateral talar facet impingement,
              peroneal spastic flatfootを含む)

    IV章 各 論 <足部>
     1 成長期の足部障害
     2 足部捻挫
      1)Lisfranc(リスフラン)関節損傷
      2)Chopart(ショパール)関節損傷
     3 アスリートの母趾MTP関節外傷・障害
     4 有痛性外脛骨
     5 足底腱膜炎と足底腱膜断裂
     6 内側足底神経障害(Jogger’s foot)
     7 立方骨症候群(cuboid syndrome)

    V章 各 論 <疲労骨折>
     1 疫学(発生部位,競技種目別特徴など)
     2 足関節内果
     3 舟状骨
     4 第5中足骨
     5 その他:踵骨,中足骨(審美系に多い第2・3基部底側骨折を含む),母趾基節骨

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本参考文献は電子書籍掲載内容を元にしております。

I章 総論

P.16 掲載の参考文献
1) Isman, R. E., Inman, V. T. : Anthropometric studies of the human foot and ankle. Bulletin of prosthetics research, Spring, 97-129, 1969.
2) Turner, M. S., Smillie I. S. : The effect of tibial torsion of the pathology of the knee. J Bone Joint Surg Br, 63 (3) : 396-398, 1981.
3) Parr, W. C. H., Chatterjee, H., Soligo, J. C., et al. : Calculating the axes of rotation for the subtalar and talocrural joints using 3D bone reconstructions. J Biomech, 45 (6) : 1103-1107, 2012.
4) Manter, J. T. : Movements of the subtalar and transverse tarsal joints. Anat Rec, 80 (4) : 397-410, 1941.
5) Fernandez, M. P., Hoxha, D., Chan, O., et al. : Centre of Rotation of the Human Subtalar Joint Using Weight-Bearing Clinical Computed Tomography. Sci Rep, 10 (1) : 1035, 2020.
6) Sarrafian, S. K. : Functional anatomy of the foot and ankle. Anatomy of the foot and ankle, Descriptive topographic function (2nd ed). Lippincott, Philadelphia, 474-602, 1993.
7) Kapandji, A. I. : 第4章 足部, II 下肢. カパンジー機能解剖学・原著第6版. 塩田悦仁訳, 医歯薬出版, 東京, 2010.
8) Perry, J., Burnfield, J. : 歩行分析. 正常歩行と異常歩行 第2版. 武田 功統括監訳, 医歯薬出版, 東京, 2012.
9) Postolka, B., Schutz, P., Fucentese, S. F., et al. : Tibio-femoral kinematics of the healthy knee joint throughout complete cycles of gait activities. J Biomech, 110 : 109915, 2020.
10) Nester, C. J., Jarvis, H., Jones, R. K., et al. : Movement of the human foot in 100 pain free individuals aged 18-45 : implications for understanding normal foot function. J Foot Ankle Res, 7 (1) : 51, 2014.
11) Buldt, A. K., Forghany, S., Landorf, K. B., et al. : Centre of pressure characteristics in normal, planus and cavus feet. J Foot Ankle Res, 11 : 3, 2018.
12) Takabayashi, T., Edama, M., Inai, T., et al. : Differences in rearfoot, midfoot, and forefoot kinematics of normal foot and flatfoot during running. J Orthop Res, 39 (3) : 565-571, 2020.
13) Lieberman, D. E., Venkadesan, M., Werbel, W. A., et al. : Foot strike patterns and collision forces in habitually barefoot versus shod runners. Nature, 463 (7280) : 531-535, 2010.
14) Hashizume, S., Yanagiya, T. : A Forefoot Strike Requires the Highest Forces Applied to the Foot Among Foot Strike Patterns. Sports Med Int Open, 1 (2) : E37-E42, 2017.
15) Xu, Y., Yuan, P., Wang, R., et al. : Effects of Foot Strike Techniques on Running Biomechanics : A Systematic Review and Meta-analysis. Sports Health, 13 (1) : 71-77, 2021.
16) Sullivan, D., Warren, R. F., Pavlov, H., et al. : Stress fractures in 51 runners. Clin Orthop Relat Res, 187 : 188-192, 1984.
17) Di Caprio, F., Buda, R., Mosca, M., et al. : Foot and Lower Limb Diseases in Runners : Assessment of Risk Factors. J Sports Sci Med, 9 (4) : 587-596, 2010.
18) Becker, J., James, S., Osternig, L., et al. : Foot Kinematics Differ Between Runners With and Without a History of Navicular Stress Fractures. Orthop J Sports Med, 6 (4) : 2325967118767363, 2018.
19) Orendurff, M., Rohr, E., Segal, A., et al. : Biomechanical analysisof stresses to the fifth metatarsal bone during sports maneuvers : implications for fifth metatarsal fractures. Phys Sports Med, 37 (2) : 87-92, 2009.
20) O'Malley, M., DeSandis, B., Allen, A., et al. : Operative Treatment of Fifth Metatarsal Jones Fractures (Zones II and III) in the NBA. Foot Ankle Int, 37 (5) : 488-500, 2016.
21) Dickerson, L. C., Queen, R. M. : Foot Posture and Plantar Loading With Ankle Bracing. J Athl Train, 56 (5) : 461-472, 2021.
22) Ishii, T., Miyagawa, S., Hayashi, K. : Traction apophysitis of the medial malleolus. J Bone Joint Surg Br, 76 (5) : 802-806, 1994.
23) Clement, D. B., Taunton, J. E., Smart, G. W. : Achilles tendinitis and peritendinitis : etiology and treatment. Am J Sports Med, 12 (3) : 179-184, 1984.
24) Biedert, R. : [Symptoms in area of the Achilles tendon. Etiology and therapeutic considerations]. Unfallchirurg, 94 (10) : 531-537, 1991.
25) Beck, B. R., Osternig, L. R., : Medial tibial stress syndrome. The location of muscles in the leg in relation to symptoms. Bone Joint Surg Am, 76 (7) : 1057-1061, 1994.
26) Okunuki, T., Koshino, Y., Yamanaka, M., et al. : Forefoot and hindfoot kinematics in subjects with medial tibial stress syndrome during walking and running. J Orthop Res, 37 (4) : 927-932, 2019.
27) Winkelmann, Z. K., Anderson, D., Games, K. E., et al. : Risk Factors for Medial Tibial Stress Syndrome in Active Individuals : An Evidence-Based Review. J Athl Train, 51 (12) : 1049-1052, 2016.
28) Reinking, M. F., Austi, T. M., Richter, R. R., et al. : Medial Tibial Stress Syndrome in Active Individuals : A Systematic Review and Meta-analysis of Risk Factors. Sports Health, 9 (3) : 252-261, 2017.
29) Yuill, E. A., Macintyre, I. G. : Posterior tibialis tendonopathy in an adolescent soccer player : a case report. J Can Chiropr Assoc, 54 (4) : 293-300, 2010.
30) Park, H., Hwang, J. H., Seo, J. O., et al. : The Relationship Between Accessory Navicular and Flat Foot : A Radiologic Study. J Pediatr Orthop, 35 (7) : 739-745, 2015.
31) Brody, D. M. : Techniques in the evaluation and treatment of the injured runner. Orthop Clin North Am, 13 (3) : 541-558, 1982.
32) Kara, M., Bayram, S. : Effect of Unilateral Accessory Navicular Bone on Radiologic Parameters of Foot. Foot Ankle Int, 42 (4) : 469-475, 2021.
33) 永田敏貢, 赤羽根良和, 斉藤正佳ほか : 回内足と回外足のレントゲン側面像, 背底像における足部縦アーチと横アーチの関係. 第27回東海北陸理学療法学術大会抄録, P-032, 2011. https://doi.org/10.11529/thpt.27.0.99.0
34) Hughes, L. Y. : Biomechanical analysis of the foot and ankle for predisposition to developing stress frac tures. Orthop Sports Phys Ther, 7 (3) : 96-101, 1985.
35) Korpelainen, R., Orava, S., Karpakka, J., et al. : Risk factors for recurrent stress fractures in athletes. Am J Sports Med, 29 (3) : 304-310, 2001.
36) Lee, K. T., Kim, K. C., Park, Y. U., et al. : Radiographic evaluation of foot structure following fifth metatarsal stress fracture. Foot Ankle Int, 32 (8) : 796-801, 2011.
37) Fleischer, A. E., Stack, R., Klein, E. E., et al. : Forefoot Adduction Is a Risk Factor for Jones Fracture. Foot Ankle Surg, 56 (5) : 917-921, 2017.
38) Riegger, M., Muller, J., Giampietro, A., et al. : Forefoot Adduction, Hindfoot Varus or Pes Cavus : Risk Factors for Fifth Metatarsal Fractures and Jones Fractures? A Systematic Review and Meta-Analysis. J Foot Ankle Surg, 61 (3) : 641-647, 2022.
39) Brandes, C. B., Smith, R. W. : Characterization of patients with primary peroneus longus tendinopathy : a review of twenty-two cases. Foot Ankle Int, 21 (6) : 462-468, 2000.
40) Taunton, J. E., Ryan, M. B., Clement. D. B., et al. : A retrospective case-control analysis of 2002 running injuries. J Sports Med, 36 (2) : 95-101, 2002.
41) 横江清司 : Leg-heel alignmentとスポーツ障害. 臨スポーツ医, 14 (5) : 511-516, 1997.
42) Hollander, K., Johnson, C. D., Outerleys, J., et al. : Multifactorial Determinants of Running Injury Locations in 550 Injured Recreational Runners. Med Sci Sports Exerc, 53 (1) : 102-107, 2021.
43) Burke, A., Dillon, S., O'Connor, A., et al. : Risk Factors for Injuries in Runners : A Systematic Review of Foot Strike Technique and Its Classification at Impact. Orthop J Sports Med, 9 (9) : 23259671211020283, 2021.
44) 瀬戸宏明, 岩瀬弘明 : Jones骨折に対するメディカルチェック. JOSKAS, 37 (2) : 332-333, 2012.
45) Thaller, P. H., Furmetz, J., Chen, F., et al. : Bowlegs and Intensive Football Training in Children and Adolescents. Dtsch Arztebl Int, 115 (24) : 401-408, 2018.
46) Yaniv, M., Becker, T., Goldwirt, M., et al. : Prevalence of bowlegs among child and adolescent soccer players. Clin J Sport Med, 16 (5) : 392-396, 2006.
47) Witvrouw, E., Danneels, L., Thijs, Y., et al. : Does soccer participation lead to genu varum? Knee Surg Sports Traumatol Arthrosc, 17 (4) : 422-427, 2009.
48) Colyn, W., Agricola, R., Arnout, N., et al. : How does lower leg alignment differ between soccer players, other athletes, and non-athletic controls? Knee Surg Sports Traumat Arthros, 24 (11) : 3619-3626, 2016.
49) 岡本海斗, 鳥居俊 : 中学生男子サッカー選手における膝アライメントの縦断的研究. 日成長会誌, 20 (1) : 15-21, 2014.
50) 小松泰喜, 田中尚喜, 上内哲男ほか : 少年サッカー選手の足部形態学的調査. 理学療法学, 25 (suppl 2) : 365, 1998.
51) 村本勇貴, 鳥居俊 : 中学生男子サッカー選手の足部形態および足長とスパイク長の差と足部障害の調査. 日臨スポーツ医会誌, 25 (3) : 322-327, 2017.
52) Lee, K. T., Park, Y. U., Jegal, H., et al : Factors associated with recurrent fifth metatarsal stress fracture. Foot Ankle Int, 34 (12) 1645-1653, 2013.
53) Matsuda, S., Fukubayashi, T., Hirose, N. : Characteristics of the Foot Static Alignment and the Plantar Pressure Associated with Fifth Metatarsal Stress Fracture History in Male Soccer Players : a Case-Control Study. Sports Medicine Open, 3 (1) : 27, 2017.
54) 金岡恒治, 半谷美夏, 李小由ほか : 競泳選手に生じた有痛性三角骨の3例. 臨スポーツ医, 28 (10) : 1195-1198, 2011.
55) 大場昌昭, 金岡恒治, 萬久博敏ほか : 足部の柔軟性がバタ足キックに及ぼす影響について. 筑波大学運動学研究, 11 : 89-95, 1995.
56) 賢木友理絵, 金岡恒治 : 競泳選手の足部形態および足部柔軟性がキックパフォーマンスに与える影響. 早稲田大学大学院スポーツ科学研究科論文抄録, 2011. http://www.waseda.jp/sports/supoken/research/2011_2/5010A035_abs.pdf
57) Ozeki, O., Yasuda, K., Kaneda, K., et al. : Simultaneous strain measurement with determination of a zero strain reference for the medial and lateral ligaments of the ankle. Foot Ankle Int, 23 (9) : 825-832, 2002.
58) 加藤哲也, 細川昌俊, 横井秋夫ほか : 足を使うスポーツにおける距骨下関節障害 臨スポーツ医, 5 (別冊) : 130-135, 1988.
59) 安藤千博, 加藤哲也, 細川昌俊ほか : 距骨下関節不安定性の骨性因子. 中部整誌, 32 (1) : 395-397, 1989.
60) 稲岡千秋, 阿部薫, 笹本嘉朝 : 小学生の競泳選手における足部形態の特徴-足アーチ高率に着目して-. 新潟医療福祉会誌, 15 (1) : 43, 2015.
61) 湯浅安理, 増成暁彦, 吉田成仁ほか : フィンスイミング日本選手権出場選手の足関節痛との関連要因. 運動疫学研究, 22 (1) : 35-44, 2020.
62) 平石英一, 池澤裕子, 小久保哲郎 : クラッシックバレエダンサーの足の特徴 (第一報) : 縦アーチについて. 靴の医学, 19 (2) : 15-18, 2006.
63) Elias, I., Zoga, A. C., Raikin, S. M., et al. : Bone stress injury of the ankle in professional ballet dancers seen on MRI. BMC Musculoskelet Disord, 9 : 39, 2008.
64) Albisetti, W., Perugia, D., Bartolomeo, O. D., et al. : Stress fractures of the base of the metatarsal bones in young trainee ballet dancers. Int Orthop, 34 (1) : 51-55, 2010.
65) Russell, J. A., Shave, R. M., Yoshioka, H., et al. : Magnetic resonance imaging of the ankle in female ballet dancers en pointe. Acta Radiol, 51 (6) : 655-661, 2010.
66) 石井朝夫, 宮川俊平, 金森章浩 : 長母趾屈筋腱炎の発症機序について. 日整外スポーツ医会誌, 12 : 467-470, 1993.
67) Menetrey, J., Fritschy, D. : Subtalar subluxation in ballet dancers. Am J Sports Med, 27 (2) : 143-149, 1999.
P.27 掲載の参考文献
1) スポーツ安全協会要覧 2020->2021 https://www.sportsanzen.org/content/images/1about_us/yoran.pdf
2) Stiell, I. G., Greenberg, G. H., McKnight, R. D., et al. : Decision rules for the use of radiography in acute ankle injuries : refinement and prospective validation. JAMA, 269 (9) : 1127-1132, 1993.
3) van Dijk, C. N., van Sterkenburg, M. N., Wiegerinck, J. I., et al. : Terminology for Achilles tendon related disorders. Knee Surg Sports Traumatol Arthrosc, 19 (5) : 835-841, 2011.
4) 熊井司 : アキレス腱付着部障害. 図説 足の臨床 改訂第3版, 田中康仁ほか編, メジカルビュー社, 東京, 399-403, 2010.
5) Funder, V., Jorgensen, J. P., Andersen, A., et al. : Ruptures of the lateral ligaments of the ankle. Clinical diagnosis. Acta Orthop Scand, 53 (6) : 997-1000, 1982.
P.34 掲載の参考文献
1) Nakamura, M., Ikezoe, T., Takeno, Y., et al. : Effects of a 4-week static stretch training program on passive stiffness of human gastrocnemius muscle-tendon unit in vivo. Eur J Appl Physiol, 112 (7) : 2749-2755, 2012.
2) Medeiros, D. M., Martini, T. F. : Chronic effect of different types of stretching on ankle dorsiflexion range of motion : Systematic review and meta-analysis. Foot (Edinb), 34 : 28-35, 2018.
3) Konrad, A., Tilp, M. : Increased range of motion after static stretching is not due to changes in muscle and tendon structures. Clin Biomech (Bristol, Avon), 29 (6) : 636-642, 2014.
4) Azuma, N., Someya, F. : Injury prevention effects of stretching exercise intervention by physical therapists in male high school soccer players. Scand J Med Sci Sports, 30 (11) : 2178-2192, 2020.
5) Nakamura, M., Ikezoe, T., Takeno, Y., et al. : Acute and prolonged effect of static stretching on the passive stiffness of the human gastrocnemius muscle tendon unit in vivo. J Orthop Res, 29 (11) : 1759-1763, 2011.
6) Shahtout, J., Henry, S., Ito, D., et al. : The Acute Effects of Antagonist Stretching on Agonist Movement Economy. Int J Exerc Sci, 13 (4) : 1295-1304, 2020.
7) Kay, A. D., Blazevich, A. J. : Effect of acute static stretch on maximal muscle performance : a systematic review. Med Sci Sports Exerc, 44 (1) : 154-164, 2012.
8) Simic, L., Sarabon, N., Markovic, G. : Does pre-exercise static stretching inhibit maximal muscular performance? A meta-analytical review. Scand J Med Sci Sports, 23 (2) : 131-148, 2013.
9) El Naggar, T. E. D. M., Maaty, A. I. E., Mohamed, A. E. : Effectiveness of radial extracorporeal shock-wave therapy versus ultrasound-guided low-dose intra-articular steroid injection in improving shoulder pain, function, and range of motion in diabetic patients with shoulder adhesive capsulitis. J Shoulder Elbow Surg, 29 (7) : 1300-1309, 2020.
10) 杉岡辰哉, 小林佑介, 佐竹勇人ほか : リハビリテーション現場でのRPW治療. MB Orthop, 34 (7) : 39-47, 2021.
11) Fletcher, I. M. : The effect of different dynamic stretch velocities on jump performance. Eur J Appl Physiol, 109 (3) : 491-498, 2010.
12) Fletcher, I. M., Jones, B. : The effect of different warm-up stretch protocols on 20 meter sprint performance in trained rugby union players. J Strength Cond Res, 18 (4) : 885-888, 2004.
13) Yamaguchi, T., Ishii, K. : Effects of static stretching for 30 seconds and dynamic stretching on leg extension power. J Strength Cond Res, 19 (3) : 677-683, 2005.
14) Behm, D. G., Blazevich, A. J., Kay, A. D., et al. : Acute effects of muscle stretching on physical performance, range of motion, and injury incidence in healthy active individuals : a systematic review. Appl Physiol Nutr Metab, 41 (1) : 1-11, 2016.
15) Opplert, J., Babault, N. : Acute Effects of Dynamic Stretching on Muscle Flexibility and Performance : An Analysis of the Current Literature. Sports Med, 48 (2) : 299-325, 2018.
16) 高倉義幸, 小俣訓子 : 筋力トレーニング. 足の運動療法. 高倉義典編. メジカルビュー社, 東京, 26-43, 2015.
17) 川野哲英 : 下肢エクササイズ. 動作エクササイズ. ファンクショナルエクササイズ. ブックハウス・エイチディ, 東京, 117, 199-202, 2004.
18) Sarrafian, S. K., Kelikian, A. S. : Functional Anatomy of the Foot and Ankle. Sarrafian's anatomy of the foot and ankle. 3rd ed. Kelikian, A. S., editor, Lippincott Williams & Wilkins, Philadelphia, 617-624, 2011.
19) Nuzzo, J. L. : Inconsistent Use of Resistance Exercise Names in Re search Articles : A Brief Note. J Strength Cond Res, 35 (12) : 3518-3520, 2021.
20) Aiken, A. B., Pelland, L., Brison, R., et al. : Short-term natural recovery of ankle sprains following discharge from emergency departments. J Orthop Sports Phys Ther, 38 (9) : 566-571, 2008.
21) Mullaney, M. J., McHugh, M. P., Tyler, T. F., et al. : Weakness in end-range plantar flexion after Achilles tendon repair. Am J Sports Med, 34 (7) : 1120-1125, 2006.
22) McAuliffe, S., Tabuena, A., McCreesh, K., et al. : Altered strength profile in Achilles tendinopathy : a systematic review and meta-analysis. J Athl Train, 54 (8) : 889-900, 2019.
23) Saxena, A., Giai Via, A., Gravare Silbernagel, K., et al. : Current Consensus for Rehabilitation Protocols of the Surgically Repaired Acute Mid-Substance Achilles Rupture : A Systematic Review and Recommendations From the "GAIT" Study Group. J Foot Ankle Surg, 61 (4) : 855-861, 2022.
24) Hubbard, T. J., Kramer, L. C., Denegar, C. R., et al. : Contributing factors to chronic ankle instability. Foot Ankle Int, 28 (3) : 343-354, 2007.
25) Signorile, J., Applegate, B., Duque, M., et al. : Selective recruitment of the triceps surae muscles with changes in knee angle. J Strength Cond Res, 16 (3) : 433-439, 2002.
26) Hebert-Losier, K., Schneiders, A. G., Garcia, J. A., et al. : Influence of knee flexion angle and age on triceps surae muscle activity during heel raises. J Strength Cond Res, 26 (11) : 3124-3133, 2012.
27) Endo, M., Ashton-Miller, J. A., Alexander, N. B. : Effects of age and gender on toe flexor muscle strength. J Gerontol A Biol Sci Med Sci, 57 (6) : M392-M397, 2002.
28) Kojima, K., Kamai, D., Yamamoto, A., et al. : The Effect of Toe-grasping Exercises on Balance Ability in Home-based Rehabilitation : A Randomized Controlled Trial by Block Randomization. Phys Ther Res, 24 (3) : 272-279, 2021.
29) Yamauchi, J., Koyama, K. : Importance of toe flexor strength in vertical jump performance. J Biomech, 104 : 109719, 2020.
30) Yuasa, Y., Kurihara, T., Isaka, T. : Relationship between toe muscular strength and the ability to change direction in athletes. J Hum Kinet, 64 (1) : 47-55, 2018.
31) Kanayama, T., Nakase, J., Mochizuki, T., et al. : Evaluation of skeletal muscle activity during foot training exercises using positron emission tomography. Sci Rep, 12 (1) : 7076, 2022.
32) Hashimoto, T., Sakuraba, K. : Assessment of effective ankle joint positioning in strength training for intrinsic foot flexor muscles : A comparison of intrinsic foot flexor muscle activity in a position intermediate to plantar and dorsiflexion with that in maximum plantar flexion using needle electromyography. J Phys Ther Sci, 26 (3) : 451-454, 2014.
33) Hashimoto, T., Sakuraba, K. : Strength training for the intrinsic flexor muscles of the foot : effects on muscle strength, the foot arch, and dynamic parameters before and after the training. J Phys Ther Sci, 26 (3) : 473-476, 2014.
34) 廣田健斗, 渡邉耕太, 根岸奎輔ほか : 足趾屈曲方法の違いが足部内在筋と外在筋の活動に与える影響 超音波エラストグラフィを用いた評価. 日臨スポーツ医会誌, 29 (2) : 158-163, 2021.
35) Jung, D. Y., Kim, M. H., Koh, E. K., et al. : A comparison in the muscle activity of the abductor hallucis and the medial longitudinal arch angle during toe curl and short foot exercises. Phys Ther Sport, 12 (1) : 30-35, 2011.
36) Lynn, S. K., Padilla, R. A., Tsang, K. K. : Differences in static- and dynamic-balance task performance after 4 weeks of intrinsic-foot-muscle training : the short-foot exercise versus the towel-curl exercise. J Sport Rehabil, 21 (4) : 327-333, 2012.
37) Wei, Z., Zeng, Z., Liu, M., et al. : Effect of intrinsic foot muscles training on foot function and dynamic postural balance : A systematic review and meta-analysis. PLoS One, 17 (4) : e0266525, 2022.
38) Nunes, G. S., Feldkircher, J. M., Tessarin, B. M., et al. : Kinesio taping does not improve ankle functional or performance in people with or without ankle injuries : Systematic review and meta-analysis. Clin Rehabil, 35 (2) : 182-199, 2021.
39) Megalaa, T., Hiller, C. E., Ferreira, G. E., et al. : The effect of ankle supports on lower limb biomechanics during functional tasks : A systematic review with meta-analysis. J Sci Med Sport, 25 (7) : 615-630, 2022.
40) Forbes, H., Thrussell, S., Haycock, N., et al. : The effect of prophylactic ankle support during simulated soccer activity. J Sport Rehabil, 22 (3) : 170-176, 2013.
P.42 掲載の参考文献
1) Halabchi, F., Hassabi, M. : Acute ankle sprain in athletes : Clinical aspects and algorithmic approach. World J Orthop, 11 (12) : 534-558, 2020.
2) Polzer, H., Kanz, K. G., Prall, W. C., et al. : Diagnosis and treatment of acute ankle injuries : development of an evidence-based algorithm. Orthop Rev (Pavia), 4 (1) : e5, 2012
3) Aslan, A., Sofu, H., Kirdemir, V. : Ankle ligament injury : current concept. OA Orthop, 2 (1) : 5-10, 2014.
4) Balduini, F. C., Vegso, J. J., Torg, J. S., et al. : Management and rehabilitation of ligamentous injuries to the ankle. Sports Med, 4 (5) : 364-380, 1987.
5) Smith, R. W., Reischl, S. F. : Treatment of ankle sprains in young athletes. Am J Sports Med, 14 (6) : 465-471, 1986.
6) van Rijn, R. M., van Os, A. G., Bernsen, R. M., et al. : What is the clinical course of acute ankle sprains? A systematic literature review. Am J Med, 121 (4) : 324-331.e6, 2008.
7) Doherty, C., Bleakley, C., Delahunt, E., et al. : Treatment and prevention of acute and recurrent ankle sprain : an overview of systematic reviews with meta-analysis. Br J Sports Med, 51 (2) : 113-125, 2017.
8) Kerkhoffs, G. M., Rowe, B. H., Assendelft, W. J., et al. : Immobilisation for acute ankle sprain. A systematic review. Arch Orthop Trauma Surg, 121 (8) : 462-471, 2001.
9) Martin, R. L., Davenport, T. E., Paulseth, S., et al., Orthopaedic Section American Physical Therapy Association : Ankle stability and movement coordination impairments : ankle ligament sprains. J Orthop Sports Phys Ther, 43 (9) : A1-40, 2013.
10) Eiff, M. P., Smith, A. T., Smith, G. E. : Early mobilization versus immobilization in the treatment of lateral ankle sprains. Am J Sports Med, 22 (1) : 83-88, 1994.
11) Dettori, J. R., Basmania, C. J. : Early ankle mobilization, Part II : A one-year follow-up of acute, lateral ankle sprains (a randomized clinical trial). Mil Med, 159 (1) : 20-24, 1994.
12) Lynch, S. A., Renstrom, P. A. : Treatment of acute lateral ankle ligament rupture in the athlete. Conservative versus surgical treatment. Sports Med, 27 (1) : 61-71, 1999.
13) Vuurberg, G., Hoorntje, A., Wink, L. M., et al. : Diagnosis, treatment and prevention of ankle sprains : update of an evidence-based clinical guideline. Br J Sports Med, 52 (15) : 956, 2018.
14) Naeem, M., Rahimnajjad, M. K., Rahimnajjad, N. A., et al. : Assessment of functional treatment versus plaster of Paris in the treatment of grade 1 and 2 lateral ankle sprains. J Orthop Traumatol, 16 (1) : 41-46, 2015.
15) Van Der Windt, D. A., Van Der Heijden, G. J., Van Den Berg, S. G., et al. : Ultrasound therapy for acute ankle sprains. Cochrane Database Syst Rev, (2) : CD001250, 2002.
16) Gilchrist, J., Branche, C. M., Goodman, R. A., et al. : Prevention of ankle sprains in sports : an update. Int SportMed J, 4 : 1-17, 2003.
17) Dizon, J. M., Reyes, J. J. : A systematic review on the effectiveness of external ankle supports in the prevention of inversion ankle sprains among elite and recreational players. J Sci Med Sport, 13 (3) : 309-317, 2010.
18) Richie, D. H., Izadi, F. E. : Return to play after an ankle sprain : guidelines for the podiatric physician. Clin Podiatr Med Surg, 32 (2) : 195-215, 2013.
19) Richie, D. H. Jr. : Effects of foot orthoses on patients with chronic ankle instability. J Am Podiatr Med Assoc, 97 (1) : 19-30, 2007.
20) Guskiewicz, K. M., Perrin, D. H. : Effect of orthotics on postural sway following inversion ankle sprain. J Orthop Sports Phys Ther, 23 (5) : 326-331, 1996.
21) Orteza, L. C., Vogelbach, W. D., Denegar, C. R. : The effect of molded and unmolded orthotics on balance and pain while jogging following inversion ankle sprain. J Athl Train, 27 (1) : 80-84, 1992.
22) Chen, E. T., Borg-Stein, J., McInnis, K. C. : Ankle Sprains : Evaluation, Rehabilitation, and Prevention. Curr Sports Med Rep, 18 (6) : 217-223, 2019.
23) Bleakley, C. M., McDonough, S. M., MacAuley, D. C., et al. : Cryotherapy for acute ankle sprains : a randomised controlled study of two different icing protocols. Br J Sports Med, 40 (8) : 700-705 ; discussion 705, 2006.
24) Cote, D. J., Prentice, W. E. Jr., Hooker, D. N., et al. : Comparison of three treatment procedures for minimizing ankle sprain swelling. Phys Ther, 68 (7) : 1072-1076, 1988.
25) Bleakley, C., McDonough, S., MacAuley, D. : The use of ice in the treatment of acute soft-tissue injury : a systematic review of randomized controlled trials. Am J Sports Med, 32 (1) : 251-261, 2004.
26) Hubbard, T. J., Aronson, S. L., Denegar, C. R. : Does Cryotherapy Hasten Return to Participation? J Athl Train, 39 (1) : 88-94, 2004.
27) McGovern, R. P., Martin, R. L. : Managing ankle ligament sprains and tears : current opinion. Open Access J Sports Med, 7 : 33-42, 2016.
28) Kennet, J., Hardaker, N., Hobbs, S., et al. : Cooling efficiency of 4 common cryotherapeutic agents. J Athl Train, 42 (3) : 343-348, 2007.
29) Kaminski, T. W., Hertel, J., Amendola, N., et al. : National Athletic Trainers' Association. National Athletic Trainers' Association position statement : conservative management and prevention of ankle sprains in athletes. J Athl Train, 48 (4) : 528-545, 2013.
30) van den Bekerom, M. P., van der Windt, D. A., Ter Riet, G., et al. : Therapeutic ultrasound for acute ankle sprains. Cochrane Database Syst Rev, 2011 (6) : CD001250, 2011.
31) Pasila, M., Visuri, T., Sundholm, A. : Pulsating shortwave diathermy : value in treatment of recent ankle and foot sprains. Arch Phys Med Rehabil, 59 (8) : 383-386, 1978.
32) Pennington, G. M., Danley, D. L., Sumko, M. H., et al. : Pulsed, non-thermal, high-frequency electromagnetic energy (DIAPULSE) in the treatment of grade I and grade II ankle sprains. Mil Med, 158 (2) : 101-104, 1993.
33) 川口梨沙 : ストレッチングの前処置としての表在性および深部性温熱療法の有効性に関する検討. 理学療法科学, 28 (5) : 641-645, 2013.
34) 古後晴基, 村田伸, 村田潤ほか : ホットパックの乾熱法と湿熱法の違いが筋硬度に及ぼす効果. 理学療法科学, 25 (4) : 631-634, 2010.
35) 網本和 : 物理療法学 第3版. 網本和編, 医学書院, 東京, 87-93, 2008.
36) 森和, 高橋晄正 : 物理療法の実際 第6版. 南山堂, 東京, 106-114, 1985.
37) Lehmann, J. F., Guy, A. W., Johnston, V. C., et al. : Comparison of relative heating patterns produced in tissues by exposure to microwave energy at frequencies of 2,450 and 900 megacycles. Arch Phys Med Rehabil, 43 : 69-75, 1962.
38) 杉元雅晴 : 超音波療法. 理学療法学, 22 (6) : 396-400, 1995.
39) 柳澤健 : 痛みと物理療法-超音波療法と電気刺激療法-. 理療科, 15 (3) : 105-110, 2000.
40) Draper, D. O. : Ten mistakes commonly made with ultrasound use. Athletic Training : Sports Health Care Perspectives, 2 : 95-107, 1996.
41) Draper, D. O., Castel, J. C., Castel, D. : Rate of temperature increase in human muscle during 1 MHz and 3 MHz contangos ultrasound. J. Orthop Sports Phys Ther, 22 (4) : 142-150, 1995.
42) Cameron, M. H., Perez, D., Otano-Lata, S. : Lasers. In Physical Agents in Rehabilitation from Research to Practice. Cameron, M. H., editor, WB Saunders Company, California, 316-321, 2000.
43) 渡部一郎, 眞野行生 : 低出力レーザー照射療法 (LLLT). リハ医, 38 : 587-595, 2001.
44) 田口順子 : レーザー療法. 嶋田里明, 田口順子, 濱出茂治ほか編, 物理療法マニュアル. 医歯薬出版, 東京, 100-111, 1997.
45) 小川節郎 : Super Lizer. 医器学, 68 : 567-572, 1998.
46) Yoo, C., Kemmotsu, O. : Efficacy of polarized light therapy for musculoskeletal pain. Laser Therapy, 5 : 153-157, 1993.
47) Mendel, F. C., Dolan, M. G., Fish, D. R., et al. : Effect of high-voltage pulsed current on recovery after grades I and II lateral ankle sprains. J Sport Rehabil, 19 (4) : 399-410, 2010.
48) Feger, M. A., Goetschius, J., Love, H., et al. : Electrical stimulation as a treatment intervention to improve function, edema or pain following acute lateral ankle sprains : A systematic review. Phys Ther Sport, 16 (4) : 361-369, 2015.
49) Sandoval, M. C., Ramirez, C., Camargo, D. M., et al. : Effect of high-voltage pulsed current plus conventional treatment on acute ankle sprain. Rev Bras Fisioter, 14 (3) : 193-199, 2010.
50) 齋藤昭彦 : 経皮的電気神経刺激 (TENS). 物理療法学 第3版, 網本 和編, 医学書院, 146-154, 2008.
51) Cheng, G. A., 星野一夫 : 疼痛コントロール : 経皮的電気神経刺激 (TENS). 物理療法学テキスト. 細田多穂監, 南江堂, 183-201, 2008.
52) 内田成男 : 高電圧電気刺激療法. 理学療法学, 17 (3) : 223-227, 1990.
53) Michlovitz, S. L., Smith, W., Watkins, M. : Ice and high voltage pulsed stimulation in treatment of acute lateral ankle sprains*. J Orthop Sports Phys Ther, 9 (9) : 301-304, 1988.
P.50 掲載の参考文献
1) Auersperg, V., Trieb, K. : Extracorporeal shock wave therapy : an update. EFORT Open Rev, 5 (10) : 584-592, 2020.
2) Moya, D., Ramon, S., Schaden, W., et al. : The Role of Extracorporeal Shockwave Treatment in Musculoskeletal Disorders. J Bone Joint Surg Am, 100 (3) : 251-263, 2018.
3) O'Kneefe, P. J. : Rapidly imploding bubbles create problems. Engineering expert witness blog, 2018. http://www.engineeringexpert.net/Engineering-Expert-Witness-Blog/rapidly-imploding-bubbles-create-problems (2022年4月11日閲覧)
4) 高橋謙二 : 体外衝撃波の基礎知識. MB Orthop, 34 (7) : 1-10, 2021.
5) 熊井司 : 体外衝撃波治療 (ESWT). 運動器スポーツ外傷・障害の保存治療 下肢. 福林徹編, 南江堂, 東京, 56-66, 2020.
6) Ackermann, P. W., Renstrom, P. : Tendinopathy in Sport. Sports Health, 4 (3) : 193-201, 2012.
7) Takahashi, N., Wada, Y., Ohtori, S., et al. : Application of shock waves to rat skin decreases calcitonin gene-related peptide immunoreactivity in dorsal root ganglion neurons. Auton Neurosci, 107 (2) : 81-84, 2003.
8) Murata, R., Ohtori, S., Ochiai, N., et al. : Extracorporeal shockwaves induce the expression of ATF3 and GAP-43 in rat dorsal root ganglion neurons. Auton Neurosci, 128 (1-2) : 96-100, 2006.
9) Wang, C. J., Wang, F. S., Yang, K. D., et al. : Shock wave therapy induces neovascularization at the tendon-bone junction. A study in rabbits. J Orthop Res, 21 (6) : 984-989, 2003.
10) Takahashi, K., Yamazaki, M., Saisu, T., et al. : Gene expression for extracellular matrix proteins in shockwave-induced osteogenesis in rats. Calcif Tissue Int, 74 (2) : 187-193, 2004.
11) Han, S. H., Lee, J. W., Guyton, G. P., et al. : J. Leonard Goldner Award 2008. Effect of Extracorporeal Shock Wave Therapy on Cultured Tenocytes. Foot Ankle Int, 30 (2) : 93-98, 2009.
12) 落合信靖, 見目智紀, 山崎博範ほか : 肩慢性石灰性腱炎に対する体外衝撃波療法の有効性. 肩関節, 35 (2) : 579-582, 2011.
13) Schmitz, C., Csaszar, N. B. M., Milz, S., et al. : Efficacy and safety of extracorporeal shock wave therapy for orthopedic conditions : a systematic review on studies listed in the PEDro database. Br Med Bull, 116 (1) : 115-138, 2015.
14) Eid, J. : Consensus statement on ESWT indication and contraindications. Linz, Austria : ISMST ; 2016. https://www.shockwavetherapy.org/fileadmin/user_upload/dokumente/PDFs/Formulare/ISMST_consensus_statement_on_indications_and_contraindications_20161012_final.pdf
15) Fan, Y., Fen, Z., Cao, J. : Efficacy of Extracorporeal Shock Wave Therapy for Achilles Tendinopathy : A Meta-analysis. Orthop J Sports Med, 8 (2) : 1-9, 2020.
16) Rompe, J. D., Cacchio, A., Furia, J. P., et al. : Low-Energy Extracorporeal Shock Wave Therapy as a Treatment for Medial Tibial Stress Syndrome. Am J Sports Med, 38 (1) : 125-132, 2010.
17) 高橋謙二, 高橋憲正, 高橋達也ほか : スポーツ障害に対する体外衝撃波治療-疲労骨折と骨端症を中心に-. 整スポ会誌, 38 (3) : 31-38, 2018.
18) Saisu, T., Takahashi, K., Kamegaya, M., et al. : Effects of extracorporeal shock waves on immature rabbit femurs. J Pediatr Orthop B, 13 (3) : 176-183, 2004.
19) Oztemur, Z., Ozturk, H., Ozyurek, S., et al. : The long-term effects of extracorporeal shock waves on the epiphysis of the adolescent rat. J Orhtop Sci, 18 (1) : 159-164, 2013.
20) Takahashi, N., Ohtori, S., Saisu, T., et al. : Second Application of Low-energy Shock Waves Has a Cumulative Effect on Free Nerve Endings. Clin Orthop Relat Res, 443 : 315-319, 2006.
21) Rompe, J. D., Decking, J., Schoellner, C., et al. : Shock wave application for chronic plantar fasciitis in running athletes. A prospective, randomized, placebo-controlled trial. Am J Sports Med, 31 (2) : 268-275, 2003.
22) Rompe, J. D., Nafe, B., Furia, J. P., et al. : Eccentric Loading, Shock-Wave Treatment, or a Wait-and-See Policy for Tendinopathy of the Main Body of Tendo Achilles. Am J Sports Med, 35 (3) : 374-383, 2007.
23) Rompe, J. D., Furia, J., Maffulli, N. : Eccentric Loading Versus Eccentric Loading Plus Shock-Wave Treatment for Midportion Achilles Tendinopathy a randmized controlled trial. Am J Sports Med, 37 (3) : 463-470, 2009.
24) Liang, H. W., Wang, T. G., Chen, W. S., et al. : Thinner plantar fascia predicts decreased pain after extracorporeal shock wave therapy. Clin Orthop Relat Res, 460 : 219-225, 2007.
25) Maki, M., Ikoma, K., Imai, K., et al. : Correlation between the outcome of extracorporeal shockwave therapy and pretreatment MRI findings for chronic plantar fasciitis. Mod Rheumatol, 25 (3) : 427-430, 2015.
26) Moretti, B., Notarnicola, A., Garofalo, R., et al. : Shock waves in the treatment of stress fractures. Ultrasound Med Biol, 35 (6) : 1042-1049, 2009.
27) Alvarez, R. G., Cincere, B., Channappa, C., et al. : Extracorporeal Shock Wave Treatment of Non- or Delayed Union of Proximal Metatarsal Fractures. Foot Ankle Int, 32 (8) : 746-754, 2011.
28) 竹林友美, 高橋謙二, 高橋達也ほか : アスリートの舟状骨疲労骨折に対し保存治療として適用した体外衝撃波療法の治療経験. 日足外会誌, 39 (1) : 218-221, 2018.
29) 高橋達也 : Jones骨折に対する体外衝撃波を併用した手術療法. 臨スポーツ医, 38 (7) : 742-745, 2021.
30) 鈴木龍大, 中野貴公, 瀬戸口芳正 : スポーツ現場における集束型衝撃波 (FSW) および拡散型圧力波 (RPW) の活用. MB Orthop, 34 (7) : 61-69, 2021.
31) Wang, C. J., Yang, K. D., Wang, F. S., et al. : Shock wave treatment shows dose-dependent enhancement of bone mass and bone strength after fracture of the femur. Bone, 34 (1) : 225-230, 2004.
32) 面谷透 : 体操選手の骨端症-病態と体外衝撃波治療の有効性-. 臨スポーツ医, 38 (7) : 784-791, 2021.
33) 杉岡辰哉, 小林佑介, 佐竹勇人ほか : リハビリテーション現場でのRPW治療. MB Orthop, 34 (7) : 39-47, 2021.
34) Morgan, J. P. M., Hamm, M., Schmitz, C., et al. : Return to play after treating acute muscle injuries in elite football players with radial extracorporeal shock wave therapy. J Orthop Surg Res, 16 (1) : 708-719, 2021.
P.59 掲載の参考文献
1) Vannabouathong, C., Del Fabbro, G., Sales, B., et al. : Intra-articular Injections in the Treatment of Symptoms from Ankle Arthritis : A Systematic Review. Foot Ankle Int, 39 (10) : 1141-1150, 2018. doi : 10.1177/1071100718779375. Epub 2018 Jun 18. PMID : 29909689
2) Sun, S. F., Hsu, C. W., Lin, G. C., et al. : Efficacy and Safety of a Single Intra-articular Injection of Platelet-rich Plasma on Pain and Physical Function in Patients With Ankle Osteoarthritis-A Prospective Study. J Foot Ankle Surg, 60 (4) : 676-682, 2021. doi : 10.1053/j.jfas.2020.12.003. Epub 2021 Feb 3. PMID : 33549423
3) Paget, L. D. A., Reurink, G., de Vos, R. J., et al. : PRIMA Study Group. : Effect of Platelet-Rich Plasma Injections vs Placebo on Ankle Symptoms and Function in Patients With Ankle Osteoarthritis : A Randomized Clinical Trial. JAMA, 326 (16) : 1595-1605, 2021. doi : 10.1001/jama.2021.16602. PMID : 34698782 ; PMCID : PMC8548954
4) Fukawa, T., Yamaguchi, S., Akatsu, Y., et al. : Safety and Efficacy of Intra-articular Injection of Platelet-Rich Plasma in Patients With Ankle Osteoarthritis. Foot Ankle Int, 38 (6) : 596-604, 2017. doi : 10.1177/1071100717700377. Epub 2017 Apr 11. PMID : 28399635
5) Mei-Dan, O., Carmont, M. R., Laver, L., et al. : Platelet-rich plasma or hyaluronate in the management of osteochondral lesions of the talus. Am J Sports Med, 40 (3) : 534-541, 2012. doi : 10.1177/0363546511431238. Epub 2012 Jan 17. PMID : 22253252
6) Boffa, A., Previtali, D., Di Laura Frattura, G., et al. : Evidence on ankle injections for osteochondral lesions and osteoarthritis : a systematic review and meta-analysis. Int Orthop, 45 (2) : 509-523, 2021. doi : 10.1007/s00264-020-04689-5. Epub 2020 Jul 9. PMID : 32647968
7) Gormeli, G., Karakaplan, M., Gormeli, C. A., et al. : Clinical Effects of Platelet-Rich Plasma and Hyaluronic Acid as an Additional Therapy for Talar Osteochondral Lesions Treated with Microfracture Surgery : A Prospective Randomized Clinical Trial. Foot Ankle Int, 36 (8) : 891-900, 2015. doi : 10.1177/1071100715578435. Epub 2015 Mar 30. PMID : 25825393
8) Blanco-Rivera, J., Elizondo-Rodriguez, J., Simental-Mendia, M., et al. : Treatment of lateral ankle sprain with platelet-rich plasma : A randomized clinical study. Foot Ankle Surg, 26 (7) : 750-754, 2020. doi : 10.1016/j.fas.2019.09.004. Epub 2019 Sep 28. PMID : 31640921
9) Laver, L., Carmont, M. R., McConkey, M. O., et al. : Plasma rich in growth factors (PRGF) as a treatment for high ankle sprain in elite athletes : a randomized control trial. Knee Surg Sports Traumatol Arthrosc, 23 (11) : 3383-3392, 2015. doi : 10.1007/s00167-014-3119-x. Epub 2014 Jun 18. PMID : 24938396
10) Samra, D. J., Sman, A. D., Rae, K., et al. : Effectiveness of a single platelet-rich plasma injection to promote recovery in rugby players with ankle syndesmosis injury. BMJ Open Sport Exerc Med, 1 (1) : e000033, 2015. doi : 10.1136/bmjsem-2015-000033. PMID : 27900128 ; PMCID : PMC5117053
11) Lin, M. T., Chiang, C. F., Wu, C. H., et al. : Meta-analysis Comparing Autologous Blood-Derived Products (Including Platelet-Rich Plasma) Injection Versus Placebo in Patients With Achilles Tendinopathy. Arthroscopy, 34 (6) : 1966-1975.e5, 2018. doi : 10.1016/j.arthro.2018.01.030. PMID : 29685839
12) Fei, X., Lang, L., Lingjiao, H., et al. : Platelet-rich plasma has better mid-term clinical results than traditional steroid injection for plantar fasciitis : A systematic review and meta-analysis. Orthop Traumatol Surg Res, 107 (6) : 103007, 2021. doi : 10.1016/j.otsr.2021.103007. Epub 2021 Jul 1. PMID : 34217867
13) Bezuglov, E., Zholinsky, A., Chernov, G., et al. : Conservative Treatment of the Fifth Metatarsal Bone Fractures in Professional Football Players Using Platelet-Rich Plasma. Foot Ankle Spec, 15 (1) : 62-66, 2022. doi : 10.1177/19386400211017368. Epub 2021 Jun 18. PMID : 34142576
P.69 掲載の参考文献
1) Finnoff, J. T., Hall, M. M., Adams, E., et al. : American Medical Society for Sports Medicine (AMSSM) position statement : interventional musculoskeletal ultrasound in sports medicine. Br J Sports Med, 49 (3) : 145-150, 2015.
2) Wright, J. G., Swiontkowski, M. F., Heckman, J. D. : Introducing levels of evidence to the journal. J Bone Joint Surg Am, 85 (1) : 1-3, 2003.
3) Khosla, S., Thiele, R., Baumhauer, J. F. : Ultrasound guidance for intra-articular injections of the foot and ankle. Foot Ankle Int, 30 (9) : 886-890, 2009.
4) Reach, J. S., Easley, M. E., Chuckpaiwong, B., et al. : Accuracy of ultrasound guided injections in the foot and ankle. Foot Ankle Int, 30 (3) : 239-242, 2009.
5) Wisniewski, S. J., Smith, J., Patterson, D. G., et al. : Ultrasound-guided versus nonguided tibiotalar joint and sinus tarsi injections : a cadaveric study. PM R, 2 (4) : 277-281, 2010.
6) Goncalves, B., Ambrosio, C., Serra, S., et al. : US-guided interventional joint procedures in patients with rheumatic diseases--when and how we do it? Eur J Radiol, 79 (3) : 407-414, 2011.
7) Nazarian, L. N., Gulvartian, N. V., Freeland, E. C., et al. : Ultrasound-Guided Percutaneous Needle Fenestration and Corticosteroid Injection for Anterior and Anterolateral Ankle Impingement. Foot Ankle Spec, 11 (1) : 61-66, 2018.
8) Smith, J., Finnoff, J. T., Henning, P. T., et al. : Accuracy of sonographically guided posterior subtalar joint injections : comparison of 3 techniques. J Ultrasound Med, 28 (11) : 1549-1557, 2009.
9) Smith, J., Maida, E., Murthy, N. S., et al. : Sonographically guided posterior subtalar joint injections via the sinus tarsi approach. J Ultrasound Med, 34 (1) : 83-93, 2015.
10) Wempe, M. K., Sellon, J. L., Sayeed, Y. A., et al. : Feasibility of first metatarsophalangeal joint injections for sesamoid disorders : a cadaveric investigation. PM R, 4 (8) : 556-560, 2012.
11) Balint, P. V., Kane, D., Hunter, J., et al. : Ultrasound guided versus conventional joint and soft tissue fluid aspiration in rheumatology practice : a pilot study. J Rheumatol, 29 (10) : 2209-2213, 2002.
12) Drakonaki, E. E., Kho, J. S., Sharp, R. J., et al. : Efficacy of ultrasound-guided steroid injections for pain management of midfoot joint degenerative disease. Skeletal Radiol, 40 (8) : 1001-1006, 2011.
13) Muir, J. J., Curtiss, H. M., Hollman, J., et al. : The accuracy of ultrasound-guided and palpation-guided peroneal tendon sheath injections. Am J Phys Med Rehabil, 90 (7) : 564-571, 2011.
14) Di Geso, L., Filippucci, E., Meenagh, G., et al. : CS injection of tenosynovitis in patients with chronic inflammatory arthritis : the role of US. Rheumatology (Oxford), 51 (7) : 1299-1303, 2012.
15) Fram, B. R., Rogero, R., Fuchs, D., et al. : Clinical Outcomes and Complications of Peroneal Tendon Sheath Ultrasound-Guided Corticosteroid Injection. Foot Ankle Int, 40 (8) : 888-894, 2019.
16) Dallaudiere, B., Pesquer, L., Meyer, P., et al. : Intratendinous injection of platelet-rich plasma under US guidance to treat tendinopathy : a long-term pilot study. J Vasc Interv Radiol, 25 (5) : 717-723, 2014.
17) Opdam, K. T., Madirolas, X., Zwiers, R., et al. : The accuracy of an injection technique for Flexor hallucis longus tendon sheath : A cadaveric study. Foot and Ankle Surg, 26 (3) : 334-337, 2020.
18) Mehdizade, A., Adler, R. S. : Sonographically guided flexor hallucis longus tendon sheath injection. J Ultrasound Med, 26 (2) : 233-237, 2007.
19) Drakonaki, E. E., Allen, G. M., Watura, R. : Ultrasound-guided intervention in the ankle and foot. Br J Radiol, 89 (1057) : 20150577, 2016.
20) de Vos, R. J., van der Vlist, A. C., Zwerver, J., et al. : Dutch multidisciplinary guideline on Achilles tendinopathy. Br J Sports Med, 55 (20) : 1125-1134, 2021.
21) Kumai, T., Samoto, N., Hasegawa, A., et al. : Short-term efficacy and safety of hyaluronic acid injection for plantar fasciopathy. Knee Surg Sports Traumatol Arthrosc, 26 (3) : 903-911, 2018.
22) Chan, O., O'Dowd, D., Padhiar, N., et al. : High volume image guided injections in chronic Achilles tendinopathy. Disabil Rehabil, 30 (20-22) : 1697-1708, 2008.
23) Maffuli, N., Spiezia, F., Longo, U. G., et al. : High volume image guided injections for the management fo chronic tendinopathy of the main body of the Achilles tendon. Phy Ther Sport, 14 (3) : 163-167, 2013.
24) Alfredson, H. : Ultrasound and Doppler-guided mini-surgery to treat midportion Achilles tendinosis : results of a large material and a randomised study comparing two scraping techniques. Br J Sports Med, 45 (5) : 407-410, 2011.
25) Maxwell, N. H., Ryan, M., Taunton, J., et al. : Sonographically guided intratendinous injection of hyperosmolar dextrose to treat chronic tendinosis of the Achilles tendon : A pilot study. AJR, 189 (4) : W215-W220, 2007.
26) Ryan, M., Wong, A., Taunton, J. : Favorable outcomes after sonographically guided intratendinous injection of hyperosmolar dextrose for chronic insertional and midportion Achilles tendinosis. AJR Am J Roentgenol, 194 (4) : 1047-1053, 2010.
27) Vos, R. J., Weir, A., van Shie, H. T., et al. : Platelet-rich plasma injection for chronic Achilles tendinopathy. A randomized controlled trial. JAMA, 303 (2) : 144-149, 2010.
28) de Jonge, S., Vos, R. J., Weir, A., et al. : One-year follow-up of Platelet-rich plasma treatment in chronic Achilles tendinopathy. A double-blind randomized placebo-controlled trial. Am J Sports Med, 39 (8) : 1623-1629, 2011.
29) Wu, Y. T., Chen, S. R., Li, T. Y., et al. : Nerve hydrodissection for carpal tunnel syndrome : A prospective, randomized, double-blind, controlled trial. Muscle Nerve, 59 (2) : 174-180, 2019.
30) Fader, R. R., Mitchell, J. J., Chadayammuri, V. P., et al. : Percutaneous Ultrasound-Guided Hydrodissection of a Symptomatic Sural Neuroma. Orthopedics, 38 (11) : e1046-1050, 2015.
31) Ferreira-Silva, N., Galacho, J., Ferreira-Dos-Santos, G., et al. : Ultrasound-guided hydrodissection of the superficial peroneal nerve for chronic neuropathic pain : a war veteran's story. Pain Manag, 2 (5) : 579-586, 2022.
32) Morgan, P., Monaghan, W., Richards, S. : A Systematic Review of Ultrasound-Guided and Non-Ultrasound-Gouided Therapeutic Injections to Treat Morton's Neuroma. J Am Podiatr Med Assoc, 104 (4) : 337-348, 2014.
33) Beard, N. M., Gousse, R. P. : Current Ultrasound Application in the Foot and Ankle. Orthop Clin North Am, 49 (1) : 109-121, 2018.
34) Paczesny, L., Kruczynski, J. : Ultrasound-guided arthroscopic management of hallux rigidus. Wideochir Inne Tech Maloinwazyjne, 11 (3) : 144-148, 2016.
35) Ohuchi, H., Ichikawa, K., Hattori, S., et al. : Ultrasound-assisted endoscopic partial plantar fascia release. Arthrosc Tech, 2 (3) : e227-230, 2013.
36) Vohra, P. K., Japour, C. J. : Ultrasound-guided plantar fascia release technique : a retrospective study of 46 feet. J Am Podiatr Med Assoc, 99 (3) : 183-190, 2009.
37) Iborra, A., Villanueva, M., Sanz-Ruiz, P., et al. : A novel closed technique for ultrasound-guided plantar fascia release with a needle : review of 107 cases with a minimum follow-up of 24 months. J Orthop Surg Res, 16 (1) : 153, 2021.
38) Villanueva, M., Iborra, A., Rodriguez, G., et al. : Ultrasound-guided gastrocnemius recession : a new ultra-minimally invasive surgical technique. BMC Musculoskelet Disord, 17 (1) : 409, 2016.
39) Moroni, S., Fernandez-Gibello, A., Nieves, G. C., et al. : Anatomical basis of a safe mini-invasive technique for lengthening of the anterior gastrocnemius aponeurosis. Surg Radiol Anat, 43 (1) : 53-61, 2021.
40) Fernandez-Gibello, A., Moroni, S., Camunas, G., et al. : Ultrasound-guided decompression surgery of the tarsal tunnel : a novel technique for the proximal tarsal tunnel syndrome-Part II. Surg Radiol Anat, 41 (1) : 43-51, 2019.
41) Iborra, A., Villanueva-Martinez, M., Barrett, S. L., et al. : Ultrasound-Guided Release of the Tibial Nerve and Its Distal Branches : A Cadaveric Study. J Ultrasound Med, 38 (8) : 2067-2079, 2019.
42) Iborra, A., Villanueva, M., Sanz-Ruiz, P. : Results of ultrasound-guided release of tarsal tunnel syndrome : a review of 81 cases with a minimum follow-up of 18 months. J Orthop Surg Res, 15 (1) : 30, 2020.
43) Smith, J., Alfredson, H., Masci, L., et al. : Sonographically Guided Plantaris Tendon Release : A Cadaveric Validation Study. PM R, 11 (1) : 56-63, 2019.
44) Hickey, B., Lee, J., Stephen, J., et al. : It is possible to release the plantaris tendon under ultrasound guidance : a technical description of ultrasound guided plantaris tendon release (UPTR) in the treatment of non-insertional Achilles tendinopathy. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2858-2862, 2019.
45) Vajapey, S., Ghenbot, S., Baria, M. R., et al. : Utility of Percutaneous Ultrasonic Tenotomy for Tendinopathies : A Systematic Review. Sports Health, 13 (3) : 258-264, 2021.
46) Patel, M. M. : A novel treatment for refractory plantar fasciitis. Am J Orthop (Belle Mead NJ), 44 (3) : 107-110, 2015.
47) Chimenti, R. L., Stover, D. W., Fick, B. S., et al. : Percutaneous Ultrasonic Tenotomy Reduces Insertional Achilles Tendinopathy Pain With High Patient Satisfaction and a Low Complication Rate. J Ultrasound Med, 38 (6) : 1629-1635, 2019.
48) Wang, C. L., Chen, P. Y., Yang, K. C., et al. : Ultrasound-Guided Minimally Invasive Surgical Resection of Retrocalcaneal Bursitis : A Preliminary Comparison With Traditional Open Surgery. J Foot Ankle Surg, 58 (5) : 855-860, 2019.
49) Madarevic, T., Rakovac, I., Ruzic, L., et al. : Ultrasound-assisted calcaneoplasty. Knee Surg Sports Traumatol Arthrosc, 22 (9) : 2250-2253, 2014.
50) Chavez, J., Hattori, S., Kato, Y., et al. : The use of ultrasonography during minimally invasive Achilles tendon repair to avoid sural nerve injury. J Med Ultrason (2001), 46 (4) : 513-514, 2019.
51) Giannetti, S., Patricola, A. A., Stancati, A., et al. : Intraoperative ultrasound assistance for percutaneous repair of the acute Achilles tendon rupture. Orthopedics. 37 (12) : 820-824, 2014.
52) Paczesny, L., Zabrzynski, J., Domzalski, M., et al. : Mini-Invasive, Ultrasound Guided Repair of the Achilles Tendon Rupture-A Pilot Study. J Clin Med, 10 (11) : 2370, 2021.
53) Lee, J. K., Kang, C., Hwang, D. S., et al. : A comparative study of innovative percutaneous repair and open repair for acute Achilles tendon rupture : Innovative usage of intraoperative ultrasonography. J Orthop Surg (Hong Kong), 28 (1) : 2309499020910274, 2020.
54) Hattori, S., Alvarez, C. A. D., Onishi, K., et al. : Ultrasound-Guided Ankle Lateral Ligament Stabilization. Curr Rev Musculoskelet Med, 12 (4) : 497-508, 2019.
55) Hattori, S., Onishi, K., Yano, Y., et al. : Sonographically Guided Anchor Placement in Anterior Talofibular Ligament Repair Is Anatomic and Accurate. Orthop J Sports Med, 8 (12) : 2325967120967322, 2020.
56) 西村明展 : 腓骨筋腱脱臼の診断における超音波ガイド下腱鞘内注射の有用性. 日整外超音波会誌, 31 : 111, 2019.
P.77 掲載の参考文献
1) Matsui, K., Burgesson, B., Takao, M., et al. : Minimally invasive surgical treatment for chronic ankle instability : a systematic review. Kee Surg Spots Traumatol Arhrosc, 24 (4) : 1040-1048, 2016.
2) Guillo, S., Bauer, T., Lee, J. W., et al. : Consensus in chronic ankleinstability : aetiology, assessment, surgical indications and place for arthroscopy. Orthop Traumatol Surg Res, 99 (8 Suppl) : S411-S419, 2013.
3) Burman, M. S. : Arthroscopy or the direct visualization of joints. J Bone Joint Surg, 13 (4) : 669-695, 1931.
4) Takao, M., Uchio, Y., Shu, M., et al. : Anatomic bases of ankle arthroscopy : Study of superficial and deep peroneal nerves around anterolateral and anteromedial approach. Surg Radiol Anat, 20 (5) : 317-320, 1998.
5) van Dijk, C. N., Scholter, P. E., Krips, R. : A 2-portal endoscopic approach for diagnosis and treatment of posterior ankle pathology. Arthroscopy, 16 (8) : 871-876, 2000.
6) van Dijk, C. N., van Bergen, C. J. : Advancement in ankle arthroscopy. J Am Acad Orthop Surg, 16 (11) : 635-646, 2008.
7) Scholten, P. E., Sierevelt, I. N., van Dijk, C. N. : Hindfoot endoscopy for posterior ankle impingement. J Bone Joint Surg, 90-A : 2665-2672, 2008.
8) Horibe, S., Kita, K., Natsu-ume, T., et al. : A novel technique of arthroscopic excision of a symptomatic os trigonum. Arhroscopy, 24 : 121, 2007.
9) Sarrafian, S. K. : Anatomy of the Foot and Ankle. 3rd ed. Kelikian, A. S., et al., editors, Lippincott Williams and Wilkins, Philadelphia, 2011.
10) Lui, T. H. : Flexor digitorum longus tendoscopy. J Foot Ankle Surg, 51 (5) : 690-692, 2012.
11) Barrett, S. L., Day, S. V., Pignetti, T. T., et al. : Endoscopic plantar fasciotomy : a multi-surgeon prospective analysis of 652 cases. J Foot Ankle Surg, 34 (4) : 400-406, 1995.
12) Lui, T. H. : Endoscopic decompression of the first branch of the lateral plantar nerve. Arch Orthop Trauma Surg, 127 (9) : 859-861, 2007.
13) Shapiro, S. L. : Endoscopic decompression of the intermetatarsal nerve for Morton's neuroma. Foot Ankle Clin, 9 (2) : 297-304, 2004.
14) Maeda, S., Niki, H., Hirano, T., et al. : Safe Zone for the Plantar Portal : A Cadaveric Study. Foot Ankle Int, 37 (2) : 210-217, 2016. doi : 10.1177/1071100715607964
P.83 掲載の参考文献
1) 川口航平, 武冨修治, 山神良太ほか : 両側に足関節捻挫の既往のあるサッカー選手の身体的特徴-UTSSIスポーツ障害予防プロジェクト-. 日臨スポーツ医会誌, 28 (3) : 456-461, 2020.
2) 山本愛乃, 笹原潤, 高尾昌人ほか : 超音波検査を用いたメディカルチェックにおける前下脛腓靱帯損傷の既往調査. 日臨スポーツ医会誌, 24 (4) : S317-S317, 2016.
3) 鈴江直人, 岩瀬毅信, 松浦哲也 : 発育期の下肢スポーツ外傷・障害-その診断から予防まで-. 臨スポーツ医, 26 (2) : 197-208, 2009.
4) 能瀬さやか, 土肥美智子, 難波聡 : 女性トップアスリートにおける無月経と疲労骨折の検討. 日臨スポーツ医会誌, 22 (1) : 67-74, 2014.
5) 藤高紘平, 岸本恵一, 立石智彦ほか : Jones骨折の発生に関与する身体的特徴の検討. JOSKAS, 46 (3) : 680-685, 2021.
6) 浜中一輝, 若林敏行, 藤巻有久 : 国体女子器械体操, 新体操, 短・中長距離陸上選手の健康調査票によるメディカルチェック結果の比較. JOSKAS, 43 (2) : 570-571, 2018.
7) 植木博子, 立石智彦, 荻内隆司ほか : 大学サッカー部員に施行したJones骨折検診の有用性. JOSKAS, 42 (2) : 416-417, 2017.
8) 松田匠生, 福林徹, 立石智彦ほか : Jones骨折発生を予測する超音波画像の特徴-大学サッカー選手132名の1年間追跡調査-. 日臨スポーツ医会誌, 26 (3) : 348-354, 2018.
9) 大場俊二 : 少年サッカー選手用ヘルスチェックシートの作成-U-12サッカー選手整形外科的メディカルチェックの結果より-. 臨スポーツ医, 17 (3) : 370-376, 2000.

II章 各論 < 下腿 >

P.91 掲載の参考文献
1) Erickson, B. J., Cvetanovich, G. L., Nwachukwu, B. U., et al. : Trends in the management of Achilles tendon ruputures in the United States Medicare population, 2005-2011. Orthop J Sports Med, 2 (9) : 2325967114549948, 2014.
2) Lantto, I., Heikkinen, J., Flinkkila, T., et al. : Epidemiology of Achilles tendon ruptures : increasing incidence over a 33-year period. Scand J Med Sci Sports, 25 (1) : e133-e138, 2015.
3) Ganestam, A., Kallemose, T., Troelsen, A. : Increasing incidence of acute Achilles tendon rupture and a noticeable decline in surgical treatment from 1994 to 2013. A nationwide registry study of 33,160 patients. Knee Surg Sports Traumatol Arthrosc, 24 (12) : 3730-3737, 2016.
4) Jiang, N., Wang, B., Chen, A., et al. : Operative versus nonoperative treatment for acute Achilles tendon rupture : a meta-analysis based on current evidence. Int Orthop, 36 (4) : 765-773, 2012.
5) Wilkins, R., Bisson, L. J. : Operative versus nonoperative management of acute Achilles tendon ruptures. A quantitative systematic review of randommised controlled trial. Am J Sports Med, 40 (9) : 2154-2160, 2012.
6) Deng, S., Sun, Z., Zhang, C., et al. : Surgical treatment versus conservative management for acute Achilles tendon rupture : A systematic review and meta-analysis of randomized controlled trials. J Foot Ankle Surg, 56 (6) : 1236-1243, 2017.
7) Reda, Y., Farouk, A., Abdelmonem, I., et al. : Surgical versus non-surgical treatment for acute Achilles tendon rupture. A systematic review of literature and meta-analysis. Foot Ankle Surg, 26 (3) : 280-288, 2020.
8) van der Eng, D. M., Schepers, T., Schep, N. W., et al. : Rerupture rate after early weightbearing in operative versus conservative treatment of Achilles tendon ruptures : a meta-analysis. J Foot Ankle Surg, 52 (5) : 622-628, 2013.
9) Zhou, K., Song, L., Zhang, P., et al. : Surgical versus non-surgical methods for acute Achilles tendon rupture : A meta-analysis of randomized controlled trials. J Foot Ankle Surg, 57 (6) : 1191-1199, 2018.
10) She, G., Teng, Q., Li, J., et al. : Comparing surgical and conservative treatment on Achilles tendon rupture : A comprehensive meta-analysis of RCTs. Front Surg, 18 ; 8 : 607743. doi : 10.3389/fsurg.2021.607743 eCollection 2021.
11) Ma, G. W., Griffith, T. G. : Percutaneous repair of acute closed ruptured achilles tendon : a new technique. Clin Orthop Relat Res, 128 : 247-255, 1977.
12) Li, Y., Jiang, Q., Chen, H., et al. : Comparison of mini-open repair system and percutaneous repair for acute Achilles tendon rupture. BMC Musculoskelet Disord, 22 (1) : 914, 2021.
13) Kotnis, R., David, S., Handley, R., et al. : Dynamic ultrasound as a selection tool for reducing Achilles tendon reruptures. Am J Sports Med, 34 (9) : 1395-1400, 2006.
14) Amlang, M. H., Zwipp, H., Friedrich, A., et al. : Ultrasonographic classification of achilles tendon ruptures as a rationale for individual treatment selection. ISRN Orthop, 2011. doi : 10.5402/2011/869703
15) 岡田洋和 : 超音波診断・治療の最前線. 下肢の超音波診断 アキレス腱断裂. 整形外科. 66 : 814-821, 2015.
16) Zhang, H., Tang, H., He, Q., et al. : Surgical versus conservative intervention for acute Achilles tendon rupture A prisma-compliant systematic review of overlapping meta-analyses. Medicine (Baltimore), 94 (45) : e1951, 2015. doi : 10.1097/MD.0000000000001951
17) Wallace, R. G. H., Heyes, G. J., Michael, A. L. R. : The non-operative functional management of patients with a rupture of the tendo Achillis leads to low rates of re-rupture. J Bone Joint Surg Br, 93 (10) : 1362-1366, 2011.
18) Enwemeka, C. S., Spielholz, N. I., Nelson, A. J. : The effect of early functional activities on experimentally tenotomized Achilles tendons in rats. Am J Phys Med Rehabil, 67 (6) : 264-269, 1988.
19) 米田寛, 久保田竜祐, 平松邦彦 : アキレス腱新鮮皮下断裂に対する保存療法限界例でのエコー所見とその経過について. 日整外超音波会誌, 22 : 75-77, 2010.
20) 古府照男, 上山裕史 : アスリートのアキレス腱断裂をめぐって-アキレス腱断裂保存装具療法. 臨スポーツ医, 24 : 1079-1087, 2007.
21) Kessler, I. : The "grasping" technique for tendon repair. Hand, 5 (3) : 253-255, 1973.
22) Krackow, K. A., Thomas, S. C., Jones, L. C. : A new stitch for ligament-tendon fixation. Brief note. J Bone Joint Surg Am, 68 (5) : 764-766, 1986.
23) Tsuge, K., Ikura, Y., Matsuishi, Y. : Intra-tendinous tendon suture in the hand : a new technique. Hand, 7 (3) : 250-255, 1975.
24) Marti, R. K., van der Werken, C., Schutte, P. R., et al. : Operative repair of ruptured Achilles tendon and functional after treatment. Part I and Part II. Netherlands J Surg, 35 (2) : 61-68, 1983.
25) Uchiyama, E., Nomura, Y., Hiranuma, K., et al. : A modified operation for Achilles tendon ruptures. Am J Sports Med, 35 (10) : 1739-1743, 2007.
26) Khan, R. J., Fick, D., Keogh, A., et al. : Treatment of acute Achilles tendon ruptures. A meta-analysis of randomized, controlled trials. J Bone Joint Surg Am, 87 (10) : 2202-2210, 2005.
27) Lim, J., Dalal, R., Waseem, M. : Percutaneus vs. open repair of the ruptured Achilles tendon-a prospective randomized controlled study. Foot Ankle Int, 22 (7) : 559-568, 2001.
28) McMahon, S., Smith, T. O., Hing, C. B. : A meta-analysis of randomized controlled trials comparing conventional to minimally invasive approaches for repair of an Achilles tendon rupture. Foot Ankle Surg, 17 (4) : 211-217, 2011.
29) Soroceanu, A., Sidhwa, F., Aarabi, S., et al. : Surgical versus nonsurgical treatment of acute Achilles tendon rupture. A meta-analysis of randomized trial. J Bone Joint Surg Am, 94 (23) : 2136-2143, 2012.
30) DeAngelis, J. P., Wilson, K. M., Cox, C. L., et al. : Achilles tendon rupture in athletes. J Surg Orthop Adv, 18 (3) : 115-121, 2009.
31) Nilsson-Helander, K., Thurin, A., Karlsson, J., et al. : High incidence of deep venus thrombosis after Achilles tendon rupture : a prospective study. Knee Surg Sports Traumatol Arthrosc, 17 (10) : 1234-1238, 2009.
32) Yongliang, Y., Honglei, J., Wupeng, Z., et al. : Intraoperative ultrasonography assistance for minimally invasive repair of the acute Achilles tendon rupture. J Orhop Surg Res, 15 (1) : 258, 2020.
33) Giannetti, S., Patricola, A. A., Stancati, A., et al. : Intraoperative ultrasound assistance for percutaneous repair of the acute Achilles tendon rupture. Orthopedics, 37 (12) : 820-824, 2014.
34) Rungprai, C., Phisitkul, P. : Outcomes and complications following endoscopically assisted percutaneous Achilles tendon repair. Arthroscopy, 34 (4) : 1262-1269, 2018.
35) Doral, M. N., Bozkurt, M., Turhan, E., et al. : Achilles tendon rupture : physiotherapy and endoscopy-assisted surgical treatment of a common sports injury. Open Access J Sports Med, 13 : 233-240, 2010.
36) Rosso, C., Vavken, P., Polzer, C., et al. : Long-term outcomes of muscle volume and Achilles tendon length after Achilles tendon ruptures. Knee Surg Sports Traumatol Arthrosc, 21 (6) : 1369-1377, 2013.
37) Heikkinen, J., Lantto, L., Flinkkila, T., et al. : Soleus atrophy is common after the nonsurgical treatment of acute Achilles tendon ruptures. A randomized clinical trial comparing surgical and nonsurgical functional treatments. Am J Sports Med, 45 (6) : 1395-1404, 2017.
38) Diniz, P., Pacheco, J., Guerra-Pinto, F., et al. : Achilles tendon elongation after acure rupture : is it a problem? A systematic review. Knee Surg Sports Traumatol Arthrosc, 28 (12) : 4011-4030, 2020.
39) Kangas, J., Pajala, A., Ohtonen, P., et al. : Achilles tendon elongation after rupture repair : a randomized comparison of 2 postopertive regimens. Am J Sports Med, 35 (1) : 59-64, 2007.
40) Pajala, A., Kangas, J., Siira, P., et al. : Augmented compared with nonaugmented surgical repair of a fresh total Achilles tendon rupture : a prospective randomized study. J Bone Joint Surg Am, 91 (5) : 1092-1100, 2009.
41) Silbernagel, K. G., Steele, R., Manal, K. : Deficits in heel-rise height and Achilles tendon elongation occur in patients recovering from an Achilles tendon rupture. Am J Sports Med, 49 (7) : 1564-1571, 2012.
42) Schepull, T., Kvist, J., Aspenberg, P. : Early E-modulus of healing Achilles tendons correlates with late function : similar results with or without surgery. Scand J Med Sci Sports, 22 (1) : 18-23, 2012.
43) Zellers, J. A., Carmont, M. R., Gravare Silbernagel, K. : Return to play post-Achilles tendon rupture : a systematic review and meta-analysis of rate and measures of return to play. Br J Sports Med, 50 (21) : 1325-1332, 2016.
44) Weber, M., Niemann, M., Lanz, R., et al. : Nonoperative treatment of acute rupture of the Achilles tendon : results of a new protocol and comparison with operative treatment. Am J Sports Med, 31 (5) : 685-691, 2003.
45) Amin, N. H., Old, A. B., Tabb, L. P., et al. : Performance outcomes after repair of complete achilles tendon ruptures in national basketball association players. Am J Sports Med, 41 (8) : 1864-1868, 2013.
46) Parekh, S. G., Wray, W. H. 3rd., Brimmo, O., et al. : Epidemiology and outcomes of Achilles tendon ruptures in the National Football League. Foot Ankle Spec, 2 (6) : 283-286, 2009.
47) Grassi, A., Ross, G., D' Hooghe, P., et al. : Eighty-two percent of male professional football (soccer) players return to play at the previous level two seasons after Achilles tendon rupture treated with surgical repair. Br J Sports Med, 54 (8) : 480-486, 2020.
48) Cetti, R., Christensen, S. E., Ejsted, R., et al. : Operative versus nonoperative treatment of Achilles tendon rupture. A prospective randomized study and review of the literature. Am J Sports Med, 21 (6) : 791-799, 1993.
49) Moller, M., Movin, T., Granhed, H., et al. : Acute rupture of tendon Achilles. A prospective randomized study of comparison between surgical and non-surgical treatment. J Bone Joint Surg Br, 83 (6) : 843-848, 2001.
50) Nistor, L. : Surgical and non-surgical treatment of Achilles tendon rupture. A prospective randomized study. J Bone Joint Surg Am, 63 (3) : 394-399, 1981.
51) Metz, R., Verleisdonk, E. J., van der Heijden, G. J., et al. : Acute Achilles tendon rupture : minimally invasive surgery versus nonoperative treatment with immediate full weightbearing-a randomized controlled trial. Am J Sports Med, 36 (9) : 1688-1694, 2008.
52) Moller, M., Lind, K., Movin, T., et al. : Calf muscle function after Achilles tendon rupture. Scand J Med Sports, 12 (1) : 9-16, 2002.
53) Keating, J. F., Will, E. M. : Operative versus non-operative treatment of acute rupture of tendo Achillis. a prospective randomized evaluation of functional outcome. J Bone Joint Surg Br, 93 (8) : 1071-1078, 2011.
54) Metz, R., van der Heijden, G. J., verleisdonk, E. J., et al. : Recovery of calf muscles strength following acute tendon rupture treatment : a comparison between minimally invasive surgery and conservative treatment. Foot Ankle Spec, 2 (5) : 219-226, 2009.
55) 鈴木朱美, 佐々木淳也, 福島重宣ほか : Half-Mini-Bunnell法 (内山法) によるアキレス腱縫合術後の筋力評価. 日整外スポーツ医会誌, 30 : 124-127, 2010.
56) 飛田正敏, 市本裕康, 勝部浩介ほか. アキレス腱断裂の手術療法と保存療法における足関節底屈筋力回復時期の比較. 臨整外, 8 : 745-749, 2016.
57) Nilsson-Helander, K., Thomee, R., Garvare-Silbernagel, K., et al. : The Achilles tendon total rupture score (ATRS). Development and validation. Am J Sports Med, 35 (3) : 421-426, 2007.
58) Nilsson-Helander, K., Silbernagel, K. G., Thomee, R., et al. : Acute Achilles tendon rupture : a randomized, controlled study comparing surgical and nonsurgical treatments using validated outcome measures. Am J Sports Med, 38 (11) : 2186-2193, 2010.
59) Olsson, N., Silbernagel, K. G., Eriksson, B. I., et al. : Stable surgical repair with accelerated rehabilitation versus nonsurgical treatment for acute Achilles tendon ruptures : a randomized controlled study. Am J Sports Med, 41 (12) : 2867-2876, 2013.
60) Wallace, R. G. H., Traynor, I. E. R., Kernohan, W. G., et al. : Combined conservative and orhotic management of acute ruptures of the Achilles tendon. J Bone Joint Surg Am, 86 (6) : 1198-1202, 2004.
P.100 掲載の参考文献
1) Soroceanu, A., Sidhwa, F., Aarabi, S., et al. : Surgical versus nonsurgical treatment of acute Achilles tendon rupture : a meta-analysis of randomized trials. J Bone Joint Surg Am, 94 (23) : 2136-2143, 2012.
2) Zhang, H., Tang, H., He, Q., et al. : Surgical Versus Conservative Intervention for Acute Achilles Tendon Rupture : A PRISMA-Compliant Systematic Review of Overlapping Meta-Analyses. Medicine (Baltimore), 94 (45) : e1951, 2015.
3) Haapasalo, H., Peltoniemi, U., Laine, H. J., et al. : Treatment of acute Achilles tendon rupture with a standardised protocol. Arch Orthop Trauma Surg, 138 (8) : 1089-1096, 2018.
4) Maffulli, N. : The clinical diagnosis of subcutaneous tear of the Achilles tendon. A prospective study in 174 patients. Am J Sports Med, 26 (2) : 266-270, 1998.
5) Poposka, A., Georgieva, D., Dzoleva-Tolevska, R. : Significance of ultrasound in the diagnosis and treatment of achilles tendon rupture. Prilozi, 33 (1) : 209-216, 2012.
6) 林光俊 : 治療. アキレス腱断裂診療ガイドライン 2019 改訂第2版. 日本整形外科学会, 日本整形外科スポーツ医学会監, 日本整形外科学会診療ガイドライン委員会, アキレス腱断裂診療ガイドライン策定委員会編. 南江堂, 東京, 41-68, 2019.
7) Johns, W., Walley, K. C., Seedat, R., et al. : Career Outlook and Performance of Professional Athletes After Achilles Tendon Rupture : A Systematic Review. Foot Ankle Int, 42 (4) : 495-509, 2021.
8) Amlang, M. H., Zwipp, H., Friedrich, A., et al. : Ultrasonographic classification of achilles tendon ruptures as a rationale for individual treatment selection. ISRN Orthop, 2011 : 869703, 2011.
9) Kotnis, R., David, S., Handley, R., et al. : Dynamic ultrasound as a selection tool for reducing Achilles tendon reruptures. Am J Sports Med, 34 (9) : 1395-1400, 2006.
10) Westin, O., Helander, K. N., Silbernagel, K. G., et al. : Acute Ultrasonography Investigation to Predict Reruptures and Outcomes in Patients With an Achilles Tendon Rupture. Orthop J Sports Med, 4 (10) : 2325967116667920, 2016.
11) Silbernagel, K. G., Steele, R., Manal, K. : Deficits in heel-rise height and achilles tendon elongation occur in patients recovering from an Achilles tendon rupture. Am J Sports Med, 40 (7) : 1564-1571, 2012.
12) Yasuda, T., Kinoshita, M., Abe, M., et al. : Unfavorable effect of knee immobilization on Achilles tendon healing in rabbits. Acta Orthop Scand, 71 (1) : 69-73, 2000.
13) Hansen, M. S., Vestermark, M. T., Holmich, P., et al. : Individualized treatment for acute Achilles tendon rupture based on the Copenhagen Achilles Rupture Treatment Algorithm (CARTA) : a study protocol for a multicenter randomized controlled trial. Trials, 21 (1) : 399, 2020.
14) 野口昌彦 : 【保存治療でなおす運動器疾患-OAから外傷まで-】アキレス腱断裂. MB Orthop, 28 (10) : 173-178, 2015.
15) Soroceanu, A., Sidhwa, F., Aarabi, S., et al. : Surgical versus nonsurgical treatment. J Bone Joint Surg Am, 94 (23) : 2136-2143, 2012.
16) Schepull, T., Aspenberg, P. : Early controlled tension improves the material properties of healing human achilles tendons after ruptures : a randomized trial. Am J Sports Med, 41 (11) : 2550-2557, 2013.
17) Young, S. W., Patel, A., Zhu, M., et al. : Weight-Bearing in the Nonoperative Treatment of Acute Achilles Tendon Ruptures : A Randomized Controlled Trial. J Bone Joint Surg Am, 96 (13) : 1073-1079, 2014.
18) Barfod, K. W., Bencke, J., Lauridsen, H. B., et al. : Nonoperative dynamic treatment of acute achilles tendon rupture : the influence of early weight-bearing on clinical outcome : a blinded, randomized controlled trial. J Bone Joint Surg Am, 96 (18) : 1497-1503, 2014.
19) Manent, A., Lopez, L., Corominas, H., et al. : Acute Achilles Tendon Ruptures : Efficacy of Conservative and Surgical (Percutaneous, Open) Treatment-A Randomized, Controlled, Clinical Trial. J Foot Ankle Surg, 58 (6) : 1229-1234, 2019.
20) Barfod, K. W., Hansen, M. S., Holmich, P., et al. : Efficacy of early controlled motion of the ankle compared with immobilisation in non-operative treatment of patients with an acute Achilles tendon rupture : an assessor-blinded, randomised controlled trial. Br J Sports Med, 54 (12) : 719-724, 2020.
21) Kastoft, R., Bencke, J., Speedtsberg, M. B., et al. : Early weight-bearing in nonoperative treatment of acute Achilles tendon rupture did not influence mid-term outcome : a blinded, randomised controlled trial. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2781-2788, 2019.
22) Costa, M. L., Achten, J., Marian, I. R., et al. : Plaster cast versus functional brace for non-surgical treatment of Achilles tendon rupture (UKSTAR) : a multicentre randomised controlled trial and economic evaluation. Lancet, 395 (10222) : 441-448, 2020.
23) Aujla, R. S., Patel, S., Jones, A., et al. : Non-operative functional treatment for acute Achilles tendon ruptures : The Leicester Achilles Management Protocol (LAMP). Injury, 50 (4) : 995-999, 2019.
24) Harrington, T. L., Breedlove, G. J., Sharpe, J. J. : Systematic Review of Nonoperative Functional Protocols for Acute Achilles Ruptures Utilizing a Formal Rehabilitation Protocol Showing Lowest Rerupture Rates. Foot Ankle Spec, 13 (6) : 508-515, 2020.
25) Zhang, Y. J., Long, X., Du, J. Y., et al. : Is Early Controlled Motion and Weightbearing Recommended for Nonoperatively Treated Acute Achilles Tendon Rupture? A Systematic Review and Meta-analysis. Orthop J Sports Med, 9 (9) : 23259671211024605, 2021.
26) Coopmans, L., Aliaga, J. A., Metsemakers, W. J., et al. : Accelerated Rehabilitation in Non-operative Management of Acute Achilles Tendon Ruptures : A Systematic Review and Meta-analysis. J Foot Ankle Surg, 61 (1) : 157-162, 2022.
27) Jamjoom, B. A. : The Influence of Early Weightearing, Controlled Motion, and Timing of Orthosis Removal on the Nonoperative Management of Achilles Tendon Rupture : A Systematic Review. J Foot Ankle Surg, 60 (4) : 777-786, 2021.
P.109 掲載の参考文献
1) Yamaguchi, S., Kimura, S., Akagi, R., et al. : Increase in Achilles Tendon Rupture Surgery in Japan Results From a Nationwide Health Care Database. Orthop J Sports Med, 9 (10) : 23259671211034128, 2021.
2) Dams, O. C., van den Akker-Scheek, I., Diercks, R. L., et al. : Surveying the management of Achilles tendon ruptures in the Netherlands : lack of consensus and need for treatment guidelines. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2754-2764, 2018.
3) Westin, O., Helander, K. N., Silbernagel, K. G., et al. : Acute Ultrasonography Investigation to Predict Reruptures and Outcomes in Patients With an Achilles Tendon Rupture. Orthop J Sports Med, 4 (10) : 2325967116667920, 2016.
4) Trofa, D. P., Noback, P. C., Caldwell, J. M. E., et al. : Professional Soccer Player's Return to Play and Performance After Operative Repair of Achilles Tendon Rupture. Orthop J Sports Med, 6 (11) : 2325967118810772, 2018.
5) Minhas, S. V., Kester, B. S., Larkin, K. E., et al. : The Effect of an Orthopaedic Surgical Procedure in the National Basketball Association. Am J Sports Med, 44 (4) : 1056-1061, 2016.
6) Parekh, S. G., Wray, W. H. 3rd., Brimmo, O., et al. : Epidemiology and outcomes of Ahilles tendon ruptures in the National Football League. Foot Ankle Spec, 2 (6) : 283-286, 2009.
7) Mullaney, M. J., McHugh, M. P., Tyler, T. F., et al. : Weakness in End-Rnage Plantar Flextion After Achilles Tendon Repair. Am J Sports Med, 34 (7) : 1120-1125, 2006.
8) 戸邉直人, 苅山端, 林陵平ほか : 走高跳の踏切局面における下肢3関節の力・パワー発揮特性. 体育学研究, 64 (2) : 625-635, 2019.
9) Kangas, J., Pajala, A., Ohtonen, P., et al. : Achilles tendon elongation after rupture repair : a randomized comparison of 2 postoperative regimens. Am J Sports Med, 35 (1) : 59-64, 2006.
10) Eliasson, P., Agergaard, A. S., Couppe, C., et al. : The Ruptured Achilles Tendon Elongates for 6 Months After Surgical Repair Regardless of Early or Late Weightbearing in Combination With Ankle Mobilization : A Randomized Clinical Trial. Am J Sports Med, 46 (10) : 2492-2502, 2018.
11) Silbernagel, K. G., Steele, R., Manal, K., et al. : Deficits in heel-rise height and Achilles tendon elongation occur in patients recovering from an Achilles tendon rupture. Am J Sports Med, 40 (7) : 1564-1571, 2012.
12) Heikkinen, J., Lantto, I., Piilonen, J., et al. : Tendon length, calf muscle atrophy, and strength deficit after acute Achilles tendon rupture : long-term follow-up of patients in a previous study. J Bone Joint Surg Am, 99 (18) : 1509-1515, 2017.
13) Carmont, M. R., Silbernagel, K. G., Brorsson, A., et al. : The Achilles tendon resting angle as an indirect measure of Achilles tendon length following rupture, repair, and rehabilitation. Asia Pac J Sports Med Arthrosc Rehabil Technol, 2 (2) : 49-55, 2015.
14) 安田稔人, 木下光雄, 奥田隆三ほか : 成人若年例のアキレス腱断裂手術治療上の問題点. 中部整災誌, 55 : 473-474, 2012.
15) Maquirriain, J. : Achilles tendon rupture : avoiding tendon lengthening during surgical repair and rehabilitation. Yale J Biol Med, 84 (3) : 289-300, 2011.
16) Carmer, A., Rahdi, E., Hansen, M. S., et al. : No clinically relevant difference between operative and non-operative treatment in tendon elongation measured with the Achilles tendon resting angle (ATRA) 1 year after acute Achilles tendon rupture. Knee Surg Sports Traumatol Arthrosc, 29 (5) : 1617-1626, 2021.
17) Sadoghi, P., Rosso, C., Valderrabano, V., et al. : Initial Achilles tendon repair strength-synthesized biomechanical data from 196 cadaver repairs. Int Orthop, 36 (9) : 1947-1951, 2012.
18) Carmont, M. R., Kuiper, J. H., Silbernagel, K. G., et al. : Tendon end separation with loading in an Achilles tendon repair model : comparison of non-absorbable vs. absorbable sutures. J Exp Orthop, 4 (1) : 26, 2017.
19) Uchiyama, E., Nomura, A., Takeda, Y., et al. : A modified operation for Achilles tendon ruptures. Am J Sports Med, 35 (10) : 1739-1743, 2007.
20) Attia, A. K., Mahmoud, K., d'Hooghe, P., et al. : Outcomes and Complications of Open Versus Minimally Invasive Repair of Acute Achilles Tendon Ruptures. A Systematic Review and Meta-analysis of Randomized Controlled Trials. The Am J Sports Med, 15 : 3635465211053619, 2021.
21) Hsu, A. R., Jones, C. P., Cohen, B. E., et al. : Clinical Outcomes and Complications of Percutaneous Achilles Repair System Versus Open Technique for Acute Achilles Tendon Ruptures. Foot Ankle Int, 36 (11) : 1279-1286, 2015.
22) Jaakkola, J. I., Hutton, W. C., Beskin, J. L., et al. : Achilles tendon rupture repair : biomechanical comparison of the triple bundle technique versus the Krackow locking loop technique. Foot Ankle Int, 21 (1) : 14-17, 2000.
23) Labib, S. A., Rolf, R., Dacus, R., et al. : The "Gift- box" repair of the Achilles tendon : a modifi- cation of the Krackow technique. Foot Ankle Int, 30 (5) : 410-414, 2009.
24) Hope, M., Saxby, T. S. : Tendon healing. Foot Ankle Clin, 12 (4) : 553-567, 2007.
25) Evans, N. A., Stanish, W. D. : The basic science of tendon injuries. Curr Orthop, 14 (6) : 403-412, 2000.
26) Enwemeka, C. S. : Functional loading augments the initial tensile strength and energy absorption capacity of regenerating rabbit Achilles tendons. Am J Phys Med Rehabil, 71 (1) : 31-38, 1992.
27) Lin, T. W., Cardenas, L., Soslowsky, L. J. : Biomechanics of tendon injury and repair. J Biomech, 37 (6) : 865-877, 2004.
28) Cetti, R., Henriksen, L. O., Jacobsen, K. S. : A new treatment of ruptured Achilles tendons. A prospective randomized study. Clin Orthop Relat Res, 308 : 155-165, 1994.
29) Schepull, T., Aspenberg, P. : Early controlled tension improves the material properties of healing human Achilles tendons after ruptures : a randomized trial. Am J Sports Med, 41 (11) : 2550-2557, 2013.
30) Gould, H. P., Bano, J. M., Akman, J. L., et al. : Postoperative Rehabilitation Following Achilles Tendon Repair : A Systematic Review. Sports Med Arthrosc Rev, 29 (2) : 130-145, 2021.
31) Wang, K. C., Cotter, E. J., Cole, B. J., et al. : Rehabilitation and Return to Play Following Achilles Tendon Repair. Operative Techniques in Sports Medicine, 25 (3) : 214-219, 2017.
32) Saxena, A., Via, A. G., Silbernagel, K. G., et al. : Current Consensus for Rehabilitation Protocols of the Surgically Repaired Acute Mid-Substance Achilles Rupture : A Systematic Review and Recommendations From the "GAIT" Study Group. J Foot Ankle Surg, 61 (4) : 855-861, 2022.
P.116 掲載の参考文献
1) Viidik, A. : Tensile strength properties of Achilles tendon systems in trained and untrained rabbits. Acta Orthop Scand, 40 (2) : 261-272, 1969.
2) Moller, A., Astrom, M., Westlin, N. E. : Increasing incidence of Achilles tendon rupture. Acta Orthop Scand, 67 (5) : 479-481, 1996.
3) Saini, S. S., Reb, C. W., Chapter, M., et al. : Achilles tendon disorders. J Am Osteopath Assoc, 115 (11) : 670-676, 2015.
4) Gabel, S., Manoli, A. 2nd. : Neglected rupture of the Achilles tendon. Foot Ankle Int, 15 (9) : 512-517, 1994.
5) Porter, D. E., Mannarino, F. P., Snead, D., et al. : Primary repair without augmentation for early neglected Achilles tendon ruptures in the recreational athlete. Foot Ankle Int, 18 (9) : 557-564, 1997.
6) Myerson, M. S. : Achilles tendon ruptures. Instr Course Lect, 48 : 219-230, 1999.
7) Malagenda, F., Clark, C., Dega, R. : Management of Chronic Achilles tendon ruptures-A review. Foot (Edinb), 28 : 54-60, 2016.
8) Maffuli, N., Ajis, A. : Management of chronic ruptures of the Achilles tendon. J Bone Joint Surg Am, 90 (6) : 1348-1360, 2008.
9) O'Reilly, M. A., Massouh, H. : Pictorial review : The sonographic diagnosis of pathology in the Achilles tendon. Clin Radiol, 48 (3) : 202-206, 1993.
10) 辰野聡, 西岡真樹子, 青柳裕 : 【超音波診断updateスクリーニングから精査の時代へ】臓器別腱・靭帯. 臨床放射線, 43 : 1587-1592, 1998.
11) Ferkel, R. D., Flannigan, B. D., Elkins, B. S. : Magnetic resonance imaging of the foot and ankle : correlation of normal anatomy with pathologic conditions. Foot Ankle, 11 (5) : 289-305, 1991.
12) 林光俊, 石井良章 : 【スポーツ医学におけるMR画像の応用】臨床への応用 部位別 下腿 (アキレス腱). 臨スポーツ医 (臨時増刊号), 17 : 301-306, 2000.
13) CHRISTENSEN, I. : Rupture of the achilles tendon ; analysis of 57 cases. Acta Chir Scand, 106 (1) : 50-60, 1953.
14) Sanada, T., Uchiyama, E. : Gravity equinus position to control the tendon length of reversed free tendon frap reconstruction for chronic achilles tendon rupture. J Foot Ankle Surg, 56 (1) : 37-41, 2017.
15) Wapner, K. L., Pavlock, G. S., Hecht, P. J., et al. : Repair of chronic Achilles tendon rupture with flexor hallucis longus tendon transfer. Foot Ankle, 14 (8) : 443-449, 1993.
16) Perez Teuffer, A. : Traumatic rupture of the Achilles tendon. Reconstruction by transplant and graft using the lateral peroneus brevis. Orthop Clin North Am, 5 (1) : 89-93, 1974.
17) Maffulli, N., Spiezia, F., Pintore, E., et al. : Peroneus brevis tendon transfer for reconstruction of chronic tears of the Achilles tendon : a long-term follow-up study. J Bone Joint Surg Am, 94 (10) : 901-905, 2012.
18) de Casar Netto, C., Chinanuvathana, A., Fonseca, L. F. D., et al. : Outcomes of flexor digitorum longus (FDL) tendon transfer in the treatment of Achilles tendon disorders. Foot Ankle Surg, 25 (3) : 303-309, 2019.
19) Sarzaeem, M. M., Lemraski, M. M. B., Safdari, F. : Chronic Achilles tendon rupture reconstruction using a free semitendinous tendon graft transfer. Knee Surg Sports Traumatol Arthrosc, 20 (7) : 1386-1391, 2012.
20) Kuwada, G. T. : Classification of tendo Achillis rupture with consideration of surgical repair techniques. J Foot Surg, 29 (4) : 361-365, 1990.
21) Yasuda, T., Kinoshita, M., Okuda, R. : Reconstruction of chronic Achilles tendon rupture with the use of interposed tissue between the stumps. Am J Sports Med, 35 (4) : 582-588, 2007.
22) Yasuda, T., Shima, H., Mori, K., et al. : Direct repair of chronic Achilles tendon rupture with the using scar tissue located between the tendon stumps. J Bone Joint Surg Am, 98 (14) : 1168-1175, 2016.
23) Carmont, M. R., Maffulli, N. : Z shortening of healed Achilles tendon rupture : a technical note. Foot Ankle Int, 30 (7) : 704-707, 2009.
24) Abraham, E., Pankovich, A. M. : Neglected rupture of the Achilles tendon. Treatment by V-Y tendinous flap. J Bone Joint Surg Am, 57 (2) : 253-255, 1975.
25) Leitner, A., Voigt, C., Rahmanzadeh, R. : Treatment of extensive aseptic defects in old Achilles tendon ruptures : methods and case reports. Foot Ankle, 13 (4) : 176-180, 1992.
26) Kissel, C. G., Blacklidge, D. K., Crowley, D. L. : Repair of neglected Achilles tendon ruptures-procedure and functional results. J Foot Ankle Surg, 33 (1) : 46-52, 1994.
27) Elias, I., Besser, M., Nazarian, L. N., et al. : Reconstruction for missed or neglected or chronic achilles tendon rupture with V-Y lengthening and flexor hallucis longus tendon transfer through one incision. Foot Ankle Int, 28 (12) : 1238-1248, 2007.
28) 金澤和貴, 吉村一朗, 萩尾友宣ほか : 慢性アキレス腱障害に対する腓腹筋筋膜弁を利用したアキレス腱再建術の治療成績. 日足外会誌, 34 (1) : 68-71, 2013.
29) Bosworth, D. M. : Repair of defects in the tendo Achillis. J Bone Joint Surg Am, 38 (1) : 111-114, 1956.
30) Silfverskjold, N. : Uber die subkutane totale Achillessehnenruptur und deren Behandlung. Acta Chir Scand, 84, 393-413, 1941.
31) Kraeutler, M. J., Purcell, J. D., Hunt, K. J. : Chronic Achilles tendon ruptures. Foot Ankle Int, 38 (3) : 921-929, 2017.
32) LINDHOLM, A. : A new method of operation in subcutaneous rupture of the Achilles tendon. Acta Chir Scand, 117 (30) : 261-270, 1959.
33) Gerdes, M. H., Brown, T. D., Bell, A. L., et al. : A flap augmentation technique for Achilles tendon repair. Postoperative strength and functional outcome. Clin Orthop Relat Res, 280 : 241-246, 1992.
34) Sanada, T., Uchiyama, E. : Gravity equinus position to control the tendon length of reversed free tendon flap reconstruction for chronic achilles tendon rupture. J Foot Ankle Surg, 56 (1) : 37-41, 2017.
35) Khiami, F., Di Schino, M., Sariali, E., et al. : Treatment of chronic Achilles tendon rupture by shortening suture and free sural triceps aponeurosis graft. Orthop Traumatol Surg Res, 99 (5) : 585-591, 2013.
36) Lapidus, L. J., Ray, B. A., Hamberg, P. : Medial Achilles tendon island flap-a novel technique to treat reruptures and neglected ruptures of the Achilles tendon. Int Orthop, 36 (8) : 1629-1634, 2012.
37) Cottom, J. M., Sisovsky, C. A. : Neglected Achilles tendon ruptures. Clin Podiatr Med Surg, 38 (2) : 261-277, 2021.
38) Decarbo, W. T., Hyer, C. F. : Interference screw fixation for flexor hallucis longus tendon transfer for chronic Achilles tendinopathy. J Foot Ankle Surg, 47 (1) : 69-72, 2008.
39) Vega, J., Vila, J., Batista, J., et al. : Endoscopic Flexor Hallucis Longus transfer for chronic noninsertional Achilles tendon rupture. Foot Ankle Int, 39 (12) : 1464-1472, 2018.
40) Mann, R. A., Holmes, G. B. Jr., Seale, K. S., et al. : Chronic rupture of the Achilles tendon : a new technique of repair. J Bone Joint Surg Am, 73 (2) : 214-219, 1991.
41) Maffulli, N., Del Buno, A., Maffuli, G. D., et al. : Less-invasive semitendinosus tendon graft augmentation for the reconstruction of chronic tears of the Achilles tendon. Am J Sports Med, 41 (4) : 865-871, 2013.
42) Maffulli, N., Leadbetter, W. B. : Free gracilis tendon graft in neglected tears of the achilles tendon. Clin J Sport Med, 15 (2) : 56-61, 2005.
43) Besse, J. L., Lerat, J. L., Moyen, B., et al. : Distal reconstruction of the Achilles tendon with a bone-tendon graft from extensor system of the knee. Rev Chir Orthop Reparatrice Appar Mot, 81 (5) : 453-457, 1995.
44) Arriaza, R., Gayoso, R., Lopez-Vidriero, E., et al. : Quadriceps autograft to treat Achilles chronic tears : a simple surgical technique. BMC Musculoskelet Disord, 116 (17) : 1-5, 2016.
45) Incavo, S. J., Alvarez, R. G., Trevino, S. G., et al. : Occurrence of the plantaris tendon in patients sustaining subcutaneous rupture of the Achilles tendon. Foot Ankle, 8 (2) : 110-111, 1987.
46) McClelland, D., Maffulli, N. : Neglected rupture of the Achilles tendon : reconstruction with peroneus brevis tendon transfer. Surgeon, 2 (4) : 209-213, 2004.
47) Bugg, E. I. Jr., Boyd, B. M. : Repair of neglected rupture or laceration of the Achilles tendon. Clin Orthop Relat Res, 56 : 73-75, 1968.
48) Nellas, Z. J., Loder, B. G., Wertheimer, S. J. : Reconstruction of an Achilles tendon defect utilizing an Achilles tendon allograft. J Foot Ankle Surg, 35 (2) : 144-148, 1996.
49) Haraguchi, N., Bluman, E. M., Myerson, M. S. : Reconstruction of chronic Achilles tendon disorders with Achilles tendon allograft. Special focus. Tech Foot Ankle Surg, 4 (3) : 154-159, 2005.
50) Howard, C. B., Winston, I., Bell, W., et al. : Late repair of the calcaneal tendon with carbon fibre. J Bone Joint Surg Br, 66 (2) : 206-208, 1984.
51) Parsons, J. R., Rosaria, A., Weiss, A. B., et al. : Achilles tendon repair with an absorbable polymer-carbon fiber composite. Foot Ankle, 9 (4) : 179-184, 1989.
52) Kato, Y. P., Dunn, M. G., Zawadsks, J. P., et al. : Regeneration of Achilles tendon with a collagen tendon prosthesis. J Bone Joint Surg Am, 73 (4) : 561-573, 1991.
53) Ozaki, J., Fujiki, J., Sugimoto, K., et al. : Reconstruction of neglected Achilles tendon rupture with Marlex mesh. Clin Orthop Relat Res, 238 : 204-208, 1989.
54) Liebermann, J. R., Lozman, J., Czajka, J., et al. : Repair of Achilles tendon rupture with Dacron vascular graft. Clin Orthop Relat Res, 234 : 204-208, 1988.
55) Levy, M., Velkes, S., Goldstein, J., et al. : A method of repair for Achilles tendon ruptures without cast immpbilization. Clin Orthop Relat Res, 187 : 199-204, 1984.
56) Maffulli, N., Via, A. G., Oliva, F. : Chronic Achilles tendon rupture. Open Orthop J, 31 (11) : 660-669, 2017.
P.127 掲載の参考文献
1) Andrew, G., Jonathan, S. : Comparison of Achilles tendon loading between male and female recreational runners. J Hum Kinet, 44 : 155-159, 2014.
2) Willy, R. W., Halsey, L., Hayek, A., et al. : Patellofemoral joint and Achilles tendon loads during overground and treadmill running. J Orthop Sports Phys Ther, 46 (8) : 664-672, 2016.
3) Sarrafian, S. K., Kelikian, A. S. : Osteology, Sarrafian's Anatomy of the Foot and Ankle. 3rd ed. Lippincott Williams & Wilkins, Philadelphia, 40-119, 2011.
4) Szaro, P., Witkowski, G., Smigielski, R., et al. : Fascicles of the adult human Achilles tendon-an anatomical study. Ann Anat, 191 (6) : 586-593, 2009. doi : 10.1016/j.aanat.2009.07.006
5) Edama, M., Kubo, M., Onishi, H., et al. : The twisted structure of the human Achilles tendon. Scand J Med Sci Sports, 25 (5) : e497-503, 2015. doi : 10.1111/sms.12342
6) Edama, M., Kubo, M., Onishi, H., et al. : Structure of the Achilles tendon at the insertion on the calcaneal tuberosity. J Anat, 229 (5) : 610-614, 2016. doi : 10.1111/joa.12514
7) Pichler, W., Tesch, N. P., Grechenig, W., et al. : Anatomic variations of the musculotendinous junction of the soleus muscle and its clinical implications. Clin Anat, 20 (4) : 444-447, 2007.
8) Bojsen-Moller, J., Magnusson, S. P. : Heterogeneous Loading of the Human Achilles Tendon In Vivo. Exerc Sport Sci Rev, 43 (4) : 190-197, 2015. doi : 10.1249/JES.0000000000000062
9) Winnicki, K., Ochala-Klos, A., Rutowicz, B., et al. : Functional anatomy, histology and biomechanics of the human Achilles tendon-A comprehensive review. Ann Anat, 229 : 151461, 2020. doi : 10.1016/j.aanat.2020.151461
10) Benjamin, M., Ralphs, J. R. : Fibrocartilage in tendons and ligaments-an adaptation to compressive load. J Anat, 193 (Pt 4) : 481-494, 1998.
11) Shaw, H. M., Benjamin, M. : Structure-function relationships of enthesis in relation to mechanical load and exercise. Scand J Med Sci Sports, 17 (4) : 303-315, 2007.
12) Benjamin, M., McGonagle, D. : The enthesis organ concept and its relevance to thespondyloarthropathies. Adv Exp Med Biol, 649 : 57-70, 2009.
13) de Jonge, S., van den Berg, C., de Vos, R. J., et al. : Incidence of midportion Achilles tendinopathy in the general population. Br J Sports Med, 45 (13) : 1026-1028, 2011.
14) Paavola, M., Orava, S., Leppilahti, J., et al. : Chronic Achilles tendon overuse injury : complications after surgical treatment. An analysis of 432 consecutive patients. Am J Sports Med, 28 (1) : 77-82, 2000.
15) Lysholm, J., Wiklander, J. : Injuries in runners. Am J Sports Med, 15 (2) : 168-171, 1987.
16) Kvist, M. : Achilles tendon injuries in athletes. Sports Med, 18 (3) : 173-201, 1994.
17) Ames, P. R., Longo, U. G., Denaro, V., et al. : Achilles tendon problems : not just an orthopaedic issue. Disabil Rehabil, 30 (20-22) : 1646-1650, 2008.
18) Sharma, P., Maffulli, N. : Tendon injury and tendinopathy : healing and repair. J Bone Joint Surg, 87 (1) : 187-202, 2005.
19) Jarvinen, M., Jozsa, L., Kannus, P., et al. : Histopathological findings in chronic tendon disorders. Scand J Med Sci Sports, 7 (2) : 86-95, 1997.
20) Clement, D. B., Taunton, J. E., Smart, G. W. : Achilles tendinitis and peritendinitis : etiology and treatment. Am J Sports Med, 2 (3) : 179-184, 1984.
21) Baur, H., Divert, C., Hirschmuller, A., et al. : Analysis of gait differences in healthy runners and runners with chronic Achilles tendon complaints. Isokinet Exerc Sci, 12 (2) : 111-116, 2004.
22) Magra, M., Maffulli, N. : Genetic aspects of tendinopathy. J Sci Med Sport, 11 (3) : 243-247, 2008.
23) Gaida, J. E., Alfredson, L., Kiss, Z. S., et al. : Dyslipidemia in Achilles tendinopathy is characteristic of insulin resistance. Med Sci Sports Exerc, 41 (6) : 1194-1197, 2009.
24) Feinblatt, J., et al. : Disorders of the Anterior Tibial, Peroneal, and Achilles Tendons. Orthopaedic Knowledge Update, Foot and Ankle 4. Pinzur, M. S., editor. American Academy of Orthopaedic Surgeons, 115-133, 2008.
25) Reddy, S. S., Pedowitz, D. I., Parekh, S. G., et al. : Surgical treatment for chronic disease and disorders of the Achilles tendon. J Am Acad Orthop Surg, 17 (1) : 3-14, 2009.
26) van Dijk, C. N., van Sterkenburg, M. N., Wiegerinck, J. I., et al. : Terminology for Achilles tendon related disorders. Knee Surg Sports Traumatol Arthrosc, 19 (5) : 835-841, 2011.
27) Hutchison, A. M., Evans, R., Bodger, O., et al. : What is the best clinical test for Achilles tendinopathy? Foot Ankle Surg, 19 (2) : 112-117, 2013.
28) Roche, A. J., Calder, J. D. : Achilles tendinopathy : A review of the current concepts of treatment. Bone Joint J, 95-B (10) : 1299-1307, 2013.
29) Jones, D. C. : Achilles Tendon Problems in Runners. Instr Course Lect, 50 : 137-145, 2001.
30) Title, C. I., Schon, L. C. : Achilles tendon disorders including tendinosis and tears. Baxter's the foot and ankle in sport, 2nd ed. Porter, D. A., Schon, L. C., editors. Elsevier, 147-181, 2007.
31) Solan, M., Davies, M. : Management of insertional tendinopathy of the Achilles tendon. Foot Ankle Clin, 12 (4) : 597-615, 2007.
32) Irwin, T. A. : Current concepts review : insertional achilles tendinopathy. Foot Ankle Int, 31 (10) : 933-939, 2010.
33) DeOrio, M. J., Easley, M. E. : Surgical strategies : insertional achilles tendinopathy. Foot Ankle Int, 29 (5) : 542-550, 2008.
34) Fahlstrom, M., Jonsson, P., Lorentzon, R., et al. : Chronic Achilles tendon pain treated with eccentric calf-muscle training. Knee Surg Sports Traumatol Arthrosc, 11 (5) : 327-333, 2003.
35) Chimenti, R. L., Cychosz, C. C., Hall, M. M., et al. : Current Concepts Review Update : Insertional Achilles Tendinopathy. Foot Ankle Int, 38 (10) : 1160-1169, 2017. doi : 10.1177/1071100717723127
36) Chimenti, R. L., Bucklin, M., Kelly, M., et al. : Insertional Achilles tendinopathy associated with altered transverse compressive and axial tensile strain during ankle dorsiflexion. J Orthop Res, 35 (4) : 910-915, 2017.
37) Chimenti, R. L., Flemister, A. S., Ketz, J., et al. : Ultrasound strain mapping of Achilles tendon compressive strain patterns during dorsiflexion. J Biomech, 49 (1) : 39-44, 2016.
38) Kearney, R., Costa, M. L., : Insertional achilles tendinopathy management : a systematic review. Foot Ankle Int, 31 (8) : 689-694, 2010.
39) Verrall, G., Schofield, S., Brustad, T. : Chronic Achilles tendinopathy treated with eccentric stretching program. Foot Ankle Int, 32 (9) : 843-849, 2011.
40) Alfredson, H., Pietila, T., Jonsson, P., et al. : Heavy-load eccentric calf muscle training for the treatment of chronic Achilles tendinosis. Am J Sports Med, 26 (3) : 360-366, 1998.
41) Rompe, J. D., Furia, J., Maffulli, N. : Eccentric loading compared with shock wave treatment for chronic insertional Achilles tendinopathy. A randomized, controlled trial. J Bone Joint Surg Am, 90 (1) : 52-61, 2008.
42) Wilson, F., Walshe, M., O'Dwyer, T., et al. : : Exercise, orthoses and splinting for treating Achilles tendinopathy : a systematic review with meta-analysis. Br J Sports Med, 52 (24) : 1564-1574, 2018. doi : 10.1136/bjsports2017098913
43) Wiegerinck, J. I., Kerkhoffs, G. M., van Sterkenburg, M. N., et al. : Treatment for insertional Achilles tendinopathy : a systematic review. Knee Surg Sports Traumatol Arthrosc, 21 (6) : 1345-1355, 2013. doi : 10.1007/s0016701222198
44) Erroi, D., Sigona, M., Suarez, T., et al. : Conservative treatment for Insertional Achilles Tendinopathy : platelet-rich plasma and focused shock waves. A retrospective study. Muscles Ligaments Tendons J, 7 (1) : 98-106, 2017.
45) Murawski, C. N., Newman, H., Kennedy, J. G. : Platelet-rich plasma injection for the treatment of chronic insertional Achilles tendinopathy. Paper presented at : American Orthopaedic Foot & Ankle Society Annual Meeting, Keystone, CO. 2011.
46) O'Malley, M. J. : PRP Shows Potential For Treating Achilles Tendinosis. American Academy of Orthopaedic Surgeons, New Orleans, LA, 2010.
47) de Jonge, S., van den Berg, C., de Vos, R. J., et al. : Incidence of midportion Achilles tendinopathy in the general population. Br J Sports Med, 45 (13) : 1026-1028, 2011.
48) Mansur, N. S., Faloppa, F., Belloti, J. C., et al. : Shock wave therapy associated with eccentric strengthening versus isolated eccentric strengthening for Achilles insertional tendinopathy treatment : a double-blinded randomised clinical trial protocol. BMJ Open, 7 (1) : e013332, 2017. doi : 10.1136/bmjopen2016013332
49) Wei, M., Liu, Y., Li, Z., et al. : Comparison of clinical efficacy among endoscopy-assisted radio-frequency ablation, extracorporeal shockwaves, and eccentric exercises in treatment of insertional Achilles tendinosis. J Am Podiatr Med Assoc, 107 (1) : 11-16, 2017.
50) Korakakis, V., Whiteley, R., Tzavara, A., et al. : The effectiveness of extracorporeal shockwave therapy in common lower limb conditions : a systematic review including quantification of patient-rated pain reduction. Br J Sports Med, 52 (6) : 387-407, 2018. doi : 10.1136/bjsports2016097347
51) Sussmilch-Leitch, S. P., Collins, N. J., Bialocerkowski, A. E., et al. : Physical therapies for Achilles tendinopathy : systematic review and meta-analysis. J Foot Ankle Res, 5 (1) : 15, 2012. doi : 10.1186/17571146515
52) Zhi, X., Liu, X., Han, J., et al. : Nonoperative treatment of insertional Achilles tendinopathy : a systematic review. J Orthop Surg Res, 16 (1) : 233, 2021. doi : 10.1186/s13018021023700
53) Den Hartog, B. D. : Insertional Achilles tendinosis : pathogenesis and treatment. Foot Ankle Clin, 14 (4) : 639-650, 2009.
54) Maffulli, N., et al. : Surgical therapy for tendinopathy. Orthopaedic Knowledge Update, Sports Medicine 4. Kibler, W. B., editor, American Academy of Orthopaedic Surgeons, 329-334, 2009.
55) DeVries, J. G., Summerhays, B., Guehlstorf, D. W. : Surgical correction of Haglund's triad using complete detachment and reattachment of the Achilles tendon. J Foot Ankle Surg, 48 (4) : 447-451, 2009.
56) Kolodziej, P., Glisson, R. R., Nunley, J. A. : Risk of avulsion of the Achilles tendon after partial excision for treatment of insertional tendonitis and Haglund's deformity : a biomechanical study. Foot Ankle Int, 20 (7) : 433-437, 1999.
57) Barg, A., Ludwig, T. : Surgical Strategies for the Treatment of Insertional Achilles Tendinopathy. Foot Ankle Clin, 24 (3) : 533-559, 2019. doi : 10.1016/j.fcl.2019.04.005
58) Calder, J. D. : Surgical treatment of insertional Achilles tendinosis. Foot Ankle Int, 24 (2) : 119-121, 2003.
59) Schon, L. C., Shores, J. L., Faro, F. D., et al. : Flexor halluces longus tendon transfer in treatment of Achilles tendinosis. J Bone Joint Surg Am, 95 (1) : 54-60, 2013.
60) Beitzel, K., Mazzocca, A. D., Obopilwe, E., et al. : Biomechanical properties of double- and single-row suture anchor repair for surgical treatment of insertional Achilles tendinopathy. Am J Sports Med, 41 (7) : 1642-1648, 2013.
61) Maffulli, N., Testa, V., Capasso, G., et al. : Calcific insertional Achilles tendinopathy : reattachment with bone anchors. Am J Sports Med, 32 (1) : 174-182, 2004.
62) Ettinger, S., Razzaq, R., Waizy, H., et al. : Operative treatment of the insertional Achilles tendinopathy through a transtendinous approach. Foot Ankle Int, 37 (3) : 288-293, 2016.
63) Lakey, E., Kumparatana, P., Moon, D. K., et al. : Biomechanical Comparison of All-Soft Suture Anchor Single-Row vs Double-Row Bridging Construct for Insertional Achilles Tendinopathy. Foot Ankle Int, 42 (2) : 215-223, 2021. doi : 10.1177/1071100720959023
64) Saxena, A., Maffulli, N., Jin, A., et al. : Insertional Achilles Tendinopathy : Analysis of 166 Procedures and Return to Activity. J Foot Ankle Surg, 60 (6) : 1117-1123, 2021. doi : 10.1053/j.jfas.2021.01.011
65) Horterer, H., Baumbach, S. F., Oppelt, S., et al. : Complications Associated With Midline Incision for Insertional Achilles Tendinopathy. Foot Ankle Int, 41 (12) : 1502-1509, 2020. doi : 10.1177/1071100720943836
66) Lopes, R., Padiolleau, G., Fradet, J., et al. : Endoscopic SpeedBridge Procedure for the Treatment for Insertional Achilles Tendinopathy : The Snake Technique. Arthrosc Tech, 10 (9) : e2127-e2134, 2021. doi : 10.1016/j.eats.2021.05.014. eCollection 2021 Sep.
67) Boniface, O., Vervoort, T. : Endoscopic treatment of insertional Achilles tendinopathy : A cadaver feasibility study. Orthop Traumatol Surg Res, 107 (6) : 102893, 2021. doi : 10.1016/j.otsr.2021.102893
68) van Dijk, C. N., van Dyk, G. E., Scholten, P. E., et al. : Endoscopic calcaneoplasty. Am J Sports Med, 29 (2) : 185-189, 2001.
69) Wiegerinck, J. I., Kok, A. C., van Dijk, C. N. : Surgical treatment of chronic retrocalcaneal bursitis. Arthroscopy, 28 (2) : 283-293, 2012.
70) Jerosch, J., Schunck, J., Sokkar, S. H. : Endoscopic calcaneoplasty (ECP) as a surgical treatment of Haglund's syndrome. Knee Surg Sports Traumatol Arthrosc, 15 (7) : 927-934, 2007.
71) Ortmann, F. W., McBryde, A. M. : Endoscopic bony and soft-tissue decompression of the retrocalcaneal space for the treatment of Haglund deformity and retrocalcaneal bursitis. Foot Ankle Int, 28 (2) : 149-153, 2007.
72) Gurdezi, S., Kohls-Gatzoulis, J., Solan, M. C. : Results of proximal medial gastrocnemius release for Achilles tendinopathy. Foot Ankle Int, 34 (10) : 1364-1369, 2013.
73) Nawoczenski, D. A., DiLiberto, F. E., Cantor, M. S., et al. : Ankle power and endurance outcomes following isolated gastrocnemius recession for Achilles tendinopathy. Foot Ankle Int, 37 (7) : 766-775, 2016.
74) Tallerico, V. K., Greenhagen, R. M., Lowery, C. : Isolated gastrocnemius recession for treatment of insertional Achilles tendinopathy : a pilot study. Foot Ankle Spec, 8 (4) : 260-265, 2015.
P.136 掲載の参考文献
1) Lagas, I. F., Fokkema, T., Verhaar, J. A. N., et al. : Incidence of Achilles tendinopathy and associated risk factors in recreational runners : A large prospective cohort study. J Sci Med Sport, 23 (5) : 448-452, 2020.
2) Martin, R. L., Chimenti, R., Cuddeford, T., et al. : Achilles Pain, Stiffness, and Muscle Power Deficits : Midportion Achilles Tendinopathy Revision 2018. J Orthop Sports Phys Ther, 48 (5) : A1-A38, 2018.
3) van der Vlist, A. C., Breda, S. J., Oei, E. H. G., et al. : Clinical risk factors for Achilles tendinopathy : a systematic review. Br J Sports Med, 53 (21) : 1352-1361, 2019.
4) Cook, J. L., Purdam, C. R. : Is tendon pathology a continuum? A pathology model to explain the clinical presentation of load-induced tendinopathy. Br J Sports Med, 43 (6) : 409-416, 2009.
5) Silbernagel, K. G., Hanlon, S., Sprague, A. : Current Clinical Concepts : Conservative Management of Achilles Tendinopathy. J Athl Train, 55 (5) : 438-447, 2019.
6) Li, H. Y., Hua, Y. H. : Achilles Tendinopathy : Current Concepts about the Basic Science and Clinical Treatments. Biomed Res Int, 2016 : 6492597, 2016.
7) Magnan, B., Bondi, M., Pierantoni, S., et al. : The pathogenesis of Achilles tendinopathy : a systematic review. Foot Ankle Surg, 20 (3) : 154-159, 2014.
8) Tol, J. L., Spiezia, F., Maffulli, N. : Neovascularization in Achilles tendinopathy : have we been chasing a red herring? Knee Surg Sports Traumatol Arthrosc, 20 (10) : 1891-1894, 2012.
9) Gonera, B., Kurtys, K., Paulsen, F., et al. : The plantaris muscle-Anatomical curiosity or a structure with important clinical value? -A comprehensive review of the current literature. Ann Anat, 235 : 151681, 2021.
10) Mallows, A., Debenham, J., Walker, T., et al. : Association of psychological variables and outcome in tendinopathy : a systematic review. Br J Sports Med, 51 (9) : 743-748, 2017.
11) Vicenzino, B., de Vos, R. J., Alfredson, H., et al. : ICON 2019-International Scientific Tendinopathy Symposium Consensus : There are nine core health-related domains for tendinopathy (CORE DOMAINS) : Delphi study of healthcare professionals and patients. Br J Sports Med, 54 (8) : 444-451, 2020.
12) Rio, E. K., Mc Auliffe, S., Kuipers, I., et al. : ICON PART-T 2019-International Scientific Tendinopathy Symposium Consensus : recommended standards for reporting participant characteristics in tendinopathy research (PART-T). Br J Sports Med, 54 (11) : 627-630, 2020.
13) McAuliffe, S., McCreesh, K., Culloty, F., et al. : Can ultrasound imaging predict the development of Achilles and patellar tendinopathy? A systematic review and meta-analysis. Br J Sports Med, 50 (24) : 1516-1523, 2016.
14) Matthews, W., Ellis, R., Furness, J., et al. : The clinical diagnosis of Achilles tendinopathy : a scoping review. PeerJ, 9 : e12166, 2021.
15) Hutchison, A. M., Evans, R., Bodger, O., et al. : What is the best clinical test for Achilles tendinopathy? Foot Ankle Surg, 19 (2) : 112-117, 2013.
16) de Vos, R. J., van der Vlist, A. C., Zwerver, J., et al. : Dutch multidisciplinary guideline on Achilles tendinopathy. Br J Sports Med, 55 (20) : 1125-1134, 2021.
17) Rabello, L. M., van den Akker-Scheek, I., Brink, M. S., et al. : Association Between Clinical and Imaging Outcomes After Therapeutic Loading Exercise in Patients Diagnosed With Achilles or Patellar Tendinopathy at Short- and Long-Term Follow-up : A Systematic Review. Clin J Sport Med, 30 (4) : 390-403, 2020.
18) Docking, S. I., Ooi, C. C., Connell, D. : Tendinopathy : Is Imaging Telling Us the Entire Story? J Orthop Sports Phys Ther, 45 (11) : 842-852, 2015.
19) Robinson, J. M., Cook, J. L., Purdam, C., et al. : The VISA-A questionnaire : a valid and reliable index of the clinical severity of Achilles tendinopathy. Br J Sports Med, 35 (5) : 335-341, 2001.
20) Korakakis, V., Whiteley, R., Kotsifaki, A., et al. : A systematic review evaluating the clinimetric properties of the Victorian Institute of Sport Assessment (VISA) questionnaires for lower limb tendinopathy shows moderate to high-quality evidence for sufficient reliability, validity and responsiveness-part II. Knee Surg Sports Traumatol Arthrosc, 29 (9) : 2765-2788, 2021.
21) Cychosz, C. C., Phisitkul, P., Belatti, D. A., et al. : Gastrocnemius recession for foot and ankle conditions in adults : Evidence-based recommendations. Foot Ankle Surg, 21 (2) : 77-85, 2015.
22) Jarin, I., Backer, H. C., Vosseller, J. T. : Meta-analysis of Noninsertional Achilles Tendinopathy. Foot Ankle Int, 41 (6) : 744-754, 2020.
23) Maffulli, N., Longo, U. G., Kadakia, A., et al. : Achilles tendinopathy. Foot Ankle Surg, 26 (3) : 240-249, 2020.
24) Murphy, M., Travers, M., Gibson, W., et al. : Rate of Improvement of Pain and Function in Mid-Portion Achilles Tendinopathy with Loading Protocols : A Systematic Review and Longitudinal Meta-Analysis. Sports Med, 48 (8) : 1875-1891, 2018.
25) Alfredson, H., Pietila, T., Jonsson, P., et al. : Heavy-load eccentric calf muscle training for the treatment of chronic Achilles tendinosis. Am J Sports Med, 26 (3) : 360-366, 1998.
26) Murphy, M. C., Travers, M. J., Chivers, P., et al. : Efficacy of heavy eccentric calf training for treating mid-portion Achilles tendinopathy : a systematic review and meta-analysis. Br J Sports Med, 53 (17) : 1070-1077, 2019.
27) Clifford, C., Challoumas, D., Paul, L., et al. : Effectiveness of isometric exercise in the management of tendinopathy : a systematic review and meta-analysis of randomised trials. BMJ Open Sport Exerc Med, 6 (1) : e000760, 2020.
28) Head, J., Mallows, A., Debenham, J., et al. : The efficacy of loading programmes for improving patient-reported outcomes in chronic midportion Achilles tendinopathy : A systematic review. Musculoskeletal Care, 17 (4) : 283-299, 2019.
29) Escriche-Escuder, A., Casana, J., Cuesta-Vargas, A. I. : Load progression criteria in exercise programmes in lower limb tendinopathy : a systematic review. BMJ Open, 10 (11) : e041433, 2020.
30) Silbernagel, K. G., Crossley, K. M. : A Proposed Return-to-Sport Program for Patients With Midportion Achilles Tendinopathy : Rationale and Implementation. J Orthop Sports Phys Ther, 45 (11) : 876-886, 2015.
31) Mani-Babu, S., Morrissey, D., Waugh, C., et al. : The effectiveness of extracorporeal shock wave therapy in lower limb tendinopathy : a systematic review. Am J Sports Med, 43 (3) : 752-761, 2015.
32) Fan, Y., Feng, Z., Cao, J., et al. : Efficacy of Extracorporeal Shock Wave Therapy for Achilles Tendinopathy : A Meta-analysis. Orthop J Sports Med, 8 (2) : 2325967120903430, 2020.
33) Zhang, Y. J., Xu, S. Z., Gu, P. C., et al. : Is Platelet-rich Plasma Injection Effective for Chronic Achilles Tendinopathy? A Meta-analysis. Clin Orthop Relat Res, 476 (8) : 1633-1641, 2018.
34) Nauwelaers, A. K., Van Oost, L., Peers, K. : Evidence for the use of PRP in chronic midsubstance Achilles tendinopathy : A systematic review with meta-analysis. Foot Ankle Surg, 27 (5) : 486-495, 2021.
35) Liu, C. J., Yu, K. L., Bai, J. B., et al. : Platelet-rich plasma injection for the treatment of chronic Achilles tendinopathy : A meta-analysis. Medicine (Baltimore), 98 (16) : e15278, 2019.
36) Boesen, A. P., Langberg, H., Hansen, R., et al. : High volume injection with and without corticosteroid in chronic midportion achilles tendinopathy. Scand J Med Sci Sports, 29 (8) : 1223-1231, 2019.
37) van der Vlist, A. C., Winters, M., Weir, A., et al. : Which treatment is most effective for patients with Achilles tendinopathy? A living systematic review with network meta-analysis of 29 randomised controlled trials. Br J Sports Med, 55 (5) : 249-256, 2021.
38) Rhim, H. C., Kim, M. S., Choi, S., et al. : Comparative Efficacy and Tolerability of Nonsurgical Therapies for the Treatment of Midportion Achilles Tendinopathy : A Systematic Review With Network Meta-analysis. Orthop J Sports Med, 8 (7) : 2325967120930567, 2020.
39) Johannsen, F., Jensen, S., Wetke, E. : 10-year follow-up after standardised treatment for Achilles tendinopathy. BMJ Open Sport Exerc Med, 4 (1) : e000415, 2018.
40) Paavola, M., Kannus, P., Paakkala, T., et al. : Long-term prognosis of patients with achilles tendinopathy. An observational 8-year follow-up study. Am J Sports Med, 28 (5) : 634-642, 2000.
41) Farnqvist, K., Morrissey, D., Malliaras, P. : Factors associated with outcome following exercise interventions for Achilles tendinopathy : A systematic review. Physiother Res Int, 26 (2) : e1889, 2021.
42) Lohrer, H., David, S., Nauck, T. : Surgical treatment for achilles tendinopathy-a systematic review. BMC Musculoskelet Disord, 17 : 207, 2016.
43) Baltes, T. P. A., Zwiers, R., Wiegerinck, J. I., et al. : Surgical treatment for midportion Achilles tendinopathy : a systematic review. Knee Surg Sports Traumatol Arthrosc, 25 (6) : 1817-1838, 2017.
44) Peters, M. J., Walsh, K., Day, C., et al. : Level of Evidence for the Treatment of Chronic Noninsertional Achilles Tendinopathy. Foot Ankle Spec, 19386400211001261, 2021.
45) Chimenti, R. L., Cychosz, C. C., Hall, M. M., et al. : Current Concepts Review Update : Insertional Achilles Tendinopathy. Foot Ankle Int, 38 (10) : 1160-1169, 2017.
P.145 掲載の参考文献
1) Powell, R. W. : Lawn tennis leg. Lancet, 2 : 44, 1883.
2) 奥脇透, 中嶋耕平, 半谷美夏ほか : トップアスリートの肉離れ-競技と受傷部位及びMRI分類について. 日臨スポーツ医会誌, 27 (2) : 192-194, 2019.
3) Meek, W. M., Kucharik, M. P., Eberlin, C. T., et al. : Calf Strain in Athletes. JBJS Rev, 10 (3), 2022.
4) Valle, X., Alentorn-Geli, E., Tol, J. L., et al. : Muscle injuries in sports : A new evidence-informed and expert consensus-based classification with clinical application. Sports Med, 47 (7) : 1241-1253, 2017.
5) Lee, J. C., Mitchell, A. W., Healy, J. C. : Imaging of muscle injury in the elite athlete. Br J Radiol, 85 (1016) : 1173-1185, 2012.
6) Green, B., Lin, M., Schache, A. G., et al. : Calf muscle strain injuries in elite Australian Football players : a descriptive epidemiological evaluation. Scand J Med Sci Sports, 30 (1) : 174-184, 2020.
7) Garrett, W. E. Jr. : Muscle strain injuries : clinical and basic aspects. Med Sci Sports Exerc, 22 (4) : 436-443, 1990.
8) Guermazi, A., Roemer, F. W., Robinson, P., et al. : Imaging of Muscle Injuries in Sports Medicine : Sports Imaging Series. Radiology, 282 (3) : 646-663, 2017.
9) Pedret, C., Balius, R., Blasi, M., et al. : Ultrasound classification of medial gastrocnemious injuries. Scand J Med Sci Sports, 30 (12) : 2456-2465, 2020.
10) Balius, R., Alomar, X., Rodas, G., et al. : The soleus muscle : MRI, anatomic and histologic findings in cadavers with clinical correlation of strain injury distribution. Skeletal Radiol, 42 (4) : 521-530, 2013.
11) 奥脇透 : トップアスリートにおける肉離れの実態. 日臨スポーツ医会誌, 17 : 497-505, 2009.
12) Ekstrand, J., Healy, J. C., Walden, M., et al. : Hamstring muscle injuries in professional football : The correlation of MRI findings with return to play. Br J Sports Med, 46 (2) : 112-117, 2012.
13) Cheng, Y., Yang, H. L., Sun, Z. Y., et al. : Surgical treatment of gastrocnemius muscle ruptures. Orthop Surg, 4 (4) : 253-257, 2012.
P.153 掲載の参考文献
1) Coughlin, M. J., Shon, L. C. : Disorders of Tendons. In Coughlin. M. J., Mann. R. A., Saltzman. C. L., editors 8th ed. Surgery of the Foot and Ankle. Mosby Elsevier, Philadelphia, 1184-1221, 2007.
2) Dombek, M. F., Lamm, B. M., Saltrick. K., et al. : Peroneal tendon tears : a retrospective review. J Foot Ankle Surg, 42 (5) : 250-258, 2003.
3) Lugo-Pico, J. G., Kaiser, J. T., Sanchez, R. A., et al. : Peroneal Tendinosis and Subluxation. Clin Sports Med, 39 (4) : 845-858, 2020.
4) Maffulli, N., Ferran, N. A., Oliva, F., et al. : Recurrent subluxation of the peroneal tendons. Am J Sports Med, 34 (6) : 986-992, 2006.
5) Draghi, F., Bortolotto, C., Draghi, A. G., et al. : Intrasheath Instability of the Peroneal Tendons : Dynamic Ultrasound Imaging. J Ultrasound Med, 37 (12) : 2753-2758, 2018.
6) Selmani, E., Gjata, V., Gjika, E., et al. : Current concepts review : peroneal tendon disorders. Foot Ankle Int, 27 (3) : 221-228, 2006.
7) Lui, T. H. : Endoscopic peroneal retinaculum reconstruction. Knee Surg Sports Traumatol Arthrosc, 14 : 478-481, 2006.
8) Guillo, S., Calder, J. D. : Treatment of recurring peroneal tendon subluxation in athletes : endoscopic repair of the retinaculum. Foot Ankle Clin, 18 (2) : 293-300, 2013.
9) Miyamoto, W., Takao, M., Miki, S., et al. : Tendoscopic Repair of the Superior Peroneal Retinaculum via 2 Portals for Peroneal Tendon Instability. Foot Ankle Int, 36 (10) : 1243-1250, 2015.
10) Das De, S., Balasubramaniam, P. : A repair operation for recurrent dislocation of peroneal tendons. J Bone Joint Surg Br, 67 (4) : 585-587, 1985.
11) Larsen, E., Flink-Olsen, M., Seerup, K. : Surgery for recurrent dislocation of the peroneal tendons. Acta Orthop Scand, 55 (5) : 554-555, 1984.
12) Tomihara, T., Shimada, N., Yoshida, G., et al. : Comparison of modified Das De procedure with Du Vries procedure for traumatic peroneal tendon dislocation. Arch Orthop Trauma Surg, 130 (8) : 1059-1063, 2010.
13) Yasui, Y., Vig, K. S., Tonogai, I. et al. : Incidence of reoperation and wound dehiscence in patients treated for peroneal tendon dislocations : comparison between osteotomy versus soft tissue procedures. Knee Surg Sports Traumatol Arthrosc, 26 (3) : 897-902, 2018.
14) Nishimura, A., Nakazora, S., Senga, Y., et al. : Knotless Tendoscopic Peroneal Retinaculum Repair Technique for Recurrent Peroneal Tendon Dislocation. Arthrosc Tech, In press.
15) Porter, D., McCarroll, J., Knapp, E., et al. : Peroneal tendon subluxation in athletes : fibular groove deepening and retinacular reconstruction. Foot Ankle Int, 26 (6) : 436-441, 2005.
16) Vega, J., Batista, J. P., Golano, P., et al. : Tendoscopic groove deepening for chronic subluxation of the peroneal tendons. Foot Ankle Int, 34 (6) : 832-840, 2013.
17) van Dijk, P. A., Miller, D., Calder, J., et al. : The ESSKA-AFAS international consensus statement on peroneal tendon pathologies. Knee Surg Sports Traumatol Arthrosc, 26 (10) : 3096-3107, 2018.
18) Khoury, N. J., el-Khoury, G. Y., Saltzman, C. L., et al. : Peroneus longus and brevis tendon tears : MR imaging evaluation. Radiology, 200 (3) : 833-841, 1996.
19) Cerrato, R. A., Myerson, M. S. : Peroneal tendon tears, surgical management and its complications. Foot Ankle Clin, 14 (2) : 299-312, 2009.
20) Brandes, C. B., Smith, R. W. : Characterization of patients with primary peroneus longus tendinopathy : a review of twenty-two cases. Foot Ankle Int, 21 (6) : 462-468, 2000.
21) Grant, T. H., Kelikian, A. S., Jereb, S. E., et al. : Ultrasound diagnosis of peroneal tendon tears : a surgical correlation. J Bone Joint Surg Am, 87 (8) : 1788-1794, 2005.
22) Hyer, C. F., Dawson, J. M., Philbin, T. M., et al. : The peroneal tubercle : description, classification, and relevance to peroneus longus tendon pathology. Foot Ankle Int, 26 (11) : 947-950, 2005.
23) Miura, K., Ishibashi, Y., Tsuda, E., et al. : Split lesions of the peroneus brevis tendon in the Japanese population : an anatomic and histologic study of 112 cadaveric ankles. J Orthop Sci, 9 (3) : 291-295, 2004.
24) Sobel, M., DiCarlo, E. F., Bohne, W. H., et al. : Longitudinal splitting of the peroneus brevis tendon : an anatomic and histologic study of cadaveric material. Foot Ankle, 12 (3) : 165-170, 1991.
25) Cerrato, R. A., Myerson, M. S. : Peroneal tendon tears, surgical management and its complications. Foot Ankle Clin, 14 (2) : 299-312, 2009.
26) Roster, B., Michelier, P., Giza, E., et al. : Peroneal tendon disorders. Clin Sports Med, 34 (4) : 625-641, 2015.
27) Lugo-Pico, J. G., Kaiser, J. T., Sanchez, R. A., et al. : Peroneal tenodinosis and subluxation. Clin Sports Med, 39 (4) : 845-858, 2020.
28) Hyer, C. F., Dawson, J. M., Philbin, T. M., et al. : The peroneal tubercle : description, classification, and relevance to peroneal tendon pathology. Foot Ankle Int, 26 (11) : 947-950, 2005.
29) Philbin, T. M., Landis, G. S., Smith, B., et al. : Peroneal tendon injuries. J Am Acad Orthop Surg, 17 (5) : 306-317, 2009.
30) Kennedy, J. G., van Dijk, P. A., Murawski, C. D., et al. : Functional outcomes after peroneal tendoscopy in the treatment of peroneal tendon disorders. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1148-1154, 2016.
31) 西村明展, 中空繁登, 千賀佳幸ほか : 腓骨筋腱の外来超音波診療. 臨床整形, 56 (8) : 1007-1011, 2021.
32) 西村明展 : 腓骨筋腱障害. 足関節ねんざ症候群. 高尾昌人編, 全日本病院出版会, 東京, 176-183, 2020.
P.159 掲載の参考文献
1) Devas, M. B. : Stress fractures of the tibia in athletes or shin soreness. J Bone Joint Surg Br, 40-B (2) : 227-239, 1958.
2) Slocum, D. B. : The shin splint syndrome : Medical aspects and differential diagnosis. Am J Surg, 114 (6) : 875-881, 1967.
3) Kakouris, N., Yener, N., Fong, D. T. P. : A systematic review of running-related musculoskeletal injuries in runners. J Sport Health Sci, 10 (5) : 513-522, 2021.
4) Craig, D. I. : Medial tibial stress syndrome : Evidence-based Prevention. J Athl Train, 43 (3) : 316-318, 2008.
5) Winkelmann, Z. K., Anderson, D., Games, K. E., et al. : Risk factors for medial tibial stress syndrome in active individuals-An evidence-based review. J Athl Train, 51 (12) : 1049-1052, 2016.
6) Newman, P., Witchalls, J., Waddington, G. et al. : Risk factors associated with medial tibial stress syndrome in runners-a systematic review and meta-analysis. Open access J Sports Med, 4 : 229-241, 2013.
7) Edwards, P. H. Jr., Wright, M. L., Hartman, J. F. : A practical approach for the differencial diagnosis of chronic leg pain in the athlete. Am J Sports Med, 33 (8) : 1241-1249, 2005.
8) 大西純二 : 脛骨疲労骨折とシンスプリントのMRIによる鑑別診断. 整スポ会誌, 33 (3) : 286-291, 2013.
9) 亀山泰 : シンスプリント. 臨スポーツ医, 36 (9) : 1062-1065, 2019.
10) Walsh, W. M., Hald, R. D., Peter, L. E., et al. : Musculoskeletal injuries in sports. The team physician's handbook. Hanley & Belfus, Philadelphia, 251-258, 1990.
11) Korakakis, V., Whiteley, R., Tzavara, A., et al. : The effectiveness of extracorporeal shockwave therapy in common lower limb conditions-a systematic review including quantification of patient-rated pain reduction. Br J Sports Med, 52 (6) : 387-407, 2018.
12) Yates, B., Allen, M. J., Barnes, M. R. : Outcome of surgical treatment of the medial tibial stress syndrome. J Bone Joint Surg Am, 85 (10) : 1974-1980, 2003.
P.165 掲載の参考文献
1) MAVOR, G. E. : The anterior tibial syndrome. J Bone Joint Surg Br, 38-B : 513-517, 1956.
2) de Bruijn, J. A., van Zantvoort, A. P. M., van Klaveren, D., et al. : Factors Predicting Lower Leg Chronic Exertional Compartment Syndrome in a Large Population. Int J Sports Med, 39 (1) : 58-66, 2018. doi : 10.1055/s0043119225
3) Oliver, W. M., Rhatigan, D., Mackenzie, S. P., et al. : Outcome following mini-open lower limb fasciotomy for chronic exertional compartment syndrome. Eur J Orthop Surg Traumatol, 32 (1) : 27-36, 2022. doi : 10.1007/s0059002102919z
4) Davis, D. E., Raikin, S., Garras, D. N., et al. : Characteristics of patients with chronic exertional compartment syndrome. Foot Ankle Int, 34 (10) : 1349-1354, 2013. doi : 10.1177/1071100713490919
5) Nwakibu, U., Schwarzman, G., Zimmermann, W. O., et al. : Chronic Exertional Compartment Syndrome of the Leg Management Is Changing : Where Are We and Where Are We Going? Curr Sports Med Rep, 19 (10) : 438-444, 2020. doi : 10.1249/JSR.0000000000000762
6) Buerba, R. A., Fretes, N. F., Devana, S. K., et al. : Chronic exertional compartment syndrome : current management strategies. Open Access J Sports Med, 10 : 71-79, 2019. doi : 10.2147/OAJSM.S168368
7) Vajapay, S., Miller, T. L. : Evaluation, diagnosis, and the treatment of chronic exertional compartment syndrome : a review of current literature. Physician Sportsmed, 45 (4) : 391-398, 2017. doi : 10.1080/00913847.2017.1384289
8) van Zantvoort, A. P. M., Hundscheid, H. P. H., de Bruijn, J. A., et al. : Isolated Lateral Chronic Exertional Compartment Syndrome of the Leg : A New Entity? Orthop J Sports Med, 7 (12) : 2325967119890105, 2019. doi : 10.1177/2325967119890105
9) Winkes, M. B., van Zantvoort, A. P., de Bruijn, J. A., et al. : Fasciotomy for Deep Posterior Compartment Syndrome in the Lower Leg : A Prospective Study. Am J Sports Med, 44 (5) : 1309-1316, 2016. doi : 10.1177/0363546515626540
10) Detmer, D. E., Sharpe, K., Sufit, R. L., et al. : Chronic compartment syndrome : diagnosis, management, and outcomes. Am J Sports Med, 13 (3) : 162-170, 1985. doi : 10.1177/036354658501300304
11) Schepsis, A. A., Gill, S. S., Foster, T. A. : Fasciotomy for exertional anterior compartment syndrome : is lateral compartment release necessary? Am J Sports Med, 27 (4) : 430-435, 1999. doi : 10.1177/03635465990270040501
12) Davey, J. R., Rorabeck, C. H., Fowler, P. J. : The tibialis posterior muscle compartment. An unrecognized cause of exertional compartment syndrome. Am J Sports Med, 12 : 391-397, 1984. doi : 10.1177/036354658401200511
13) Gill, C. S., Halstead, M. E., Matava, M. J. : Chronic exertional compartment syndrome of the leg in athletes : evaluation and management. Phys Sportsmed, 38 (2) : 126-132, 2010. doi : 10.3810/psm.2010.06.1791
14) Fouasson-Chailloux, A., Menu, P., Allorent, J., et al. : Determination of the predictive clinical parameters to diagnose chronic exertional compartment syndrome. Eur J Sport Sci, 8 (2) : 279-285, 2018. doi : 10.1080/17461391.2017.1405078
15) Pedowitz, R. A., Hargens, A. R., Mubarak, S. J., et al. : Modified criteria for the objective diagnosis of chronic compartment syndrome of the leg. Am J Sports Med, 18 (1) : 35-40, 1990. doi : 10.1177/036354659001800106
16) Franklyn-Miller, A., Roberts, A., Hulse, D., et al. : Biomechanical overload syndrome : defining a new diagnosis. Br J Sports Med, 48 : 415-416, 2014. doi : 10.1136/bjsports2012091241
17) Tiidus, P. M. : Is intramuscular pressure a valid diagnostic criterion for chronic exertional compartment syndrome? Clin J Sport Med, 24 (1) : 87-88, 2014. doi : 10.1097/JSM.0000000000000065
18) Roscoe, D., Roberts, A. J., Hulse, D. : Intramuscular compartment pressure measurement in chronic exertional compartment syndrome : new and improved diagnostic criteria. Am J Sports Med, 43 (2) : 392-398, 2015. doi : 10.1177/0363546514555970
19) van den Brand, J. G., Nelson, T., Verleisdonk, E. J., et al. : The diagnostic value of intracompartmental pressure measurement, magnetic resonance imaging, and near-infrared spectroscopy in chronic exertional compartment syndrome : a prospective study in 50 patients. Am J Sports Med, 33 (5) : 699-704, 2005. doi : 10.1177/0363546504270565
20) Litwiller, D. V., Amrami, K. K., Dahm, D. L., et al. : Chronic exertional compartment syndrome of the lower extremities : improved screening using a novel dual birdcage coil and in-scanner exercise protocol. Skeletal Radiol, 36 (11) : 1067-1075, 2007. doi : 10.1007/s0025600703600
21) Ringler, M. D., Litwiller, D. V., Felmlee, J. P., et al. : MRI accurately detects chronic exertional compartment syndrome : a validation study. Skeletal Radiol, 42 (3) : 385-392, 2013. doi : 10.1007/s0025601214871
22) van den Brand, J. G., Verleisdonk, E. J., van der Werken, C. : Near infrared spectroscopy in the diagnosis of chronic exertional compartment syndrome. Am J Sports Med, 32 (2) : 452-456, 2004. doi : 10.1177/0363546503261733
23) Velasco, T. O., Leggit, J. C. : Chronic Exertional Compartment Syndrome : A Clinical Update. Curr Sports Med Rep, 19 (9) : 347-352, 2020. doi : 10.1249/JSR.0000000000000747
24) Tweed, J. L., Barnes, M. R. : Is eccentric muscle contraction a significant factor in the development of chronic anterior compartment syndrome? A review of the literature. Foot (Edinb), 18 (3) : 165-170, 2008. doi : 10.1016/j.foot.2008.06.005
25) Diebal, A. R., Gregory, R., Alitz, C., et al. : Forefoot running improves pain and disability associated with chronic exertional compartment syndrome. Am J Sports Med, 40 (5) : 1060-1067, 2012. doi : 10.1177/0363546512439182
26) Isner-Horobeti, M. E., Dufour, S. P., Blaes, C., et al. : Intramuscular pressure before and after botulinum toxin in chronic exertional compartment syndrome of the leg : a preliminary study. Am J Sports Med, 41 (11) : 2558-2566, 2013. doi : 10.1177/0363546513499183
27) Baria, M. R., Sellon, J. L. : Botulinum Toxin for Chronic Exertional Compartment Syndrome : A Case Report With 14 Month Follow-Up. Clin J Sport Med, 26 (6) : e111-e113, 2016. doi : 10.1097/JSM.0000000000000289
28) 川上不二夫, 土井一輝, 大塚健 : 下腿慢性コンパートメント症候群に対する筋膜切開術. 整形外科, 50 (8) : 997-1002, 1999.
29) Knight, J. R., Daniels, M., Robertson, W. : Endoscopic compartment release for chronic exertional compartment syndrome. Arthrosc Tech, 2 (2) : e187-e190, 2013. doi : 10.1016/j.eats.2013.02.002
30) Lui, T. H. : Endoscopic Fasciotomy of the Superficial and Deep Posterior Compartments of the Leg. Arthrosc Tech, 6 (3) : e711-e715, 2017. doi : 10.1016/j.eats.2017.01.019
31) Maffulli, N., Loppini, M., Spiezia, F., et al. : Single minimal incision fasciotomy for chronic exertional compartment syndrome of the lower leg. J Orthop Surg Res, 11 (1) : 61, 2016. doi : 10.1186/s1301801603959
32) Thein, R., Tilbor, I., Rom, E., et al. : Return to sports after chronic anterior exertional compartment syndrome of the leg : Conservative treatment versus surgery. J Orthop Surg (Hong Kong), 27 (2) : 2309499019835651, 2019. doi : 10.1177/2309499019835651
33) Beck, J. J., Tepolt, F. A., Miller, P. E., et al. : Surgical Treatment of Chronic Exertional Compartment Syndrome in Pediatric Patients. Am J Sports Med, 44 (10) : 2644-2650, 2016.
34) Schepsis, A. A., Martini, D., Corbett, M. : Surgical management of exertional compartment syndrome of the lower leg. Long-term followup. Am J Sports Med, 21 (6) : 811-7 ; discussion 817, 1993. doi : 10.1177/036354659302100609
35) Packer, J. D., Day, M. S., Nguyen, J. T., et al. : Functional outcomes and patient satisfaction after fasciotomy for chronic exertional compartment syndrome. Am J Sports Med, 41 (2) : 430-436, 2013. doi : 10.1177/0363546512471330

III章 各論 < 足関節 >

P.173 掲載の参考文献
1) Takao, M., Uchio, Y., Naito, K., et al. : Arthroscopic assessment for intra-articular disorders in residual ankle disability after sprain. Am J Sports Med, 33 (5) : 686-692, 2005.
2) Forney, M., Subhas, N., Donley, B., et al. : MR imaging of the articular cartilage of the knee and ankle. Magn Reason Imaging Clin N Am, 19 (2) : 379-405, 2011.
3) Berndt, A. L., Harty, M. : Transchondral fractures (osteochondritis dissecans) of the talus. J Bone Joint Surg Am, 41A : 988-1020, 1959.
4) Raikin, S. M., Elis, I., Zoga, A. C., et al. : Osteochondral lesions of the talus : localization and morphologic data from 424 patients using a novel anatomical grid schema. Foot Ankle Int, 28 (2) : 154-161, 2007.
5) van Diepen, P. R., Fahmen, J., Altink, J. N., et al. : Location distribution of 2,087 osteochondral lesions of the talus. Cartilage, 13 (1_suppl) : 1344S-1353S, 2021.
6) Flick, A. B., Gould, N. : Osteochondral dissecans of the talus (transchondral fractures of the talus) : review of the literature and new surgical approach for medial dome lesions. Foot Ankle, 5 (4) : 165-185, 1985.
7) Ikoma, K., Kido, M., Maki, M., et al. : Early stage and small medial osteochondral lesions of the talus in the presence of chronic lateral ankle instability : A retrospective study. J Orthop Sci, 25 (1) : 178-182, 2020.
8) Nakasa, T., Sawa, M., Ikuta, Y., et al. : Anatomic feature of deltoid ligament attachment in posteromedial osteochondral lesion of talar dome. J Orthop Sci, 23 (2) : 377-382, 2018.
9) Teremoto, A., Shoji, H., Kura, H., et al. : Investigation of factors related to the occurrence of osteochondral lesions of the talus by 3D bone morphology of the ankle. Bone Joint J, 100B (11) : 1487-1490, 2018.
10) Koc, A., Karabivik, O. : MRI evaluation of ligaments and tendons of foot arch in talar dome osteochondral lesions. Acta Radiol, 59 (7) : 869-875, 2018.
11) Telleria, J. J. M., Ready, L. V., Bluman, E. M., et al. : Prevalence of Vitamin D Deficiency in Patients with Talar Osteochondral Lesions. Foot Ankle Int, 39 (4) : 471-478, 2018.
12) van Dijk, C. N., Reilingh, M. L., Zengerink, M., et al. : Osteochondral defects in the ankle : why painful? Knee Surg Sports Traumatol Arthrosc, 18 (5) : 570-580, 2018.
13) Nakasa, T., Ikuta, Y., Yoshikawa, M., et al. : Added value of Preoperative Computed Tomography for Determining Cartilage Degeneration in Patients with Osteochondral Lesions of the Talar Dome. Am J Sports Med, 46 (1) : 208-216, 2018.
14) Nakasa, T., Adachi, N., Kato, T., et al. : Appearance of Subchondral Bone in Computed Tomography is Related to Cartilage Damage in Osteochondral Lesions of the Talar Dome. Foot Ankle Int, 35 (6) : 600-606, 2014.
15) Gianakos, A. L., Yasui, Y., Hannon, C. P., et al. : Current management of talar osteochondral lesions. World J Orthop, 8 (1) : 12-20, 2017.
16) Loomer, R., Fisher, C., Lloyd-Smith, R., et al. : Osteochondral lesions of the talus. Am J Sports Med, 21 : 13-19, 1993.
17) Yasui, Y., Hannon, C. P., Fraser, E. J., et al. : Lesion Size Measured on MRI Does Not Accurately Reflect Arthroscopic Measurement in Talar Osteochondral Lesions. Orthop J Sports Med, 7 (2) : 2325967118825261, 2019.
18) De Smet, A. A., Fisher, D. R., Burnstein, M. I., et al. : Value of MR imaging in staging osteochondral lesions of the talus (osteochondritis dissecans) : results in 14 patients. AJR Am J Roentgenol, 154 (3) : 555-558, 1990.
19) Nakasa, T., Ikuta, Y., Ota, Y., et al. : Relationship of T2 Value of High-Signal Line on MRI to the Fragment in Osteochondral Lesion of the Talus. Foot Ankle Int, 41 (6) : 698-704, 2020.
20) DeSmet, A. A., Fisher, D. R., Graf, B. K., et al. : Osteochondritis dissecans of the knee : value of MR imaging in determining lesion stability and the presence of articular cartilage defects. AJR Am J Roentgenol, 155 (3) : 549-553, 1990.
21) Mesgarzadeh, M., Sapega, A. A., Bonakdarpour, A., et al. : Osteochondritis dissecans : analysis of mechanical stability with radiography, scintigraphy, and MR imaging. Radiology, 165 (3) : 775-780, 1987.
22) Nakasa, T., Ikuta, Y., Sawa, M., et al. : Relationship between bone marrow lesions on MRI and cartilage degeneration in osteochondral lesions of the talar dome. Foot Ankle Int, 39 (8) : 908-915, 2018.
23) Reilingh, M. L., Kerkhoffs, G. M. M., et al. : Treatment of osteochondral defects of the talus in children. Knee Surg Sports Traumatol Arthrosc, 22 (9) : 2243-2249, 2014.
24) Klammer, G., Maquieira, G. J., Spahn, S., et al. : Natural history of nonoperatively treated osteochondral lesions of the talus. Foot Ankle Int, 36 (1) : 24-31, 2015.
25) Seo, S. G., Kim, J. S., Seo, D. K., et al. : Osteochondral lesions of the talus : few patients require surgery. Acta Orthop 89 (4) : 462-467, 2018.
26) Ikuta Y, Nakasa T, Sumii J, et al. : Long-term natural course of the osteochondral lesion of the talus in a child : A case report. J Foot Ankle Surg, 60 (2) : 396-398, 2021.
27) Hannon, C. P., Bayer, S., Murawski, C. D., et al. : Debridement, curettage, and bone marrow stimulation : Proceedings of the International Consensus Meeting on Cartilage Repair of the Ankle. Foot Ankle Int, 39 (1_suppl) : 16S-22S, 2018.
28) Hayashi, S., Nakasa, T., Ishikawa, M., et al. : Histological evaluation of early-phase changes in the osteochondral unit after microfracture in a full-thickness cartilage defect rat model. Am J Sports Med, 46 (12) : 3032-3039, 2018.
29) Toale, J., Shimozono, Y., Mulvin, C., et al. : Midterm outcomes of bone marrow stimulation for primary osteochondral lesions of the talus : A systematic review. Orthop J Sports Med, 7 (10) : 2325967119879127, 2019.
30) Yoshimura, I., Kanazawa, K., Takeyama, A., et al. : Arthroscopic bone marrow stimulation techniques for osteochondral lesions of the talus. Am J Sports Med, 41 (3) : 528-534, 2013.
31) Reilingh, M. L., van Bergen, C. J. A., Blankevoort, L., et al. : Computed tomography analysis of osteochondral defects of the talus after arthroscopic debridement and microfracture. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1286-1292, 2016.
32) Shimozono, Y., Coale, M., Yasui, Y., et al. : Subchondral bone degradation after microfracture for osteochondral lesions of the talus : an MRI analysis. Am J Sports Med, 46 (3) : 642-648, 2018.
33) Shimozono, Y., Hurley, E., Yasui, Y., et al. : The presence and degree of bone marrow edema influence midterm clinical outcomes after microfracture for osteochondral lesions of the talus. Am J Sports Med, 46 (10) : 2503-2508, 2018.
34) Steman, J. A. H., Dahmen, J., Lambers, K. T. A., et al. : Return to sports after surgical treatment of osteochondral defects of the talus : A systemic review of 2347 cases. Orthop J Sports Med, 7 (10) : 2325967119876238, 2019.
35) Hurley, E. T., Shimozono, Y., McGoldrick, N. P., et al. : High reported rate of return to play following bone marrow stimulation for osteochondral lesions of the talus. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2721-2730, 2019.
36) Ramponi, L., Yasui, Y., Murawski, C. D., et al. : Lesion size is a predictor of clinical outcomes after bone marrow stimulation for osteochondral lesions of the talus : A systemic review. Am J Sports Med, 45 (7) : 1698-1705, 2017.
37) Lambers, K. T. A., Dahmen, J., Altink, J. N., et al. : Bone marrow stimulation for talar osteochondral lesions at long-term follow-up shows a high sports participation through a decrease in clinical outcomes over time. Knee Surg Sports Arthrosc, 29 (5) : 1562-1569, 2020.
38) van Eekeren, I. C., van Bergen, C. J. A., Sierevelt, I. N., et al. : Return to sports after arthroscopic debridement and bone marrow stimulation of osteochondral talar defects : A 5- to 24- year follow-up study. Knee Surg Sports Traumatol Arthosc, 24 (4) : 1311-1315, 2016.
39) Kono, M., Takao, M., Naito, K., et al. : Retrograde drilling for osteochondral lesions of the talar dome. Am J Sports Med, 34 (9) : 1450-1456, 2006.
40) Masquijo, J. J., Ferreyra, A., Baroni, E. : Arthroscopic Retrograde Drilling in Juvenile Osteochondritis Dissecans of the Talus. J Pediatr Orthop, 36 (6) : 589-593, 2016.
41) Taranow, W. S., Bisignani, G. A., Towers, J. D., et al. : Retrograde Drilling of Osteochondral Lesions of the Medial Talar Dome. Foot Ankle Int, 20 (8) : 474-480, 1999.
42) Ikuta, Y., Nakasa, T., Ota, Y., et al. : Retrograde Drilling for Osteochondral Lesion of the Talus in Juvenile Patients. Foot Ankle Orthop, 5 (2) : 1-6, 2020.
43) Minokawa, S., Yoshimura, I., Kanazawa, K., et al. : Retrograde Drilling for Osteochondral Lesions of the Talus in Skeletally Immature Children. Foot Ankle Int, 41 (7) : 827-833, 2020.
44) Kumai, T., Takakura, Y., Kitada, C., et al. : Fixation of osteochondral lesions of the talus using cortical bone pegs. J Bone Joint Surg Br, 84B (3) : 369-374, 2002.
45) Park, C. H., Song, K. S., Kim, J. R., et al. : Retrospective evaluation of outcomes of bone peg fixation for osteochondral lesion of the talus. Bone Joint J, 102-B (10) : 1349-1353, 2020.
46) Lambers, K. T. A., Dahmen, J., Reilingh, M. L., et al. : Arthroscopic lift, drill, and fix (LDFF) is an effective treatment option for primary talar osteochondral defects. Knee Surg Sports Traumatol Arthrosc, 28 (1) : 141-147, 2020.
47) Nakasa, T., Ikuta, Y., Ota, Y., et al. : Clinical results of bioabsorbable pin fixation relative to the bone condition for osteochondral lesion of the talus. Foot Ankle Int, 40 (12) : 1388-1396, 2019.
48) Haraguchi, N., Shiratsuki, T., Ota, K., et al. : Fixation of the osteochondral talar fragment yields good results regardless of lesion size or chronicity. Knee Surg Sports Traumatol Arthrosc, 28 (1) : 291-297, 2020.
49) Reilingh, M. L., Murawski, C. D., DiGiovanni, C. W., et al. ; International Consensus Group on Cartilage Repair of the Ankle. : Fixation Techniques : Proceedings of The International Consensus Meeting on Cartilage Repair of the Ankle. Foot Ankle Int, 39 (1_suppl) : 23S-34S, 2018.
50) Kerkhoffs, G. M. M. J., Reilingh, M. L., Gerards, R. M., et al. : Lift, drill, fill and fix (LDFF) : a new arthroscopic treatment for talar osteochondral defects. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1265-1271, 2016.
51) Kim, H. N., Kim, G. L., Park, J. Y., et al. : Fixation of a posteromedial osteochondral lesion of the talus using a three-portal posterior arthroscopic technique. J Foot Ankle Surg, 52 (3) : 402-405, 2013.
52) Nakagawa, S., Hara, K., Minami, G., et al. : Arthroscopic fixation technique for osteochondral lesions of the talus. Foot Ankle Int, 31 (11) : 1025-1027, 2010.
53) Seow, D., Shimozono, Y., Gianakos, A. L., et al. : Autologous osteochondral transplantation for osteochondral lesions of the talus : high rate of return to play in the athletic population. Knee Surg Sports Traumatol Arthrosc, 29 (5) : 1554-1561, 2021.
54) Shimozono, Y., Seow, D., Yasui, Y., et al. : Knee-To-Talus Donor-Site Morbidity Following Autologous Osteochondral Transplantation : A Meta-Analysis with Best-case And Worst-case Analysis. Clinical Orthop Relat Res, 477 (8) : 1915-1931, 2019.
55) Takao, M., Innami, K., Komatsu, F., et al. : Transplantation for the treatment of advanced osteochondral lesions with large subchondral lesions of the ankle. Am J Sports Med, 38 (8) : 1653-1660, 2010.
56) Sawa, M., Nakasa, T., Ikuta, Y., et al. : Outcome of autologous bone grafting with preservation of articular cartilage to treat osteochondral lesions of the talus with large associated subchondral bone cysts. Bone Joint J, 100-B (5) : 590-595, 2018.
P.179 掲載の参考文献
1) Ozeki, S., Kitaoka, H., Uchiyama, E., et al. : Ankle ligament tensile forces at the end points of passive circumferential rotating motion of the ankle and subtalar joint complex. Foot Ankle Int, 27 (11) : 965-969, 2006.
2) Roos, K. G., Kerr, Z. Y., Mauntel, T. C., et al. : The Epidemiology of Lateral Ligament Complex Ankle Sprains in National Collegiate Athletic Association Sports. Am J Sports Med, 45 (1) : 201-209, 2017.
3) Waterman, B. R., Owens, B. D., Davey, S., et al. : The epidemiology of ankle sprains in the United States. J Bone Joint Surg Am, 92 (13) : 2279-2284, 2010.
4) Baumhauer, J. F., O'Brien, T. : Surgical considerations in the treatment of ankle instability. J Athl Train, 37 (4) : 458-462, 2002.
5) Boey, H., Verfaillie, S., Natsakis, T., et al. : Augmented Ligament Reconstruction Partially Restores Hindfoot and Midfoot Kinematics After Lateral Ligament Ruptures. Am J Sports Med, 47 (8) : 1921-1930, 2019.
6) Ferran, N. A., Maffulli, N. : Epidemiology of sprains of the lateral ankle ligament complex. Foot Ankle Clin, 11 (3) : 659-662, 2006.
7) Sitler, M., Ryan, J., Wheeler, B., et al. : The efficacy of a semirigid ankle stabilizer to reduce acute ankle injuries in basketball. A randomized clinical study at West Point. Am J Sports Med, 22 (4) : 454-461, 1994.
8) Woods, C., Hawkins, R., Hulse, M., et al. : The Football Association Medical Research Programme : an audit of injuries in professional football : an analysis of ankle sprains. Br J Sports Med, 37 (3) : 233-238, 2003.
9) Golano, P., Vega, J., deLeeuw, P. A., et al. : Anatomy of the ankle ligaments : a pictorial essay. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 944-956, 2016.
10) Kakegawa, A., Mori, Y., Tsuchiya, A., et al. : Independent Attachment of Lateral Ankle Ligaments : Anterior Talofibular and Calcaneofibular Ligaments-A Cadaveric Study. J Foot Ankle Surg, 58 (4) : 717-722, 2019.
11) Matsui, K., Takao, M., Tochigi, Y., et al. : Anatomy of anterior talofibular ligament and calcaneofibular ligament for minimally invasive surgery : a systematic review. Knee Surg Sports Traumatol Arthrosc, 25 (6) : 1892-1902, 2017.
12) Wiersma, P. H., Griffioen, F. M. M. : Variations of three lateral ligaments of the ankle. A descriptive anatomical study. Foot, 2 (4) : 218-224, 1992.
13) Glazebrook, M., Stone, J., Matsui, K., et al. : Percutaneous ankle reconstruction of lateral ligaments (Perc-Anti RoLL). Foot Ankle Int, 37 (6) : 659-664, 2016.
14) Neuschwander, T. B., Indresano, A. A., Hughes, T. H., et al. : Footprint of the lateral ligament complex of the ankle. Foot Ankle Int, 34 (4) : 582-586, 2013.
15) Wenny, R., Duscher, D., Meytap, E., et al. : Dimensions and attachments of the ankle ligaments : evaluation for ligament reconstruction. Anat Sci Int, 90 (3) : 161-171, 2015.
16) Burks, R. T., Morgan, J. : Anatomy of the lateral ankle ligaments. Am J Sports Med, 22 (1) : 72-77, 1994.
17) Kobayashi, T., Suzuki, D., Kondo, Y., et al. : Morphological characteristics of the lateral ankle ligament complex. Surg Radiol Anat, 42 (10) : 1153-1159, 2020.
18) Matsui, K., Oliva, X. M., Takao, M., et al. : ESSKA AFAS Ankle Instability Group, Glazebrook, M. : Bony landmarks available for minimally invasive lateral ankle stabilization surgery : a cadaveric anatomical study. Knee Surg Sports Traumatol Arthrosc, 25 (6) : 1916-1924, 2017.
P.187 掲載の参考文献
1) Kemler, E., van de Port, I., Backx, F., et al. : A systematic review on the treatment of acute ankle sprain : brace versus other functional treatment types. Sports Med, 41 (3) : 185-197, 2011.
2) Petersen, W., Rembitzki, I. V., Koppenburg, A. G., et al. : Treatment of acute ankle ligament injuries : a systematic review. Arch Orthop Trauma Surg, 133 (8) : 1129-1141, 2013.
3) Fong, D. T., Man, C. Y., Yung, P. S., et al. : Sport-related ankle injuries attending an accident and emergency department. Injury, 39 (10) : 1222-1227, 2008.
4) van Rijn, R. M., van Os, A. G., Bernsen, R. M., et al. : What is the clinical course of acute ankle sprains? A systematic literature review. Am J Med, 121 (4) : 324-331.e6, 2008.
5) Takao, M., Uchio, Y., Naito, K., et al. : Arthroscopic assessment for intra-articular disorders in residual ankle disability after sprain. Am J Sports Med, 33 (5) : 686-692, 2005.
6) Clanton, T. O., McGarvey, W. : Athletic Injuries to the Soft Tissues of the Foot and Ankle, Surgery of the Foot and Ankle, 8th ed, Coughlin, M. J., Mann, R. A., editors, Mosby, St Louis, 1423-1564, 2009.
7) Longo, U. G., Loppini, M., Romeo, G., et al. : Bone bruises associated with acute ankle ligament injury : do they need treatment? Knee Surg Sports Traumatol Arthrosc, 21 (6) : 1261-1268, 2013.
8) Gough, B. E., Chong, A. C., Howell, S. J., et al. : Novel flexible suture fixation for the distal tibiofibular syndesmotic joint injury : a cadaveric biomechanical model. J Foot Ankle Surg, 53 (6) : 706-711, 2014.
9) Ferran, N. A., Maffulli, N. : Epidemiology of sprains of the lateral ankle ligalnent complex, Foot Ankle Clin, 11 (3) : 659-662, 2006.
10) Maffulli, N., Ferran, N. A. : Management of acute and chronic ankle instability. J Am Acad Orthop Surg, 16 (10) : 608-615, 2008.
11) Tochigi, Y., Yoshinaga, K., Wada, Y., et al. : Acute inversion injury of the ankle : magnetic resonance imaging and clinical outcomes. Foot Ankle Int, 19 (11) : 730-734, 1998.
12) Lee, B. H., Choi, K. H., Seo, D. Y., et al. : Diagnostic validity of alternative manual stress radiographic technique detecting subtalar instability with concomitant ankle instability. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1029-1039, 2016.
13) Hunt, K. J., Pereira, H., Kelley, J., et al. : The role of calcaneofibular ligament injury in ankle instability : implications for surgical management. Am J Sports Med, 47 (2) : 431-437, 2019.
14) Pourkazemi, F., Hiller, C. E., Raymond, J., et al. : Predictors of chronic ankle instability after an index lateral ankle sprain : A systematic review. J Sci Med Sport, 17 (6) : 568-573, 2014.
15) Beynnon, B. D., Renstrom, P. A., Haugh, L., et al. : A prospective, randomized clinical investigation of the treatment of first-time ankle sprains. Am J Sports Med, 34 (9) : 1401-1412, 2006.
16) Kannus, P., Renstrom, P. : Treatment for acute tears of the lateral ligaments of the ankle. Operation, cast, or early controlled mobilization. J Bone Joint Surg Am, 73 (2) : 305-312, 1991.
17) Rigby, R., Cottom, J. M., Rozin, R. : Isolated calcaneofibular ligament injury : a report of two cases. J Foot Ankle Surg, 54 (3) : 487-489, 2015.
18) Stiell, I. G., Greenberg, G. H., McKnight, R. D., et al. : Decision rules for the use of radiography in acute ankle injuries. Refinement and prospective validation. JAMA, 269 (9) : 1127-1132, 1993.
19) van Dijk, C. N., Mol, B. W., Lim, L. S. : Diagnosis of ligament rupture of the ankle joint. Physical examination, arthrography, stress radiography and sonography compared in 160 patients after inversion trauma. Acta Orthop Scand, 67 (6) : 566-570, 1996.
20) Netterstrom-Wedin, F., Matthews, M., Bleakley, C., et al. : Diagnostic Accuracy of Clinical Tests Assessing Ligamentous Injury of the Talocrural and Subtalar Joints : A Systematic Review With Meta-Analysis. Sports Health, 14 (3) : 336-347, 2022.
21) van Dijk, C. N., Lim, L. S., Bossuyt, P. M., et al. : Physical examination is sufficient for the diagnosis of sprained ankles. J Bone Joint Surg Br, 78 (6) : 958-962, 1996.
22) Fujii, T., Luo, Z. P., Kitaoka, H. B., et al. : The manual stress test may not be sufficient to differentiate ankle ligament injuries. Clin Biomech, 15 (8) : 619-623, 2000.
23) Wilkin, E. J., Hunt, A., Nightingale, E. J., et al. : Manual testing for ankle instability. Manual Therapy, 17 (6) : 593-596, 2012.
24) Croy, T., Koppenhaver, S., Saliba, S., et al. : Anterior talocrural joint laxity : diagnostic accuracy of the anterior drawer test of the ankle. J Orthop Sports Phys Ther, 43 (12) : 911-919, 2013.
25) Teramoto, A., Iba, K., Murahashi, Y., et al. : Quantitative Evaluation of Ankle Instability Using a Capacitance-Type Strain Sensor. Foot Ankle Int, 42 (8) : 1074-1080, 2021.
26) Ozeki, S., Kitaoka, H., Uchiyama, E., et al. : Ankle ligament tensile forces at the end points of passive circumferential rotating motion of the ankle and subtalar joint complex. Foot Ankle Int, 27 (11) : 965-969, 2006.
27) 大関覚, Kitaoka, H. B., An, K. N. : 踵腓靱帯機能と不全状態の徒手検査法. 日足外会誌. 26 (2) : 85-90, 2005.
28) Frost, S. C., Amendola, A. : Is stress radiography necessary in the diagnosis of acute or chronic ankle instability? Clin J Sport Med, 9 (1) : 40-45, 1999.
29) Oae, K., Takao, M., Uchio, Y., et al. : Evaluation of anterior talofbular ligament injury with stress radiography, ultrasonography and MR imaging. Skelet Radiol, 39 (1) : 41-47, 2010.
30) Gregush, R. V., Ferkel, R. D. : Treatment of the unstable ankle with an osteochondral lesion : results and long-term follow-up. Am J Sports Med, 38 (4) : 782-790, 2010.
31) Radwan, A., Bakowski, J., Dew, S., et al. : EFFECTIVENESS OF ULTRASONOGRAPHY IN DIAGNOSING CHRONIC LATERAL ANKLE INSTABILITY : A SYSTEMATIC REVIEW. Int J Sports Phys Ther, 11 (2) : 164-174, 2016.
32) Cao, S., Wang, C., Ma, X., et al. : Imaging diagnosis for chronic lateral ankle ligament injury : A systemic review with meta-analysis. J Orthop Surg Res, 13 (1) : 122, 2018.
33) Sujitkumar, P., Hadfield, J. M., Yates, D. W. : Sprain of fracture? An analysis of 2000 ankle injuries. Arch Emerg Med, 3 (2) : 101-106, 1986.
34) Doherty, C., Delahunt, E., Caulfield, B., et al. : The incidence and prevalence of ankle sprain injury : a systematic review and meta-analysis of prospective epidemiological studies. Sports Med, 44 (1) : 123-140, 2014.
35) Haraguchi, N., Toga, H., Shiba, N., et al. : Avulsion fracture of the lateral ankle ligament complex in severe inversion injury : incidence and clinical outcome. Am J Sports Med, 35 (7) : 1144-1152, 2007.
36) Yamaguchi, S., Akagi, R., Kimura, S., et al. : Avulsion fracture of the distal fibula is associated with recurrent sprain after ankle sprain in children. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2774-2780, 2019.
37) Haraguchi, N., Kato, F., Hayashi, H. : New radiographic projections for avulsion fractures of the lateral malleolus. J Bone Joint Surg Br, 80 (4) : 684-688, 1998.
38) Maeda, M., Maeda, N., Takaoka, T., et al. : Sonographic findings of chondral avulsion fractures of the lateral ankle ligaments in children. J Ultrasound Med, 36 (2) : 421-432, 2017.
39) Najaf-Zadeh, A., Nectoux, E., Dubos, F., et al. : Prevalence and clinical significance of occult fractures in children with radiograph-negative acute ankle injury. A meta-analysis. Acta Orthop, 85 (5) : 518-524, 2014.
40) Glasgow, M., Jackson, A., Jamieson, A. M. : Instability of the ankle after injury to the lateral ligament. J Bone Joint Surg Br, 62-B (2) : 196-200, 1980.
41) Karlsson, J., Lansinger, O. : Lateral instability of the ankle joint. Clin Orthop Relat Res, 276 : 253-261, 1992.
42) Breitenseher, M. J., Trattnig, S., Kukla, C., et al : MRI versus lateral stress radiography in acute lateral ankle ligament injuries. J Comput Assist Tomogr, 21 (2) : 280-285, 1997.
43) Hoffman, E., Paller, D., Koruprolu, S., et al. : Accuracy of Plain Radiographs Versus 3D Analysis of Ankle Stress Test. Foot Ankle Int, 32 : 994-999, 2012.
44) Tourne, Y., Besse, J. L., Mabit, C., et al. : Chronic ankle instability. Which tests to assess the lesions? Which therapeutic options? Orthop Traumatol Surg Res, 96 (4) : 433-446, 2010.
45) Cordova, M. L., Sefton, J. M., Hubbard, T. J. : Mechanical joint laxity associated with chronic ankle instabil ity : a systematic review. Sports Health, 2 (6) : 452-459, 2010.
46) Choi, J. H., Choi, K. J., Chung, C. Y., et al. : Consistency and Reliability of Ankle Stress Radiography in Patients With Chronic Lateral Ankle Instability. Orthop J Sports Med, 9 (5) : 23259671211004099, 2021.
47) Szczepaniak, J., Ciszkowska-Lyson, B., Smigielski, R., et al. : Value of ultrasonography in assessment of recent injury of anterior talofibular ligament in children. J Ultrason, 15 (62) : 259-266, 2015.
48) Takakura, Y., Yamaguchi, S., Akagi, R., et al. : Diagnosis of avulsion fractures of the distal fibula after lateral ankle sprain in children : a diagnostic accuracy study comparing ultrasonography with radiography. BMC Musculoskelet Disord, 21 (1) : 276, 2020.
49) Canagasabey, M. D., Callaghan, M. J., Carley, S. : The sonographic Ottawa Foot and Ankle Rules study (the SOFAR study). Emerg Med J, 28 (10) : 838-840, 2011.
50) Lee, K. T., Park, Y. U., Jegal, H., et al. : New method of diagnosis for chronic ankle instability : comparison of manual anterior drawer test, stress radiography and stress ultrasound. Knee Surg Sports Traumatol Arthrosc, 22 (7) : 1701-1707, 2014.
51) Cho, J. H., Lee, D. H., Song, H. K., et al. : Value of stress ultrasound for the diagnosis of chronic ankle instability compared to manual anterior drawer test, stress radiography, magnetic resonance imaging, and arthroscopy. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1022-1028, 2016.
52) Kemmochi, M., Sasaki, S., Fujisaki, K., et al. : A new classification of anterior talofibular ligament injuries based on ultrasonography findings. J Orthop Sci, 21 (6) : 770-778, 2016.
53) Kristen, K. H., Seilern Und Aspang, J., Wiedemann, J., et al. : Reliability of ultrasonography measurement of the anterior talofibular ligamen (t ATFL) length in healthy subjects (in vivo), based on examiner experience and patient positioning. J Exp Orthop, 6 (1) : 30, 2019.
54) Noda, Y., Horibe, S., Hiramatsu, K., et al. : Quick and simple test to evaluate severity of acute lateral ankle sprain. Asia Pac J Sports Med Arthrosc Rehabil Technol, 25 : 30-34, 2021.
55) Baltes, T. P. A., Arnaiz, J., Geertsema, L., et al. : Diagnostic value of ultrasonography in acute lateral and syndesmotic ligamentous ankle injuries. Eur Radiol, 31 (4) : 2610-2620, 2021.
56) Kikumoto, T., Akatsuka, K., Nakamura, E., et al. : Quantitative evaluation method for clarifying ankle plantar flexion angles using anterior drawer and inversion stress tests : a cross-sectional study. J Foot Ankle Res, 12 : 27, 2019.
57) Li, Q., Tu, Y., Chen, J., et al. : Reverse anterolateral drawer test is more sensitive and accurate for diagnosing chronic anterior talofbular ligament injury. Knee Surg Sports Traumatol Arthrosc, 28 (1) : 55-62, 2020.
58) Sisson, L., Croy, T., Saliba, S., et al. : Comparison of ankle arthrometry to stress ultrasound imaging in the assessment of ankle laxity inhealthy adults. Int J Sports Phys Ther, 6 (4) : 297-305, 2011.
59) Hua, Y., Yang, Y., Chen, S., et al. : Ultrasound examination for the diagnosis of chronic anterior talofibular ligament injury. Acta Radiol, 53 (10) : 1142-1145, 2012.
60) Ozeki, S., Yasuda, K., Kaneda, K., et al. : Simultaneous strain measurement with determination of a zero strain reference for the medial and lateral ligaments of the ankle. Foot Ankle Int, 23 (9) : 825-832, 2002.
61) Draghi, F., Gregoli, B., Bortolotto, C. : Absence of elevation of fibular tendons during dorsal hyperflexion of the foot : a sign of loss of the calcaneofibular ligament. J Ultrasound Med, 33 (7) : 1307-1308, 2014.
62) de Maeseneer, D. M., Marceils, S., Jager, T., et al. : Sonography of the normal ankle : a target approach using skeletal reference points. AJR Am J Roentgenol, 192 : 487-495, 2009.
63) Precerutti, M., Bonardi, M., Ferrozzi, G., et al : Sonographic anatomy of the ankle. J Ultrasound, 17 : 79-87, 2013.
64) Cheng, Y., Cai, Y., Wang, Y. : Value of ultrasonography for detecting chronic injury of the lateral ligaments of the ankle joint compared with ultrasonography findings. Br J Radiol, 87 (1033) : 20130406, 2014.
65) Ozcakar, L., Kara, M., Chang, K. V., et al. : EURO-MUSCULUS/USPRM. Basic scanning protocols for ankle and foot. Eur J Phys Rehabil Med, 51 (5) : 647-653, 2015.
66) Hattori, S., Nimura, A., Koyama, M., et al. : Dorsiflexion is more feasible than plantar flexion in ultrasound evaluation of the calcaneofibular ligament : a combination study of ultrasound and cadaver. Knee Surg Sports Traumatol Arthrosc, 28 (1) : 262-269, 2020.
67) Jacobson, J. A. : Ankle, Foot, and Lower Leg Ultrasound. Fundamentals of Musculoskeletal Ultrasound. 2nd ed. Elsevier Saunders, Philadelphia, 212-256, 2013.
68) Sconfienza, L. M., Orlandi, D., Lacelli, F., et al. : Dynamic high-resolution US of ankle and midfoot ligaments : normal anatomic structure and imaging technique. Radiographics, 35 (1) : 164-178, 2015.
69) Alves, T., Dong, Q., Jacobson, J., et al. : Normal and Injured Ankle Ligaments on Ultrasonography With Magnetic Resonance Imaging Correlation. J Ultrasound Med, 38 (2) : 513-528, 2019.
70) Hung, C. Y., Chang, K. V., Mezian, K., et al. : Advanced Ankle and Foot Sonoanatomy : Imaging Beyond the Basics. Diagnostics (Basel), 10 (3) : 160, 2020.
71) Stella, S. M., Ciampi, B., Del Chiaro, A., et al. : Sonographic visibility of the main posterior ankle ligaments and para-ligamentous structures in 15 healthy subjects. J Ultrasound, 24 (1) : 23-33, 2020.
72) Iqbal, A., McLoughlin, E., Beale, D., et al. : A Rare Pattern of Ligamentous Injury of the Ankle : A Case Report and Review of the Literature. J Foot Ankle Surg, 60 (4) : 870-872, 2021.
73) Lee, K. M., Chung, C. Y., Kwon, S. S., et al. : Relationship between stress ankle radiographs and injured ligaments on MRI. Skeletal Radiol, 42 (11) : 1537-1542, 2013.
74) Barini, M., Zagaria, D., Licandro, D., et al. : Magnetic Resonance Accuracy in the Diagnosis of Anterior Talo-Fibular Ligament Acute Injury : A Systematic Review and Meta-Analysis. Diagnostics (Basel), 11 (10) : 1782, 2021.
75) Kumar, V., Triantafyllopoulos, I., Panagopoulos, A., et al. : Deficiencies of MRI in the diagnosis of chronic symptomatic lateral ankle ligament injuries. Foot Ankle Surg, 13 (4) : 171-176, 2007.
76) Joshy, S., Abdulkadir, U., Chaganti, S., et al. : Accuracy of MRI scan in the diagnosis of ligamentous and chondral pathology in the ankle. Foot Ankle Surg, 16 (2) : 78-80, 2010.
77) Cha, S. D., Kim, H. S., Chung, S. T., et al. : Intra-articular lesions in chronic lateral ankle instability : comparison of arthroscopy with magnetic resonance imaging findings. Clin Orthop Surg, 4 (4) : 293-299, 2012.
78) Lee, M. H., Cha, J. G., Lee, Y. K., et al. : The bright rim sign on MRI for anterior talofibular ligament injury with arthroscopic correlation. AJR Am J Roentgenol, 198 (4) : 885-890, 2012.
79) Park, H. J., Cha, S. D., Kim, S. S., et al. : Accuracy of MRI findings in chronic lateral ankle ligament injury : comparison with surgical findings. Clin Radiol, 67 (4) : 313-318, 2012.
80) Kim, Y. S., Kim, Y. B., Kim, T. G., et al. : Reliability and Validity of Magnetic Resonance Imaging for the Evaluation of the Anterior Talofibular Ligament in Patients Undergoing Ankle Arthroscopy. Arthroscopy, 31 (8) : 1540-1547, 2015.
81) Ahn, J., Choi, J. G., Jeong, B. O. : The signal intensity of preoperative magnetic resonance imaging has predictive value for determining the arthroscopic reparability of the anterior talofibular ligament. Knee Surg Sports Traumatol Arthrosc, 29 (5) : 1535-1543, 2021.
82) Park, H. J., Lee, S. Y., Park, N. H., et al. : Usefulness of the oblique coronal plane in ankle MRI of the calcaneofibular ligament. Clin Radiol, 70 (4) : 416-423, 2015.
83) Choo, H. J., Lee, S. J., Kim, D. W., et al. : Multibanded anterior talofibular ligaments in normal ankles and sprained ankles using 3D isotropic proton density-weighted fast spin-echo MRI sequence. AJR Am J Roentgenol, 202 (1) : W87-94, 2014.
84) Park, H. J., Lee, S. Y., Park, N. H., et al. : Three-dimensional isotropic T2-weighted fast spin-echo (VISTA) ankle MRI versus two-dimensional fast spin-echo T2-weighted sequences for the evaluation of anterior talofibular ligament injury. Clin Radiol, 71 (4) : 349-355, 2016.
85) Park, H. J., Lee, S. Y., Choi, Y. J., et al. : 3D isotropic T2-weighted fast spin echo (VISTA) versus 2D T2-weighted fast spin echo in evaluation of the calcaneofibular ligament in the oblique coronal plane. Clin Radiol, 72 (2) : 176.e1-176.e7, 2017.
86) Teramoto, A., Akatsuka, Y., Takashima, H., et al. : 3D MRI evaluation of morphological characteristics of lateral ankle ligaments in injured patients and uninjured controls. J Orthop Sci, 25 (1) : 183-187, 2020.
87) Nagatomo, M., Yoshimura, I., Hagio, T., et al. : Straight Form of Calcaneofibular Ligament as a Three-Dimensional Magnetic Resonance Imaging Sign in Diagnosis of Calcaneofibular Ligament and Anterior Talofibular Ligament Inferior Fascicle Injury. J Foot Ankle Surg, 61 (2) : 327-332, 2022.
88) Stevens, K. J., Busse, R. F., Han, E., et al. : Ankle : isotropic MR imaging with 3D-FSE-cube-initial experience in healthy volunteers. Radiology, 249 (3) : 1026-1033, 2008.
89) Nakasa, T., Fukuhara, K., Adachi, N., et al. : Evaluation of anterior talofibular ligament lesion using 3-dimensional computed tomography. J Comput Assist Tomogr, 30 (3) : 543-547, 2006.
P.198 掲載の参考文献
1) Fong, D. T., Hong, Y., Chan, L. K., et al. : A systematic review on ankle injury and ankle sprain in sports. Sports Med, 37 (1) : 73-94, 2007.
2) Kemler, E., van de Port, I., Backx, F., et al. : A systematic review on the treatment of acute ankle sprain : brace versus other functional treatment types. Sports Med, 41 (3) : 185-197, 2011.
3) Gribble, P. A., Bleakley, C. M., Caulfield, B. M., et al. : Evidence review for the 2016 International Ankle Consortium consensus statement on the prevalence, impact and long-term consequences of lateral ankle sprains. Br J Sports Med, 50 (24) : 1496-1505, 2016.
4) van Rijn, R. M., van Os, A. G., Bernsen, M. D., et al. : What is the clinical course of acute ankle sprains? A systematic literature review. Am J Med, 121 (4) : 324-331, e6, 2008.
5) Galloway, M. T., Lalley, A. L., Shearn, J. T., et al. : The role of mechanical loading in tendon development, maintenance, injury, and repair. J Bone Joint Surg Am, 95 (17) : 1620-1628, 2013.
6) Petersen, W., Rembitzki, I. V., Koppenburg, A. G., et al. : Treatment of acute ankle ligament injuries : a systematic review. Arch Orthop Trauma Surg, 133 (8) : 1129-1141, 2013.
7) van den Bekerom, M., Struijs, P., Blankevoort, L., et al. : What is the evidence for rest, ice, compression, and elevation therapy in the treatment of ankle sprains in adults? J Athl Train, 47 (4) : 435-443, 2012.
8) Vuurberg, G., Hoorntje, A., Wink, L. M., et al. : Diagnosis, treatment and prevention of ankle sprains : update of an evidence-based clinical guideline. Br J Sports Med, 52 (15) : 956, 2018.
9) Kerkhoffs, G. M., Bekerom, M., Elders, L., et al. : Diagnosis, treatment and prevention of ankle sprains : an evidence-based clinical guideline. Br J Sports Med, 46 (12) : 854-860, 2012.
10) Bleakley, C. M., Glasgow, P., MacAuley, D. C. : PRICE needs updating, should we call the POLICE? Br J Sports Med, 46 (4) : 220-221, 2012.
11) Laba, E. : Clinical evaluation of ice therapy for acute ankle sprain injuries. NZ J Physiother, 17 : 7-9, 1989.
12) Hocutt, J. E., Jaffe, R., Rylander, C. R., et al. : Cryotherapy in ankle sprains. Am J Sports Med, 10 (5) : 316-319, 1982.
13) Basur, R. L., Shephard, E., Mouzas, G. L. : A cooling method in the treatment of ankle sprains. Practitioner, 216 (1296) : 708-711, 1976.
14) Bleakley, C., McDonough, S., MacAuley, D. : The use of ice in the treatment of acute soft-tissue injury : a systematic review of randomized controlled trials. Am J Sports Med, 32 (1) : 251-261, 2004.
15) Airaksinen, O., Kolari, P. J., Miettinen, H. : Elastic bandages and intermittent pneumatic compression for treatment of acute ankle sprains. Arch Phys Med Rehabil, 71 (6) : 380-383, 1990.
16) Rucinkski, T. J., Hooker, D. N., Prentice, W. E., et al. : The effects of intermittent compression on edema in postacute ankle sprains. J Orthop Sports Phys Ther, 14 (2) : 65-69, 1991.
17) Lamb, S. E., Marsh, J. L., Hutton, J. L., et al. : Mechanical supports for acute, severe ankle sprain : a pragmatic, multicentre, randomised controlled trial. Lancet, 373 (9663) : 575-581, 2009.
18) Kannus, P., Renstrom, P. : Treatment for acute tears of the lateral ligaments of the ankle. Operation, cast, or early controlled mobilization. J Bone Joint Surg Am, 73 (2) : 305-312, 1991.
19) Glasgow, P., Phillips, N., Bleakley, C. : Optimal loading : key variables and mechanisms. Br J Sports Med, 49 (5) : 278-279, 2015.
20) Beynnon, B. D., Renstrom, P. A., Haugh, L., et al. : A prospective, randomized clinical investigation of the treatment of first-time ankle sprains. Am J Sports Med, 34 (9) : 1401-1412, 2006.
21) Lardenoye, S., Theunissen, E., Cleffken, B., et al. : The effect of taping versus semi-rigid bracing on patient outcome and satisfaction in ankle sprains : a prospective, randomized controlled trial. BMC Musculoskelet Disord, 13 : 81, 2012.
22) Bekerom, M. P., Kimmenade, R., Sierevelt, I. N., et al. : Randomized comparison of tape versus semi-rigid and versus lace-up ankle support in the treatment of acute lateral ankle ligament injury. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 978-984, 2016.
23) Hubbard, T. J., Hicks, C. A. : Ankle ligament healing after an acute ankle sprain : an evidence-based approach. J Athl Train, 43 (5) : 523-529, 2008.
24) Doherty, C., Bleakley, C., Delahunt, E., et al. : Treatment and prevention of acute and recurrent ankle sprain : an overview of systematic reviews with meta-analysis. Br J Sports Med, 51 (2) : 113-125, 2017.
25) Zech, A., Hubscher, M., Vogt, L., et al. : Neuromuscular training for rehabilitation of sports injuries : a systematic review. Med Sci Sports Exerc, 41 : 1831-1841, 2009.
26) van der Wees, P. J., Lenssen, A. F., Hendriks, E. J., et al. : Effectiveness of exercise therapy and manual mobilisation in ankle sprain and functional instability : a systematic review. Aust J Physiother, 52 : 27-37, 2006.
27) Bleakley, C. M., McDonough, S. M., MacAuley, D. C. : Some conservative strategies are effective when added to controlled mobilisation with external support after acute ankle sprain : a systematic review. Aust J Physiother, 54 (1) : 7-20, 2008.
28) Postle, K., Pak, D., Smith, T. O. : Effectiveness of proprioceptive exercises for ankle ligament injury in adults : a systematic literature and meta-analysis. Man Ther, 17 : 285-291, 2012.
29) van Rijn, R. M., van Ochten, J., Luijsterburg, P. A., et al. : Effectiveness of additional supervised exercises compared with conventional treatment alone in patients with acute lateral ankle sprains : systematic review. BMJ, 341 : c5688, 2010.
30) Hultman, K., Faltstrom, A., Oberg, U. : The effect of early physiotherapy after an acute ankle sprain. Adv Physiother, 12 : 65-73, 2010.
31) Ismail, M. M., Ibrahim, M. M., Youssef, E. F., et al. : Plyometric training versus resistive exercises after acute lateral ankle sprain. Foot Ankle Int, 31 (6) : 523-530, 2010.
32) Konradsen, L., Olesen, S., Hansen, H. M. : Ankle sensorimotor control and eversion strength after acute ankle inversion injuries. Am J Sports Med, 26 (1) : 72-77, 1998.
33) Loudon, J. K., Reiman, M. P., Sylvain, J. : The efficacy of manual joint mobilisation/manipulation in treatment of lateral ankle sprains : a systematic review. Br J Sports Med, 48 (5) : 365-370, 2014.
34) Brantingham, J. W., Globe, G., Pollard, H., et al. : Manipulative Therapy for Lower Extremity Conditions : Expansion of Literature Review. J Manipulative Physiol Ther, 32 : 53-71, 2009.
35) Mobarakeh, M., Oah, H. J. : Effect of Friction Technique on Ankle Sprain Grade II Treatment. Biomed Pharmacol J, 8 (2) : 523-528, 2015.
36) Truyols-Dominguez, S., Salom-Moreno, J., Abian-Vicen, J., et al. : Efficacy of thrust and nonthrust manipulation and exercise with or without the addition of myofascial therapy for the management of acute inversion ankle sprain : a randomized clinical trial. J Orthop Sports Phys Ther, 43 (5) : 300-309, 2013.
37) Cosby, N. L., Koroch, M., Grindstaff, T. L., et al. : Immediate effects of anterior to posterior talocrural joint mobilizations following acute lateral ankle sprain. J Man Manip Ther, 19 (2) : 76-83, 2011.
38) Pihlajamaki, H., Hietaniemi, K., Paavola, M., et al. : Surgical versus functional treatment for acute ruptures of the lateral ligament complex of the ankle in young men : a randomized controlled trial. J Bone Joint Surg Am, 92 (14) : 2367-2374, 2010.
39) Han, L. H., Zhang, C. Y., Liu, B., et al. : A Meta-analysis of treatment methods for acute ankle sprain. Pak J Med Sci, 28 (5) : 895-899, 2012.
40) Takao, M., Miyamoto, W., Matsui, K., et al. : Functional treatment after surgical repair for acute lateral ligament disruption of the ankle in athletes. Am J Sports Med, 40 (2) : 447-451, 2012.
41) Kerkhoffs, G. M., Handoll, H. H., Bie, R., et al. : Surgical versus conservative treatment for acute injuries of the lateral ligament complex of the ankle in adults. Cochrane Database Syst Rev, (2) : CD000380, 2007.
42) Doherty, C., Delahunt, E., Caulfield, B., et al. : The incidence and prevalence of ankle sprain injury : a systematic review and meta-analysis of prospective epidemiological studies. Sports Med, 44 (1) : 123-140, 2014.
43) Haraguchi, N., Toga, H., Shiba, N., et al. : Avulsion fracture of the lateral ankle ligament complex in severe inversion injury : incidence and clinical outcome. Am J Sports Med, 35 (7) : 1144-1152, 2007.
44) Yamaguchi, S., Akagi, R., Kimura, S., et al. : Avulsion fracture of the distal fibula is associated with recurrent sprain after ankle sprain in children. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2774-2780, 2018.
45) Maeda, M., Maeda, N., Takaoka, T., et al. : Sonographic findings of Chondral avulsion fractures of the lateral ankle ligaments in children. J Ultrasound Med, 36 (2) : 421-432, 2017.
46) Boutis, K., Plint, A., Stimec, J., et al. : Radiograph-negative lateral ankle injuries in children : occult growth plate fracture or sprain? JAMA Pediatr, 170 (1) : e154114, 2016.
47) Boutis, K., Willan, A. R., Babyn, P., et al. : A randomized, controlled trial of a removable brace versus casting in children with low-risk ankle fractures. Pediatrics, 119 (6) : e1256-e1263, 2007.
48) Vahvanen, V., Westerlund, M., Kajanti, M. : Sprained ankle in children. A clinical follow-up study of 90 children treated conservatively and by surgery. Ann Chir Gynaecol, 72 (2) : 71-75, 1983.
49) Kwak, Y. H., Lim, J. Y., Oh, M. K., et al. : Radiographic diagnosis of occult distal fibular avulsion fracture in children with acute lateral ankle sprain. J Pediatr Orthop, 35 (4) : 352-357, 2015.
P.206 掲載の参考文献
1) Hertel, J. : Functional Anatomy, Pathomechanics, and Pathophysiology of Lateral Ankle Instability. J Athl Train, 37 (4) : 364-375, 2002.
2) Ajis, A., Maffulli, N. : Conservative management of chronic ankle instability. Foot Ankle Clin, 11 (3) : 531-537, 2006.
3) 小林匠 : 足関節捻挫の病態と治療. 日本アスレティックトレーニング学会誌, 3 (2) : 117-126, 2018.
4) 飯田聡, 伊藤亮輔, 広瀬統一 : 足関節不安定性を有するサッカー選手の片脚着地時における下肢キネマティクスと筋活動. 日本アスレティックトレーニング学会誌, 2 (2) : 109-115, 2017.
5) Roux, W. : Gesammelte Abhandlungen uber Entwickelungsmechanik der Organismen, Erster Band, Abhandlung I-XII, vorwiegend uber Functionelle Anpassung. Leipzig, 458-722, 1895.
6) Creath, R., Kiemel, T., Horak, F., et al. : A unified view of quiet and perturbed stance : simultaneous co-existing excitable modes. Neurosci Lett, 377 (2) : 75-80, 2005.
7) Scorcelletti, M., Reeves, N. D., Rittweger, J., et al. : Femoral anteversion : significance and measurement. J Anat, 237 (5) : 811-826, 2020.
8) Dizon, J. M., Reyes, J. J. : A systematic review on the effectiveness of external ankle supports in the prevention of inversion ankle sprains among elite and recreational players. J Sci Med Sport, 13 (3) : 309-317, 2010.
9) van Dijk, C. N. : Management of the sprained ankle. Br J Sports Med, 36 (2) : 83-84, 2002.
10) Kaminski, T. W., Hertel, J., Amendola, N., et al. : National Athletic Trainers' Association position statement : conservative management and prevention of ankle sprains in athletes. J Athl Train, 48 (4) : 528-545, 2013.
11) Jackson, B. C., Medina, R. T., Clines, S. H., et al. : The Effect of Fibular Reposition Taping on Postural Control in Individuals with Chronic Ankle Instability : A Critically Appraised Topic. J Sport Rehabil, 28 (2) : 1-15, 2017.
P.211 掲載の参考文献
1) Aicale, R., Maffulli, N. : Chronic Lateral Ankle Instability : Topical Review. Foot Ankle Int, 41 (12) : 1571-1581, 2020.
2) Gribble, P. A., Bleakley, C. M., Caulfield, B. M., et al. : Evidence review for the 2016 International Ankle Consortium consensus statement on the prevalence, impact and long-term consequences of lateral ankle sprains. Br J Sports Med, 50 (24) : 1496-1505, 2016.
3) van Rijn, R. M., van Os, A. G., Bernsen, R. M., et al. : What is the clinical course of acute ankle sprains? A systematic literature review. Am J Med, 121 (4) : 324-331, e6, 2008.
4) Ferkel, R. D., Chams, R. N. : Chronic lateral instability : arthroscopic findings and long-term results. Foot Ankle Int, 28 : 24-31, 2007.
5) Li, X., Killie, H., Guerrero, P., et al. : Anatomical reconstruction for chronic lateral ankle instability in the high-demand athlete : functional outcomes after the modified Brostrom repair using suture anchors. Am J Sports Med, 37 (3) : 488-494, 2009.
6) Messer, T. M., Cummins, C. A., Ahn, J., et al. : Outcome of the modified Brostrom procedure for chronic lateral ankle instability using suture anchors. Foot Ankle Int, 21 (12) : 996-1003, 2000.
7) Bell, S. J., Mologne, T. S., Sitler, D. F., et al. : Twenty-six-year results after Brostrom procedure for chronic lateral ankle instability. Am J Sports Med, 34 (6) : 975-978, 2006.
8) Lee, K. T., Park, Y. U., Kim, J. S., et al. : Long-term results after modified Brostrom procedure without calcaneofibular ligament reconstruction. Foot Ankle Int, 32 (2) : 153-157, 2011.
9) Cottom, J. M., Baker, J. S., Richardson, P. E. : The "All-Inside" Arthroscopic Brostrom Procedure With Additional Suture Anchor Augmentation : A Prospective Study of 45 Consecutive Patients. J Foot Ankle Surg, 55 (6) : 1223-1228, 2016.
10) Kim, E. S., Lee, K. T., Park, J. S., et al. : Arthroscopic anterior talofibular ligament repair for chronic ankle instability with a suture anchor technique. Orthopedics, 34 (4), 2011.
11) Matsui, K., Takao, M., Miyamoto, W., et al. : Early recovery after arthroscopic repair compared to open repair of the anterior talofibular ligament for lateral instability of the ankle. Arch Orthop Trauma Surg, 136 (1) : 93-100, 2016.
12) Vega, J., Golano, P., Pellegrino, A., et al. : All-inside arthroscopic lateral collateral ligament repair for ankle instability with a knotless suture anchor technique. Foot Ankle Int, 34 (12) : 1701-1709, 2013.
13) Brown, A. J., Shimozono, Y., Hurley, E. T., et al. : Arthroscopic versus open repair of lateral ankle ligament for chronic lateral ankle instability : a meta-analysis. Knee Surg Sports Traumatol Arthrosc, 28 (5) : 1611-1618, 2020.
14) Zhi, X., Lv, Z., Zhang, C., et al. : Does arthroscopic repair show superiority over open repair of lateral ankle ligament for chronic lateral ankle instability : a systematic review and meta-analysis. J Orthop Surg Res, 15 (1) : 355, 2020.
15) Guelfi, M., Zamperetti, M., Pantalone, A., et al. : Open and arthroscopic lateral ligament repair for treatment of chronic ankle instability : A systematic review. Foot Ankle Surg, 24 (1) : 11-18, 2018.
16) Moorthy, V., Sayampanathan, A. A., Yeo, N. E. M., et al. : Clinical Outcomes of Open Versus Arthroscopic Brostrom Procedure for Lateral Ankle Instability : A Meta-analysis. J Foot Ankle Surg, 60 (3) : 577-584, 2021.
17) Kulwin, R., Watson, T. S., Rigby, R., et al. : Traditional Modified Brostrom vs Suture Tape Ligament Augmentation. Foot Ankle Int, 42 (5) : 554-561, 2021.
18) Lewis, T. L., Joseph, A., Patel, A., et al. : Modified Brostrom repair with suture tape augmentation for lateral ankle instability : A systematic review. Foot Ankle Surg, 27 (3) : 278-284, 2021.
19) Tang, B., Zeng, X., Fan, C. : Is generalized ligamentous laxity a contraindication for a modified Brostrom operation to treat chronic lateral ankle instability? A systematic review. Foot Ankle Surg, 27 (3) : 271-277, 2021.
20) Martin. K. D., Andres, N. N., Robinson, W. H. : Suture Tape Augmented Brostrom Procedure and Early Accelerated Rehabilitation. Foot Ankle Int, 42 (2) : 145-150, 2021.
21) Ramirez-Gomez, V. J., Gomez-Carlin, L. A., Ortega-Orozco, R., et al. : Clinical and Functional Results of Brostrom-Gould Procedure With Suture Tape Augmentation : An Evaluation Using Three Scales. J Foot Ankle Surg, 59 (4) : 733-738, 2020.
22) Xu, D. L., Gan, K. F., Li, H. J., et al. : Modified Brostrom Repair With and Without Augmentation Using Suture Tape for Chronic Lateral Ankle Instability. Orthop Surg, 11 (4) : 671-678, 2019.
23) Coetzee, J. C., Ellington, J. K., Ronan, J. A., et al. : Functional Results of Open Brostrom Ankle Ligament Repair Augmented With a Suture Tape. Foot Ankle Int, 39 (3) : 304-310, 2018.
24) Nilsonne, H. : MAKING A NEW LIGAMENT IN ANKLE SPRAIN. J Bone Joint Surg, 14 (2) : 380-381, 1932.
25) Brostrom, L. : Sprained ankles. V. Treatment and prognosis in recent ligament ruptures. Acta Chir Scand, 132 : 537-550, 1966.
26) Gould, N., Seligson, D., Gassman, J. : Early and late repair of lateral ligament of the ankle. Foot Ankle, 1 (2) : 84-89, 1980.
27) Karlsson, J., Bergsten, T., Lansinger, O., et al. : Reconstruction of the lateral ligaments of the ankle for chronic lateral instability. J Bone Joint Surg Am, 70 (4) : 581-588, 1988.
28) Paden, M. H., Stone, P. A., McGarry, J. J. : Modified Brostrom lateral ankle stabilization utilizing an implantable anchoring system. J Foot Ankle Surg, 33 : 617-622, 1994.
29) Brown, C. A., Hurwit, D., Behn, A., et al. : Biomechanical comparison of an all-soft suture anchor with a modified Brostrom-Gould suture repair for lateral ligament reconstruction. Am J Sports Med, 42 (2) : 417-422, 2014.
30) So, E., Preston, N., Holmes, T. : Intermediate- to Long-Term Longevity and Incidence of Revision of the Modified Brostrom-Gould Procedure for Lateral Ankle Ligament Repair : A Systematic Review. J Foot Ankle Surg, 56 (5) : 1076-1080, 2017.
31) Maffulli, N., Del Buono, A., Maffulli, G. D., et al. : Isolated anterior talofibular ligament Brostrom repair for chronic lateral ankle instability : 9-year follow-up. Am J Sports Med, 41 (4) : 858-864, 2013.
32) Xu, H. X., Lee, K. B. : Modified Brostrom Procedure for Chronic Lateral Ankle Instability in Patients With Generalized Joint Laxity. Am J Sports Med, 44 (12) : 3152-3157, 2016.
33) Park, K. H., Lee, J. W., Suh J. W. : Generalized Ligamentous Laxity Is an Independent Predictor of Poor Outcomes After the Modified Brostrom Procedure for Chronic Lateral Ankle Instability. Am J Sports Med, 44 (11) : 2975-2983, 2016.
34) Hawkins, R. B. : Arthroscopic stapling repair for chronic lateral instability. Clin Podiatr Med Surg, 4 (4) : 875-883, 1987.
35) Corte-Real, N. M., Moreira, R. M. : Arthroscopic repair of chronic lateral ankle instability. Foot Ankle Int, 30 (3) : 213-217, 2009.
36) Acevedo, J. I., Mangone, P. : Arthroscopic brostrom technique. Foot Ankle Int, 36 (4) : 465-473, 2015.
37) Pitts, C. C., McKissack, H. M., Anderson, M. C., et al. : Anatomical structures at risk in the arthroscopic Brostrom-Gould procedure : A cadaver study. Foot Ankle Surg, 26 (3) : 343-346, 2020.
38) Nery, C., Raduan, F., Del Buono. A., et al. : Arthroscopic-assisted Brostrom-Gould for chronic ankle instability : a long-term follow-up. Am J Sports Med, 39 (11) : 2381-2388, 2011.
39) Cottom, J. M., Rigby, R. B., : The "all inside" arthroscopic Brostrom procedure : a prospective study of 40 consecutive patients. J Foot Ankle Surg, 52 (5) : 568-574, 2013.
40) Lee, S. H., Cho, H. G., Yang, J. H. : Additional Inferior Extensor Retinaculum Augmentation After All-Inside Arthroscopic Anterior Talofibular Ligament Repair for Chronic Ankle Instability Is Not Necessary. Am J Sports Med, 49 (7) : 1721-1731, 2021.
41) Samejima, Y., Inokuchi, R., Iwashita, K., et al. : Arthroscopic ankle lateral ligament repair alone versus arthroscopic ankle lateral ligament repair with reinforcement by inferior extensor retinaculum. Arch Orthop Trauma Surg, 141 (6) : 987-995, 2021.
42) Hagio, T., Yoshimura, I., Kanazawa, K., et al. : Morphology of Anterior Talofibular Ligament After Arthroscopic Lateral Ankle Ligament Repair. Foot Ankle Int, 41 (8) : 993-1001, 2021.
43) Kanzaki, N., Chinzei, N., Yamashita, T., et al. : A Novel Technique of Arthroscopic Ankle Lateral Ligament Repair Using a Knotless Suture Anchor. Orthop J Sports Med, 8 (11) : 2325967120962079, 2020.
44) Takao, M., Inokuchi, R., Jujo, Y., et al. : Clinical outcomes of concurrent surgery with weight bearing after modified lasso-loop stitch arthroscopic ankle stabilization. Knee Surg Sports Traumatol Arthrosc, 29 (6) : 2006-2014, 2021.
45) Nunes, G. A., Ferreira, G. F., Caetano, R. M., et al. : All-inside arthroscopic repair of the anterior talofibular ligament : a case series. Int Orthop, 46 (2) : 273-279, 2022.
46) Larkins, C. G., Brady, A. W., Aman, Z. S., et al. : Evaluation of the Intact Anterior Talofibular and Calcaneofibular Ligaments, Injuries, and Repairs With and Without Augmentation : A Biomechanical Robotic Study. Am J Sports Med, 49 (9) : 2432-2438, 2021.
47) Cho, B. K., Park, K. J., Park, J. K., et al. : Outcomes of the Modified Brostrom Procedure Augmented With Suture-Tape for Ankle Instability in Patients With Generalized Ligamentous Laxity. Foot Ankle Int, 38 (4) : 405-411, 2017.
48) Cho, B. K., Kim, Y. M., Choi, S. M., et al., : Revision anatomical reconstruction of the lateral ligaments of the ankle augmented with suture tape for patients with a failed Brostrom procedure. Bone Joint J, 99-B (9) : 1183-1189, 2017.
49) Wittig, U., Hohenberger, G., Ornig, M., et al. : Improved Outcome and Earlier Return to Activity After Suture Tape Augmentation Versus Brostrom Repair for Chronic Lateral Ankle Instability? A Systematic Review. Arthroscopy, 38 (2) : 597-608, 2022.
P.219 掲載の参考文献
1) Ahn, J. H., Choy, W. S., Kim, H. Y. : Reconstruction of the lateral ankle ligament with a long extensor tendon graft of the fourth toe. Am J Sports Med, 39 (3) : 637-644, 2011.
2) Ellis, S. J., Williams, B. R., Pavlov, H., et al. : Results of anatomic lateral ankle ligament reconstruction with tendon allograft. HSS, 7 (2) : 134-140, 2011.
3) Hua, Y., Chen, S., Jin, Y., et al. : Anatomical reconstruction of the lateral ligaments of the ankle with semitendinosus allograft. Int Orthop, 36 (10) : 2027-2031, 2012.
4) Kennedy, J. G., Smyth, N. A., Fansa, A. M., et al. : Anatomic lateral ligament reconstruction in the ankle : a hybrid technique in the athletic population. Am J Sports Med, 40 (10) : 2309-2317, 2012.
5) Youn, H., Kim, Y. S., Lee, J., et al. : Percutaneous lateral ligament reconstruction with allograft for chronic lateral ankle instability. Foot Ankle Int, 33 (2) : 99-104, 2012.
6) Wang, B., Xu, X. Y. : Minimally invasive reconstruction of lateral ligaments of the ankle using semitendinosus autograft. Foot Ankle Int, 34 (5) : 711-715, 2013.
7) Xu, X., Hu, M., Liu, J. : Minimally invasive reconstruction of the lateral ankle ligaments using semitendinosus autograft or tendon allograft. Foot Ankle Int, 35 (10) : 1015-1021, 2014.
8) Dierckman, B. D., Ferkel, R. D. : Anatomic Reconstruction with a Semitendinosus Allograft for Chronic Lateral Ankle Instability. Am J Sports Med, 43 (8) : 1941-1950, 2015.
9) Jung, H. G., Shin, M. H., Park, J. T., et al. : Anatomical Reconstruction of Lateral Ankle Ligaments Using Free Tendon Allografts and Biotenodesis Screws. Foot Ankle Int, 36 (9) : 1064-1071, 2015.
10) Kim, H. N., Jeon, J. Y., Dong, Q., et al. : Lateral ankle ligament reconstruction using the anterior half of the peroneus longus tendon. Knee Surg Sports Traumatol Arthrosc, 23 (6) : 1877-1885, 2015.
11) Guillo, S., Takao, M., Calder, J., et al. : Arthroscopic anatomical reconstruction of the lateral ankle ligaments. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 998-1002, 2016.
12) Choi, H. J., Kim, D. W., Park, J. S. : Modified Brostrom Procedure Using Distal Fibular Periosteal Flap Augmentation vs Anatomic Reconstruction Using a Free Tendon Allograft in Patients Who Are Not Candidates for Standard Repair. Foot Ankle Int, 38 (11) : 1207-1214, 2017.
13) Park, C. H., Lee, W. C. : Donor Site Morbidity After Lateral Ankle Ligament Reconstruction Using the Anterior Half of the Peroneus Longus Tendon Autograft. Am J Sports Med, 45 (4) : 922-928, 2017.
14) Cao, Y., Xu, Y., Hong, Y., et al. : A new minimally invasive method for anatomic reconstruction of the lateral ankle ligaments with a Tightrope system. Arch Orthop Trauma Surg, 138 (11) : 1549-1555, 2018.
15) Li, H., Hua, Y., Li, H., et al. : Anatomical reconstruction produced similarly favorable outcomes as repair procedures for the treatment of chronic lateral ankle instability at long-term follow-up. Knee Surg Sports Traumatol Arthrosc, 28 (10) : 3324-3329, 2020.
16) Smith, J. D., Hazratwala, K., Matthews, B., et al. : Modified Brostrom-Gould with Gracilis Autograft Augmentation Surgery and Accelerated Noncasted Rehabilitation in High Demand Patients with Lateral Ankle Instability. J Foot Ankle Surg, 60 : 512-519, 2021.
17) Xu, H. X., Lee, K. B., et al. : Modified Brostrom Procedure for Chronic Lateral Ankle Instability in Patients with Generalized Joint Laxity. Am J Sports Med, 44 (12) : 3152-3157, 2016.
18) Cho, B. K., Park, K. J., Park, J. K., et al. : Outcomes of the Modified Brostrom Procedure Augmented with Suture-Tape for Ankle Instability in Patients With Generalized Ligamentous Laxity. Foot Ankle Int, 38 (4) : 405-411, 2017.
19) Park, S., Kim, T., Lee, M., et al. : Absence of ATFL remnant does not affect the clinical outcomes of the modified brostrom operation for chronic ankle instability. Knee Surg Sports Traumatol Arthrosc, 28 (1) : 213-220, 2020.
20) Ibrahim, S. A., Hamido, F., Al Misfer, A. K., et al. : Anatomical reconstruction of the lateral ligaments using Gracillis tendon in chronic ankle instability ; a new technique. Foot Ankle Surg, 17 (4) : 239-246, 2011.
21) Miyamoto, W., Takao, M., Yamada, K., et al. : Accelerated Versus Traditional Rehabilitation After Anterior Talofibular Ligament Reconstruction for Chronic Lateral Instability of the Ankle in Athletes. Am J Sports Med, 42 (6) : 1441-1447, 2014.
22) Sun, Y., Wang, H., Tang, Y., et al. : Reconstruction of the lateral ankle ligaments using the anterior half of peroneus longus tendon graft. Foot Ankle Surg, 25 (2) : 242-246, 2019.
23) Usuelli, F. G., Indino, C., Di Silvestri, C. A., et al. : Clinical Outcomes and Return to Sport After Minimally Invasive Reconstruction of the Lateral Ligament Complex with Semitendinosus Tendon Autograft in Chronic Lateral Ankle Instability. J Am Podiatr Med Assoc, 111 (2) : Article_2, 2021.
24) Yasui, Y., Shimozono, Y., Kennedy, J. G. : Surgical Procedures for Chronic Lateral Ankle Instability. J Am Acad Orthop Surg, 26 (7) : 223-230, 2018.
25) Clanton, T. O., Viens, N. A., Campbell, K. J., et al. : Anterior talofibular ligament ruptures, part 2 : biomechanical comparison of anterior talofibular ligament reconstruction using semitendinosus allografts with the intact ligament. Am J Sports Med, 42 (2) : 412-416, 2014.
26) Jung, H. G., Kim, T. H., Park, J. Y., et al. : Anatomic reconstruction of the anterior talofibular and calcaneofibular ligaments using a semitendinosus tendon allograft and interference screws. Knee Surg Sports Traumatol Arthrosc, 20 (8) : 1432-1437, 2012.
27) Hua, Y., Chen, S., Jin, Y., et al. : Anatomical reconstruction of the lateral ligaments of the ankle with semitendinosus allograft. Int Orthop, 36 (10) : 2027-2031, 2012.
28) Miller, A. G., Raikin, S. M., Ahmad, J. : Near-anatomic allograft tenodesis of chronic lateral ankle instability. Foot Ankle Int, 34 (11) : 1501-1507, 2013.
29) Ventura, A., Terzaghi, C., Legnani, C., et al. : Lateral ligament reconstruction with allograft in patients with severe chronic ankle instability. Arch Orthop Trauma Surg, 134 (2) : 263-268, 2014.
30) Wang, W., Xu, G. H. : Allograft tendon reconstruction of the anterior talofibular ligament and calcaneofibular Ligament in the treatment of chronic ankle instability. BMC Musculoskelet Disord, 18 (1) : 150, 2017.
31) Takao, M., Glazebrook, M., Stone, J., et al. : Ankle Arthroscopic Reconstruction of Lateral Ligaments (Ankle Anti-ROLL). Arthrosc Tech, 4 (5) : e595-e600, 2015.
32) Guillo, S., Takao, M., Calder, J., et al. : Arthroscopic anatomical reconstruction of the lateral ankle ligaments. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 998-1002, 2016.
33) Song, B., Li, C., Chen, N., et al. : All-arthroscopic anatomical reconstruction of anterior talofibular ligament using semitendinosus autografts. Int Orthop, 41 (5) : 975-982, 2017.
34) Crombe, A., Borghol, S., Guillo, S., et al. : Arthroscopic reconstruction of the lateral ankle ligaments : Radiological evaluation and short-term clinical outcome. Diagn Interv Imaging, 100 (2) : 117-125, 2019.
35) Allegra, F., Boustany, S. E., Cerza, F., et al. : Arthroscopic anterior talofibular ligament reconstructin in chronic ankle instability : Two years results. Injury, 51 (Suppl 3) : S56-S62, 2020.
36) Iwashita, K., Jujo, Y., Inokuchi, R., et al. : Hybrid Ankle Reconstruction of Lateral Ligaments. Arthrosc Tech, 10 (3) : e931-e939, 2021.
37) Glazebrook, M., Stone, J., Matsui, K., et al. : Percutaneous Ankle Reconstruction of Lateral Ligaments (Perc-Anti RoLL). Foot Ankle Int, 37 (6) : 659-664, 2016.
38) Lu, A., Wang, X., Huang, D., et al. : The effectiveness of lateral ankle ligament reconstruction when treating chronic ankle instability : A systematic review and meta-analysis. Injury, 51 (8) : 1726-1732, 2020.
39) Li, H., Song, Y., Li, H., et al. : Outcomes After Anatomic Lateral Ankle Ligament Reconstruction Using Allograft Tendon for Chronic Ankle Instability : A Systematic Review and Meta-analysis. J Foot Ankle Surg, 59 (1) : 117-124, 2020.
40) Brambilla, L., Bianchi, A., Malerba, F., et al. : Lateral ankle ligament anatomic reconstruction for chronic ankle instability : Allograft or autograft? A systematic review. Foot Ankle Surg, 26 (1) : 85-93, 2020.
41) Vopat, M. L., Wendling, A., Lee, B., et al. : Early Versus Delayed Mobilization Post-Operative Protocols for Primary Lateral Ankle Ligament Reconstruction : A Systematic Review and Meta-Analysis. Kans J Med, 14 : 141-148, 2021.
P.230 掲載の参考文献
1) Rubin, G., Witten, M. : The subtalar joint and the symptom of turning over on the ankle. A new method of evaluating utilizing tomography. Am J Orthop, 4 : 16-19, 1962.
2) Tourne, Y., Besse, J. L., Mabit, C., et al. : Chronic ankle instability. Which tests to assess the lesions? Which therapeutic options? Orthop Traumatol Surg Res, 96 (4) : 433-446, 2010.
3) Aynardi, M., Pedowitz, D. I., Raikin, S. M. : Subtalar instability. Foot Ankle Clin, 20 (2) : 243-252, 2015.
4) Akiyama, K., Takakura, Y., Tomita, Y., et al. : Neurohistology of the sinus tarsi and sinus tarsi syndrome. J Orthop Sci, 4 (4) : 299-303, 1999.
5) Rein, S., Manthey, S., Zwipp, H., et al. : Distribution of sensory nerve endings around the human sinus tarsi : a cadaver study. J Anat, 224 (4) : 499-508, 2014.
6) Sarrafian, S. K., Kelikian, A. S. : Syndesmology. SARRAFIAN'S Anatomy of the Foot and Ankle. 3rd ed. Kelikian, A. S., editor, LIPPINCOTT WILLIAMS & WILKINS, 191-203, 2011.
7) Pellegrini, M. J., Glisson, R. R., Wurm, M., et al. : Systematic quantification of stabilizing effects of subtalar joint soft-tissue constraints in a novel cadaveric model. J Bone Joint Surg Am, 98 (10) : 842-848, 2016.
8) Li, S. Y., Hou, Z. D., Zhang, P., et al. : Ligament structures in the tarsal sinus and canal. Foot Ankle Int, 34 (12) : 1729-1736, 2013.
9) Kjaersgaard-Andersen, P., Wethelund, J. O., Helmig, P., et al. : The stabilizing effect of the ligamentous structures in the sinus and canalis tarsi on movements in the hindfoot. An experimental study. Am J Sports Med, 16 (5) : 512-516, 1988.
10) Tochigi, Y., Amendola, A., Rudert, M. J., et al. : The role of the interosseous talocalcaneal ligament in subtalar joint stability. Foot Ankle Int, 25 (8) : 588-596, 2004.
11) Ringleb, S. I., Dhakal, A., Anderson, C. D., et al. : Effects of lateral ligament sectioning on the stability of the ankle and subtalar joint. J Orthop Res, 29 (10) : 1459-1464, 2011.
12) Yamaguchi, R., Nimura, A., Amaha, K., et al. : Anatomy of the Tarsal Canal and Sinus in Relation to the Subtalar Joint Capsule. Foot Ankle Int, 39 (11) : 1360-1369, 2018.
13) Kato, T. : The diagnosis and treatment of instability of the subtalar joint. J Bone Joint Surg Br, 77 (3) : 400-406, 1995.
14) Pisani, G. : Chronic laxity of the subtalar joint. Orthopedics, 19 (5) : 431-437, 1996.
15) Liu, C., Jiao, C., Hu, Y., et al. : Interosseous talocalcaneal ligament reconstruction with hamstring autograft under subtalar arthroscopy : case report. Foot Ankle Int, 32 (11) : 1089-1094, 2011.
16) Jotoku, T., Kinoshita, M., Okuda, R., et al. : Anatomy of ligamentous structures in the tarsal sinus and canal. Foot Ankle Int, 27 (7) : 533-538, 2006.
17) Cahill, D. R. : The anatomy and function of the contents of the human tarsal sinus and canal. Anat Rec, 153 (1) : 1-17, 1965.
18) Weindel, S., Schmidt, R., Rammelt, S., et al. : Subtalar instability : a biomechanical cadaver study. Arch Orthop Trauma Surg, 130 (3) : 313-319, 2010.
19) Ozeki, S., Yasuda, K., Kaneda, K., et al. : Simultaneous strain measurement with determination of a zero strain reference for the medial and lateral ligaments of the ankle. Foot Ankle Int, 23 (9) : 825-832, 2002.
20) Milner, C. E., Soames, R. W. : Anatomy of the collateral ligaments of the human ankle joint. Foot Ankle Int, 19 (11) : 757-760, 1998.
21) Sarrafian, S. K., Kelikian, A. S. : Functional Anatomy of the Foot and Ankle. SARRAFIAN'S Anatomy of the Foot and Ankle. 3rd ed. Kelikian, A. S., editor, LIPPINCOTT WILLIAMS & WILKINS, 507-643, 2011.
22) Amaha, K., Nimura, A., Yamaguchi, R., et al. : Anatomic study of the medial side of the ankle base on the joint capsule : an alternative description of the deltoid and spring ligament. J Exp Orthop, 6 (1) : 2, 2019.
23) Inmann, T. V. : Joints of the ankle. 2nd ed., Stiehl, J. B., editor, Lippicott Williams & Wilkins, Philadelphia, 37, 1976.
24) Meyer, J. M., Garcia, J., Hoffmeyer, P., et al. : The subtalar sprain a roentgenographic study. Clin Orthop Relat Res, 226 : 169-173, 1988.
25) Tochigi, Y., Takahashi, K., Yamagata, M., et al. : Influence of the interosseous talocalcaneal ligament injury on stability of the ankle-subtalar joint complex-a cadaveric experimental study. Foot Ankle Int, 21 (6) : 486-491, 2000.
26) Sugimoto, K., Samoto, N., Takaoka, T., et al. : Subtalar arthrography in acute injuries of the calcaneofibular ligament. J Bone Joint Surg Br, 80 (5) : 785-790, 1998.
27) Tochigi, Y., Yoshinaga, K., Wada, Y., et al. : Acute inversion injury of the ankle : magnetic resonance imaging and clinical outcomes. Foot Ankle Int, 19 (11) : 730-734, 1998.
28) Clanton, T. O. : Instability of the subtalar joint. Orthop Clin North Am, 20 (4) : 583-592, 1989.
29) Tochigi, Y. : Effect of arch supports on ankle-subtalar complex instability : a biomechanical experimental study. Foot Ankle Int, 24 (8) : 634-639, 2003.
30) Heilman, A. E., Braly, W. G., Bishop, J. O., et al. : An anatomic study of subtalar instability. Foot Ankle, 10 (4) : 224-228, 1990.
31) Barg, A., Tochigi, Y., Amendola, A., et al. : Subtalar instability : diagnosis and treatment. Foot Ankle Int, 33 (2) : 151-160, 2012.
32) Bonnel, F., Toullec, E., Mabit, C., et al. : Chronic ankle instability : biomechanics and pathomechanics of ligaments injury and associated lesions. Orthop Traumatol Surg Res, 96 (4) : 424-432, 2010.
33) Choisne, J., Ringleb, S. I., Samaan, M. A., et al. : Influence of kinematic analysis methods on detecting ankle and subtalar joint instability. J Biomech, 45 (1) : 46-52, 2012.
34) 栃木祐樹 : 距骨下関節不安定症をどう考えるか? 足関節ねんざ症候群-足くびのねんざを正しく理解する書. 高尾昌人編, 全日本病院出版会, 160-167, 2020.
35) Khin-Myo-Hla, Ishii, T., Sakane, M., et al. : Effect of anesthesia of the sinus tarsi on peroneal reaction time in patients with functional instability of the ankle. Foot Ankle Int, 20 (9) : 554-559, 1999.
36) Konradsen, L., Ravn, J. B. : Ankle instability caused by prolonged peroneal reaction time. Acta Orthop Scand, 61 (5) : 388-390, 1990.
37) Karlsson, J., Andreasson, G. O. : The effect of external ankle support in chronic lateral ankle joint instability. An electromyographic study. Am J Sports Med, 20 (3) : 257-261, 1992.
38) Lofvenberg, R., Karrholm, J., Sundelin, G., et al. : Prolonged reaction time in patients with chronic lateral instability of the ankle. Am J Sports Med, 23 (4) : 414-417, 1995.
39) Michels, F., Matricali, G., Vereecke, E., et al. : The intrinsic subtalar ligaments have a consistent presence, location and morphology. Foot Ankle Surg, 27 (1) : 101-109, 2021.
40) Hertel, J., Denegar, C. R., Monroe, M. M., et al. : Talocrural and subtalar joint instability after lateral ankle sprain. Med Sci Sports Exwrc, 31 (11) : 1501-1508, 1999.
41) Michels, F., Clockaerts, S., Van Der Bauwhede, J., et al. : Does subtalar instability really exist? A systematic review. Foot Ankle Surg, 26 (2) : 119-127, 2020.
42) Krahenbuhl, N., Weinberg, M. W., Davidson, N. P., et al. : Currently used imaging options cannot accurately predict subtalar joint instability. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2818-2830, 2019.
43) Laurin, C. A., Ouellet, R., St-Jacques, R. : Talar and subtalar tilt : an experimental investigation. Can J Surg, 11 (3) : 270?279, 1968.
44) Ishii, T., Miyagawa, S., Fukubayashi, T., et al. : Subtalar stress radiography using forced dorsiflexion and supination. J Bone Joint Surg Br, 78 : 56-60, 1996.
45) Lee, B. H., Choi, K. H., Seo, D. Y., et al. : Diagnostic validity of alternative manual stress radiographic technique detecting subtalar instability with concomitant ankle instability. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1029-1039, 2016.
46) van Hellemondt, F. J., Louwerens, J. W., Sijbrandij, E. S., et al. : Stress radiography and stress examination of the talocrural and subtalar joint on helical computed tomography. Foot Ankle Int, 18 (8) : 482-488, 1997.
47) Sijbrandij, E. S., van Gils, A. P., van Hellemondt, F. J., et al. : Assessing the subtalar joint : the Broden view revisited. Foot Ankle Int, 22 (4) : 329-334, 2001.
48) 宇佐見則夫 : 【足関節捻挫後遺障害の病態と治療】距骨下関節不安定症の診断と手術成績. 臨整外, 37 (1) : 17-21, 2002.
49) Lee, K. B., Bai, L. B., Park, J. G., et al. : Efficacy of MRI versus arthroscopy for evaluation of sinus tarsi syndrome. Foot Ankle Int, 29 (11) : 1111-1116, 2008.
50) Park, H. J., Cha, S. D., Kim, S. S., et al. : Accuracy of MRI findings in chronic lateral ankle ligament injury : comparison with surgical findings. Clin Radiol, 67 (4) : 313-318, 2012.
51) Park, H. J., Lee, S. Y., Park, N. H., et al. : Usefulness of the oblique coronal plane in ankle MRI of the calcaneofibular ligament. Clin Radiol, 70 (4) : 416-423, 2015.
52) Kim, T. H., Moon, S. G., Jung, H. G., et al. : Subtalar instability : imaging features of subtalar ligaments on 3D isotropic ankle MRI. BMC Musculoskelet Disord, 18 (1) : 475, 2017.
53) Yoon, D. Y., Moon, S. G., Jung, H. G., et al. : Differences between subtalar instability and lateral ankle instability focusing on subtalar ligaments based on three dimensional isotropic magnetic resonance imaging. J Comput Assist Tomogr, 42 (4) : 566-573, 2018.
54) Seebauer, C. J., Bail, H. J., Rump, J. C., et al. : Ankle laxity : stress investigation under MRI control. AJR Am J Roentgenol, 201 (3) : 496-504, 2013.
55) Waldecker, U., Blatter, G. : Sonographic measurement of instability of the subtalar joint. Foot Ankle Int, 22 (1) : 42-46, 2001.
56) 青柳努, 工藤慎太郎, 小林久文ほか : 超音波診断装置を用いた距骨下関節回外可動性評価の再現性の検討. 日整外超音波会誌, 29 (1) : 46-49, 2017.
57) 青柳努, 工藤慎太郎, 小林久文ほか : 慢性足関節不安定症における距骨下関節の不安定性の評価方法. 日整外超音波会誌, 30 (1) : 176-180, 2018.
58) Zaottini, F., Picasso, R., Pistoia, F., et al. : Ultrasound Imaging Guide for Assessment of the Intrinsic Ligaments Stabilizing the Subtalar and Midtarsal Joints. Semin Musculoskelet Radiol, 24 (2) : 113-124, 2020.
59) Sugimoto, K., Takakura, Y., Samoto, N., et al. : Subtalar arthrography in recurrent instability of the ankle. Clin Orthop Relat Res, 394 : 169-176, 2002.
60) Higuchi, S., Ogawa, M., Masuda, Y., et al. : 3D-CT stress test for the assessment of CFL insufficiency. J Orthop Sci, 26 (6) : 1074-1080, 2021.
61) Krahenbuhl, N., Burssens, A., Davidson, N. P., et al. : Can Weightbearing Computed Tomography Scans Be Used to Diagnose Subtalar Joint Instability? A Cadaver Study. J Orthop Res, 37 (11) : 2457-2465, 2019.
62) Pena Fernandez, M., Hoxha, D., Chan, O., et al. : Centre of Rotation of the Human Subtalar Joint Using Weight-Bearing Clinical Computed Tomography. Sci Rep, 10 (1) : 1035, 2020.
63) Teramoto, A., Watanabe, K., Takashima, H., et al. : Subtalar joint stress imaging with tomosynthesis. Foot Ankle Spec, 7 (3) : 182-184, 2014.
64) Frey, C., Feder, K. S., DiGiovanni, C. : Arthroscopic evaluation of the subtalar joint : does sinus tarsi syndrome exist? Foot Ankle Int, 20 (3) : 185-191, 1999.
65) Lee, K. B., Bai, L. B., Song, E. K., et al. : Subtalar arthroscopy for sinus tarsi syndrome : arthroscopic findings and clinical outcomes of 33 consecutive cases. Arthroscopy, 24 (10) : 1130-1134, 2008.
66) Williams, M. M., Ferkel, R. D. : Subtalar arthroscopy : indications, technique, and results. Arthroscopy, 14 (4) : 373-381, 1998.
67) Mittlmeier, T., Rammelt, S. : Update on Subtalar Joint Instability. Foot Ankle Clin, 23 (3) : 397-413, 2018.
68) Pereira, B. S., Andrade, R., Espregueira-Mendes, J., et al. : Current Concepts on Subtalar Instability. Orthop J Sports Med, 9 (8) : 23259671211021352, 2021.
69) Schon, L. C., Clanton, T. O., Baxter, D. E. : Reconstruction for subtalar instability : a review. Foot Ankle, 11 (5) : 319-325, 1991.
70) Pisani, G., Pisani, P. C., Parino, E. : Sinus tarsi syndrome and subtalar joint instability. Clin Podiatr Med Surg, 22 (1) : 63-77, 2005.
71) 宇佐見則夫 : 距骨下関節不安定症に対する鏡視下距踵骨間靱帯再建術, 関節不安定症の手術療法. OS Now 8, メジカルビュー社, 157-161, 2000.
72) Lui, T. H. : Arthroscopic?assisted lateral ligamentous reconstruction in combined ankle and subtalar instability. Arthroscopy, 23 (5) : 554.e1-5, 2007.
73) So, E., Weber, J., Berlet, G., et al. : Surgical treatment of subtalar joint instability : safety and accuracy of a new technique in a cadaver model. J Foot Ankle Surg, 59 (1) : 38-43, 2020.
P.238 掲載の参考文献
1) Tano, A., Nimura, A., Tsutsumi, M., et al. : Anatomical study of the interosseous ligament of the tibiofibular syndesmosis : an analysis of osseous morphology and attaching interposing structures. J Bone Joint Surg Am, 103 (10) : 905-912, 2021.
2) 渡邉耕太, 寺本篤史 : 脛腓靱帯損傷. 整・災外, 56 (6) : 727-731, 2013.
3) Brosky, T., Nyland, J., Nitz, A., et al. : The ankle ligaments : consideration of syndesmotic injury and implications for rehabilitation. J Orthop Sports Phys Ther, 21 (4) : 197-205, 1995.
4) Shiwaku, K., Teramoto, A., Iba, K., et al. : The prevalence of posterior inferior tibiofibular ligament and inferior tibiofibular transverse ligament injuries in syndesmosis-injured ankles evaluated by oblique axial magnetic resonance imaging : a retrospective study. BMC Musculoskelet Disord, 23 (1) : 264, 2022.
5) Boytim, M. J., Fischer, D. A., Neumann, L. : Syndesmotic ankle sprains. Am J Sports Med, 19 (3) : 294-298, 1991.
6) Cotton, F. J. : Dislocations and Joint-Fractures. : WB Saunders & Co, Philadelphia, 535-588, 1911.
7) Hopkinson, W. J., Pierre, P. S., Ryan, J. B., et al. : Syndesmosis sprains of the ankle. Foot Ankle, 10 (6) : 325-330, 1990.
8) Harper, M. C., Keller, T. S. : A radiographic evaluation of the tibiofibular syndesmosis. Foot Ankle, 10 (3) : 156-160, 1989.
9) Shoji, H., Teramoto, A., Murahashi, Y., et al. : Syndesmotic instability can be assessed by measuring the distance between the tibia and the fibula using an ultrasound without stress : a cadaver study. BMC Musculoskelet Disord, 23 (1) : 261, 2022.
10) Hermans, J. J., Beumer, A., de Jong, T. A., et al. : Anatomy of the distal tibiofibular syndesmosis in adults : a pictorial essay with a multimodality approach. J Anat, 217 (6) : 633-645, 2010.
11) Teramoto, A., Shoji, H., Anzai, K., et al. : Tibiofibular Space Widening Assessment With a Ball-Tipped Probe in a Syndesmosis Injury Model. J Foot Ankle Surg, 59 (6) : 1215-1218, 2020.
12) Gerber, J. P., Williams, G. N., Scoville, C. R., et al. : Persistent disability associated with ankle sprains : a prospective examination of an athletic population. Foot Ankle Int, 19 (10) : 653-660, 1998.
13) Schepers, T. : To retain or remove the syndesmotic screw : a review of literature. Arch Orthop Trauma Surg, 131 (7) : 879-883, 2011.
14) Westermann, R. W., Rungprai, C., Goetz, J. E., et al. : The Effect of Suture-Button Fixation on Simulated Syndesmotic Malreduction : A Cadaveric Study. J Bone Joint Surg Am, 96 (20) : 1732-1738, 2014.
15) Shimozono, Y., Hurley, E. T., Myerson, C. L., et al. : Suture Button Versus Syndesmotic Screw for Syndesmosis Injuries A Meta-analysis of Randomized Controlled Trials. Am J Sports Med, 47 (11) : 2764-2771, 2019.
16) Teramoto, A., Suzuki, D., Kamiya, T., et al. : Comparison of different fixation methods of the suture-button implant for tibiofibular syndesmosis injuries. Am J Sports Med, 39 (10) : 2226-2232, 2011.
17) Teramoto, A., Shoji, H., Sakakibara, Y., et al. : Suture-Button Fixation and Mini-Open Anterior Inferior Tibiofibular Ligament Augmentation Using Suture Tape for Tibiofibular Syndesmosis Injuries. J Foot Ankle Surg, 57 (1) : 159-161, 2018.
18) Shoji, H., Teramoto, A., Suzuki, D., et al. : Suture-button fixation and anterior inferior tibiofibular ligament augmentation with suture-tape for syndesmosis injury : A biomechanical cadaveric study. Clin Biomech (Bristol, Avon), 60 : 121-126, 2018.
P.244 掲載の参考文献
1) Brostroem, L. : SPRAINED ANKLES. I. ANATOMIC LESIONS IN RECENT SPRAINS. Acta Chir Scand, 128 : 483-495, 1964.
2) Waterman, B. R., Belmont, P. J. Jr., Cameron, K. L., et al. : Risk factors for syndesmotic and medial ankle sprain : role of sex, sport, and level of competition. Am J Sports Med, 39 (5) : 992-998, 2011.
3) Hintermann, B., Valderrabano, V., Boss, A., et al. : Medial ankle instability : an exploratory, prospective study of fifty-two cases. Am J Sports Med, 32 (1) : 183-190, 2004.
4) Campbell, K. J., Michalski, M. P., Wilson, K. J., et al. : The ligament anatomy of the deltoid complex of the ankle : a qualitative and quantitative anatomical study. J Bone Joint Surg Am, 96 (8) : e62, 2014.
5) Amaha, K., Nimura, A., Yamaguchi, R., et al. : Anatomic study of the medial side of the ankle base on the joint capsule : an alternative description of the deltoid and spring ligament. J Exp Orthop, 6 (1) : 2, 2019.
6) Cromeens, B. P., Kirchhoff, C. A., Patterson, R. M., et al. : An attachment-based description of the medial collateral and spring ligament complexes. Foot Ankle Int, 36 (6) : 710-721, 2015.
7) Boss, A. P., Hintermann, B. : Anatomical study of the medial ankle ligament complex. Foot Ankle Int, 23 (6) : 547-553, 2002.
8) Golano, P., Vega, J., de Leeuw, P. A., et al. : Anatomy of the ankle ligaments : a pictorial essay. Knee Surg Sports Traumatol Arthrosc, 18 (5) : 557-569, 2010.
9) Milner, C. E., Soames, R. W. : Anatomy of the collateral ligaments of the human ankle joint. Foot Ankle Int, 19 (11) : 757-760, 1998.
10) Savage-Elliott, I., Murawski, C. D., Smyth, N. A., et al. : The deltoid ligament : an in-depth review of anatomy, function, and treatment strategies. Knee Surg Sports Traumatol Arthrosc, 21 (6) : 1316-1327, 2013.
11) Won, H. J., Koh, I. J., Won, H. S. : Morphological variations of the deltoid ligament of the medial ankle. Clin Anat, 29 (8) : 1059-1065, 2016.
12) Clanton, T. O., Williams, B. T., James, E. W., et al. : Radiographic Identification of the Deltoid Ligament Complex of the Medial Ankle. Am J Sports Med, 43 (11) : 2753-2762, 2015.
13) de Cesar Netto, C., Femino, J. E. : State of the Art in Treatment of Chronic Medial Ankle Instability. Foot Ankle Clin, 26 (2) : 329-344, 2021.
14) Michelson, J. D., Waldman, B. : An axially loaded model of the ankle after pronation external rotation injury. Clin Orthop Relat Res, (328) : 285-293, 1996.
15) Earll, M., Wayne, J., Brodrick, C., et al. : Contribution of the deltoid ligament to ankle joint contact characteristics : a cadaver study. Foot Ankle Int, 17 (6) : 317-324, 1996.
16) Harper, M. C. : Deltoid ligament : an anatomical evaluation of function. Foot Ankle, 8 (1) : 19-22, 1987.
17) Rasmussen, O., Kromann-Andersen, C. : Experimental ankle injuries. Analysis of the traumatology of the ankle ligaments. Acta Orthop Scand, 54 (3) : 356-362, 1983.
18) Resnick, R. B., Jahss, M. H., Choueka, J., et al. : Deltoid ligament forces after tibialis posterior tendon rupture : effects of triple arthrodesis and calcaneal displacement osteotomies. Foot Ankle Int, 16 (1) : 14-20, 1995.
19) Rasmussen, O. : Stability of the ankle joint. Analysis of the function and traumatology of the ankle ligaments. Acta Orthop Scand Suppl, 211 : 1-75, 1985.
20) Rasmussen, O., Kromann-Andersen, C., Boe, S. : Deltoid ligament. Functional analysis of the medial collateral ligamentous apparatus of the ankle joint. Acta Orthop Scand, 54 (1) : 36-44, 1983.
21) Harper, M. C. : An anatomic study of the short oblique fracture of the distal fibula and ankle stability. Foot Ankle, 4 (1) : 23-29, 1983.
22) Stormont, D. M., Morrey, B. F., An, K. N., et al. : Stability of the loaded ankle. Relation between articular restraint and primary and secondary static restraints. Am J Sports Med, 13 (5) : 295-300, 1985.
23) Wei, F., Braman, J. E., Weaver, B. T., et al. : Determination of dynamic ankle ligament strains from a computational model driven by motion analysis based kinematic data. J Biomech, 44 (15) : 2636-2641, 2011.
24) Takao, M., Ozeki, S., Oliva, X. M., et al. : Strain pattern of each ligamentous band of the superficial deltoid ligament : a cadaver study. BMC Musculoskelet Disord, 21 (1) : 289, 2020.
25) Ruiz, R., Hintermann, B. : Clinical Appearance of Medial Ankle Instability. Foot Ankle Clin, 26 (2) : 291-304, 2021.
26) DeAngelis, N. A., Eskander, M. S., French, B. G. : Does medial tenderness predict deep deltoid ligament incompetence in supination-external rotation type ankle fractures? J Orthop Trauma, 21 (4) : 244-247, 2007.
27) Stenquist, D. S., Miller, C., Velasco, B., et al. : Medial tenderness revisited : Is medial ankle tenderness predictive of instability in isolated lateral malleolus fractures? Injury, 51 (6) : 1392-1396, 2020.
28) Egol, K. A., Amirtharajah, M., Tejwani, N. C., et al. : Ankle stress test for predicting the need for surgical fixation of isolated fibular fractures. J Bone Joint Surg Am, 86 (11) : 2393-2398, 2004.
29) Michelson, J. D., Varner, K. E., Checcone, M. : Diagnosing deltoid injury in ankle fractures : the gravity stress view. Clin Orthop Relat Res, (387) : 178-182, 2001.
30) Schock, H. J., Pinzur, M., Manion, L., et al. : The use of gravity or manual-stress radiographs in the assessment of supination-external rotation fractures of the ankle. J Bone Joint Surg Br, 89 (8) : 1055-1059, 2007.
31) Leith, J. M., McConkey, J. P., Li, D., et al. : Valgus stress radiography in normal ankles. Foot Ankle Int, 18 (10) : 654-657, 1997.
32) McConnell, T., Creevy, W., Tornetta, P.3rd. : Stress examination of supination external rotation-type fibular fractures. J Bone Joint Surg Am, 86 (10) : 2171-2178, 2004.
33) Park, S. S., Kubiak, E. N., Egol, K. A., et al. : Stress radiographs after ankle fracture : the effect of ankle position and deltoid ligament status on medial clear space measurements. J Orthop Trauma, 20 (1) : 11-18, 2006.
34) van den Bekerom, M. P., Mutsaerts, E. L., van Dijk, C. N. : Evaluation of the integrity of the deltoid ligament in supination external rotation ankle fractures : a systematic review of the literature. Arch Orthop Trauma Surg, 129 (2) : 227-235, 2009.
35) Muhle, C., Frank, L. R., Rand, T., et al. : Collateral ligaments of the ankle : high-resolution MR imaging with a local gradient coil and anatomic correlation in cadavers. Radiographics, 19 (3) : 673-683, 1999.
36) Schairer, W. W., Nwachukwu, B. U., Dare, D. M., et al. : Arthroscopically Assisted Open Reduction-Internal Fixation of Ankle Fractures : Significance of the Arthroscopic Ankle Drive-through Sign. Arthrosc Tech, 5 (2) : e407-412, 2016.
37) Hintermann, B., Boss, A., Schafer, D. : Arthroscopic findings in patients with chronic ankle instability. Am J Sports Med, 30 (3) : 402-409, 2002.
38) Baird, R. A., Jackson, S. T. : Fractures of the distal part of the fibula with associated disruption of the deltoid ligament. Treatment without repair of the deltoid ligament. J Bone Joint Surg Am, 69 (9) : 1346-1352, 1987.
39) Stromsoe, K., Hoqevold, H. E., Skjeldal, S., et al. : The repair of a ruptured deltoid ligament is not necessary in ankle fractures. J Bone Joint Surg Br, 77 (6) : 920-921, 1995.
40) Sun, X., Li, T., Sun, Z., et al. : Does routinely repairing deltoid ligament injuries in type B ankle joint fractures influence long term outcomes? Injury, 49 (12) : 2312-2317, 2018.
41) Woo, S. H., Bae, S. Y., Chung, H. J. : Short-Term Results of a Ruptured Deltoid Ligament Repair During an Acute Ankle Fracture Fixation. Foot Ankle Int, 39 (1) : 35-45, 2018.
42) Zhao, H. M., Lu, J., Zhang, F., et al. : Surgical treatment of ankle fracture with or without deltoid ligament repair : a comparative study. BMC Musculoskelet Disord, 18 (1) : 543, 2017.
43) Guo, W., Lin, W., Chen, W., et al. : Comparison of deltoid ligament repair and non-repair in acute ankle fracture : A meta-analysis of comparative studies. PLoS One, 16 (11) : e0258785, 2021.
44) Salameh, M., Alhammoud, A., Alkhatib, N., et al. : Outcome of primary deltoid ligament repair in acute ankle fractures : a meta-analysis of comparative studies. Int Orthop, 44 (2) : 341-347, 2020.
45) Slullitel, G., Calvi, J. P. : Current Concepts in Treatment of Acute Deltoid Instability. Foot Ankle Clin, 26 (2) : 315-327, 2021.
46) Ribbans, W. J., Garde, A. : Tibialis posterior tendon and deltoid and spring ligament injuries in the elite athlete. Foot Ankle Clin, 18 (2) : 255-291, 2013.
47) Pisanu, F., Ortu, S., Corda, M., et al. : Deltoid ligament reconstruction with autologous gracilis tendon in chronic medial ankle instability after ankle fracture surgery : A case report. Foot (Edinb), 49 : 101714, 2021.
48) Boyer, M. I., Bowen, V., Weiler, P. : Reconstruction of a severe grinding injury to the medial malleolus and the deltoid ligament of the ankle using a free plantaris tendon graft and vascularized gracilis free muscle transfer : case report. J Trauma, 36 (3) : 454-457, 1994.
49) Deland, J. T., de Asla, R. J., Segal, A. : Reconstruction of the chronically failed deltoid ligament : a new technique. Foot Ankle Int, 25 (11) : 795-799, 2004.
50) Rubin, G., Morris, W. : The Talar-Tilt Angle and the Fibular Collateral Ligaments : A Method for the Determination of Talar Tilt. J Bone Joint Surg Am, 42 (2) : 311-326, 1960.
51) Joy, G., Patzakis, M. J., Harvey, J. P. Jr. : Precise evaluation of the reduction of severe ankle fractures. J Bone Joint Surg Am, 56 (5) : 979-993, 1974.
P.253 掲載の参考文献
1) van Dijk, C. N., Scholten, P. E., Krips, R. : A 2-portal endoscopic approach for diagnosis and treatment of posterior ankle pathology. Arthroscopy, 16 (8) : 871-876, 2000.
2) van Dijk, C. N., van Bergen, C. J. : Advancements in ankle arthroscopy. J Am Acad Orthop Surg, 16 (11) : 635-646, 2008.
3) Coetzee, J. C., Seybold, J. D., Moser, B. R., et al. : Management of Posterior Impingement in the Ankle in Athletes and Dancers. Foot Ankle Int, 36 (8) : 988-994, 2015.
4) Nault, M. L., Kocher, M. S., Micheli, L. J. : Os trigonum syndrome. J Am Acad Orthop Surg, 22 (9) : 545-553, 2014.
5) Sofka, C. M. : Posterior ankle impingement : clarification and confirmation of the pathoanatomy. HSS J, 6 (1) : 99-101, 2010.
6) Wiegerinck, J. I., Vroemen, J. C., van Dongen, T. H., et al. : The posterior impingement view : an alternative conventional projection to detect bony posterior ankle impingement. Arthroscopy, 30 (10) : 1311-1316, 2014.
7) Hayashi, D., Roemer, F. W., D'Hooghe, P., et al. : Posterior ankle impingement in athletes : Pathogenesis, imaging features and differential diagnoses. Eur J Radiol, 84 (11) : 2231-2241, 2015.
8) Hamilton, W. G., Geppert, M. J., Thompson, F. M. : Pain in the posterior aspect of the ankle in dancers. Differential diagnosis and operative treatment. J Bone Joint Surg Am, 78 (10) : 1491-1500, 1996.
9) Zwiers, R., Wiegerinck, J. I., Murawski, C. D., et al. : Surgical treatment for posterior ankle impingement. Arthroscopy, 29 : 1263-1270, 2013.
10) Maquirriain, J. : Posterior ankle impingement syndrome. J Am Acad Orthop Surg, 13 (6) : 365-371, 2005.
11) Smyth, N. A., Murawski, C. D., Levine, D. S., et al. : Hindfoot arthroscopic surgery for posterior ankle impingement : a systematic surgical approach and case series. Am J Sports Med, 41 (8) : 1869-1876, 2013.
12) Smyth, N. A., Zwiers, R., Wiegerinck, J. I., et al. : Posterior hindfoot arthroscopy : a review. Am J Sports Med, 42 : 225-234, 2014.
13) Wiegnerinck, J. I., Kerkhoffs, G. M. M., Struijs, P. A. A., et al. : The posterior impingement-view : An alternative conventional projection to detect bony posterior ankle impingement. Arthroscopy, 30 (10) : 1311-1316, 2014.
14) Burghardt, A. J., Link, T. M., Majumdar, S. : High-resolution computed tomography for clinical imaging of bone microarchitecture. Clin Orthop Relat Res, 469 (8) : 2179-2193, 2011.
15) van Dijk, N. C. : Anterior and posterior ankle impingement. Foot Ankle Clin, 11 (3) : 663-683, 2006.
16) Best, A., Giza, E., Linklater, J., et al. : Posterior impingement of the ankle caused by anomalous muscles. A report of four cases. J Bone Joint Surg Am, 87 (9) : 2075-2079, 2005.
17) Ribbans, W. J., Ribbans, H. A., Cruickshank, J. A., et al. : The management of posterior ankle impingement syndrome in sport : a review. Foot Ankle Surg, 21 (1) : 1-10, 2015.
18) Roche, A. J., Calder, J. D., Lloyd Williams, R. : Posterior ankle impingement in dancers and athletes. Foot Ankle Clin, 18 (2) : 301-318, 2013.
19) Hedrick, M. R., McBryde, A. M. : Posterior ankle impingement. Foot Ankle Int. 15 (1) : 2-8, 1994.
20) Marumoto, J. M., Ferkel, R. D. : Arthroscopic excision of the os trigonum : a new technique with preliminar y clinical results. Foot Ankle Int, 18 (12) : 777-784, 1997.
21) Allegra, F., Maffulli, N., Cerza, F., et al. : Postero-medial approach procedure in the supine position for one-step anterior and posterior ankle arthroscopy. Sports Med Arthrosc. 17 (3) : 185-189, 2009.
22) Sugimoto, K., Isomoto, S., Samoto, N., et al. : Arthroscopic Treatment of Posterior Ankle Impingement Syndrome : Mid-Term Clinical Results and a Learning Curve. Arthrosc Sports Med Rehabil, 3 (4) : e1077-e1086, 2021.
23) Ferkel, R. D. : In which position do we perform arthroscopy of the hindfoot-supine or prone? Commentary on an article by Florian Nickisch, MD, et al. : "Postoperative complications of posterior ankle and hindfoot arthroscopy". J Bone Joint Surg Am, 94 (5) : e33, 2012.
24) Miyamoto, W., Takao, M., Matsui, K., et al. : Simultaneous ankle arthroscopy and hindfoot endoscopy for combined anterior and posterior ankle impingement syndrome in professional athletes. J Orthop Sci, 20 (4) : 642-648, 2015.
25) Scholten, P. E., Sierevelt, I. N., van Dijk, C. N. : Hindfoot endoscopy for posterior ankle impingement. J Bone Joint Surg Am, 90 (12) : 2665-2672, 2008.
26) van Dijk, C. N., de Leeuw, P. A., Scholten, P. E. : Hindfoot endoscopy for posterior ankle impingement. Surgical technique. J Bone Joint Surg Am, 91 (Suppl 2) : 287-298, 2009.
27) Willits, K., Sonneveld, H., Amendola, A., et al. : Outcome of posterior ankle arthroscopy for hindfoot impingement. Arthroscopy, 24 (2) : 196-202, 2008.
28) Jerosch, J., Fadel, M. : Endoscopic resection of a symptomatic os trigonum. Knee Surg Sports Traumatol Arthrosc, 14 (11) : 1188-1193, 2006.
29) Tey, M., Monllau, J. C., Centenera, J. M., et al. : Benefits of arthroscopic tuberculoplasty in posterior ankle impingement syndrome. Knee Surg Sports Traumatol Arthrosc, 15 (10) : 1235-1239, 2007.
30) Horibe, S., Kita, K., Natsu-ume, T., et al. : A novel technique of arthroscopic excision of a symptomatic os trigonum. Arthroscopy, 24 (1) : 121.e1-121.e4, 2008.
31) Calder, J. D., Sexton, S. A., Pearce, C. J. : Return to training and playing after posterior ankle arthroscopy for posterior impingement in elite professional soccer. Am J Sports Med, 38 (1) : 120-124, 2010.
32) Noguchi, H., Ishii, Y., Takeda, M., et al. : Arthroscopic excision of posterior ankle bony impingement for early return to the field : short-term results. Foot Ankle Int, 31 (5) : 398-403, 2010.
33) Galla, M., Lobenhoffer, P. : Technique and results of arthroscopic treatment of posterior ankle impingement. Foot Ankle Surg, 17 (2) : 79-84, 2011.
34) Ogut, T., Ayhan, E., Irgit, K., et al. : Endoscopic treatment of posterior ankle pain. Knee Surg Sports Traumatol Arthrosc, 19 (8) : 1355-1361, 2011.
35) Nickisch, F., Barg, A., Saltzman, C. L., et al. : Postoperative complications of posterior ankle and hindfoot arthroscopy. J Bone Joint Surg Am, 94 (5) : 439-446, 2012.
36) Lopez Valerio, V., Seijas, R., Alvarez, P., et al. : Endoscopic repair of posterior ankle impingement syndrome due to os trigonum in soccer players. Foot Ankle Int, 36 (1) : 70-74, 2015.
37) Dinato, M. C., Luques, I. U., Freitas Mde, F., et al. : Endoscopic treatment of the posterior ankle impingement syndrome on amateur and professional athletes. Knee Surg Sports Traumatol Arthrosc, 24 (4) : 1396-1401, 2016.
P.260 掲載の参考文献
1) Robinson, P. : Impingement syndrome of the ankle. Eur Radiol, 17 (12) : 3056-3065, 2007.
2) Morris, L. H. : Report of cases of athlete's ankle. J Bone Joint Surg, 25 : 220, 1943.
3) O'Donoghue, D. H. : Impingement exostosis of the talus and tibia. J Bone Joint Surg Am, 39 (4) : 835-852, 1957.
4) Tol, J. L., van Dijk, C. N. : Etiology of the anterior ankle impingement syndrome : a descriptive anatomical study. Foot Ankle Int, 25 (6) : 382-386, 2004.
5) 松井智裕 : 足関節前方インピンジメント症候群 (衝突性外骨腫) の成因についての一考察. 整形外科, 63 (4) : 354-357, 2012.
6) Ferkel, R. D., Karzel, R. P., Del Pizzo, W., et al. : Arthroscopic treatment of anterolateral impingement of the ankle. Am J Sports Med, 19 (5) : 440-446, 1991.
7) Bassett, F. H. 3rd., Gates, H. S. 3rd., Billys, J. B., et al. : Talar impingement by the anteroinferior tibiofibular ligament. A cause of chronic pain in the ankle after inversion sprain. J Bone Joint Surg Am, 72 (1) : 55-59, 1990.
8) Akseki, D., Pinar, H., Yaldiz, K., et al. : The anterior inferior tibiofibular ligament and talar impingement : a cadaveric study. Knee Surg Sports Traumatol Arthrosc, 10 (5) : 321-326, 2002.
9) Nikolopoulos, C. E., Tsirikos, A. I., Sourmelis, S., et al. : The accessory anteroinferior tibiofibular ligament as a cause of talar impingement : a cadaveric study. Am J Sports Med, 32 (2) : 389-395, 2004.
10) Ray, R. G., Kriz, B. M. : Anterior inferior tibiofibular ligament. Variations and relationship to the talus. J Am Podiatr Med Assoc, 81 (9) : 479-485, 1991.
11) Hawkins, R. B. : Arthroscopic treatment of sports-related anterior osteophyte in the ankle. Foot Ankle, 9 (2) : 87-90, 1988.
P.266 掲載の参考文献
1) O'Connor, D. : Sinus tarsi syndrome. A Clinical entity. J Bone Joint Surg Am, 40 : 720, 1958.
2) Taillard, W., Meyer, J. M., Garcia, J., et al. : The sinus tarsi syndrome. Int Orthop, 5 (2) : 117-130, 1981.
3) Shear, M. S., Baitch, S. P., Shear, D. B. : Sinus tarsi syndrome : The importance of biomechanically-based evaluation and treatment. Arch Phys Med Rehabil, 74 (7) : 777-781, 1993.
4) Arshad, Z., Bhatia, M. : Current concepts in sinus tarsi syndrome : A scoping review. Foot Ankle Surg, 27 (6) : 615-621, 2021.
5) Yamaguchi, R., Nimura, A., Amaha, K., et al. : Anatomy of the Tarsal Canal and Sinus in Relation to the Subtalar Joint Capsule. Foot Ankle Int, 39 (11) : 1360-1369, 2018.
6) Schwarzenbach, B., Dora, C., Lang, A., et al. : Blood vessels of the sinus tarsi and the sinus tarsi syndrome. Clin Anat, 10 (3) : 173-182, 1997.
7) Akiyama, K., Takakura, Y., Tomita, Y., et al. : Neurohistology of the sinus tarsi and sinus tarsi syndrome. J Orthop Sci, 4 (4) : 299-303, 1999.
8) Rein, S., Manthey, S., Zwipp, H., et al. : Distribution of sensory nerve endings around the human sinus tarsi : A cadaver study. J Anat, 224 (4) : 499-508, 2014.
9) Lee, K. B., Bai, L. B., Song, E. K., et al. : Subtalar Arthroscopy for Sinus Tarsi Syndrome : Arthroscopic Findings and Clinical Outcomes of 33 Consecutive Cases. Arthroscopy, 24 (10) : 1130-1134, 2008.
10) Mansur, N. S. B., Baumfeld, T. S., Lemos, A. V. K. C., et al. : Subtar arthroscopic debridment for the treatment of sinus tarsi syndrome : Case series. Rev Assoc Med Bras, 65 (3) : 370-374, 2019.
11) Mittlmeier, T., Wichelhaus, A. : Subtalar joint instability. Eur J Trauma Emerg Surg, 41 (6) : 623-629, 2015.
12) Frey, C., Feder, K. S., DiGiovanni, C. : Arthroscopic evaluation of the subtalar joint : Does sinus tarsi syndrome exist? Foot Ankle Int, 20 (3) : 185-191, 1999.
13) Oloff, L. M., Schulhofer, S. D., Bocko, A. P. : Subtalar joint arthroscopy for sinus tarsi syndrome : A review of 29 cases. J Foot Ankle Surg, 40 (3) : 152-157, 2001.
14) Keefe, D. T., Haddad, S. L. : Subtalar instability. Etiology, diagnosis, and management. Foot Ankle Clin, 7 (3) : 577-609, 2002.
15) Hubbard, T. J., Hertel, J. : Mechanical contributions to chronic lateral ankle instability. Sports Med, 36 (3) : 263-277, 2006.
16) Brown, J. E. : The sinus tarsi syndrome. Clin Orthop, 18 : 231-233, 1960.
17) Li, S. K., Song, Y. J., Li, H., et al. : Arthroscopic treatment combined with the ankle stabilization procedure is effective for sinus tarsi syndrome in patients with chronic ankle instability. Knee Surg Sport Traumatol Arthrosc, 26 (10) : 3135-3139, 2018.
18) Kjarsgaard-Andersen, P., Wethelund, J. O., Helmig, P., et al. : The stabilizing effect of the ligamentous structures in the sinus and canalis tarsi on movements in the hindfoot : An experimental study. Am J Sports Med, 16 (5) : 512-516, 1988.
19) Anderson, M. W., Kaplan, P. A., Dussault, R. G., et al. : Association of posterior tibial tendon abnormalities with the sinus tarsi syndrome on MR imaging. Skeletal Radiology, 29 (9) : 514-519, 2000.
20) Pieters, R. S., Galvin, J. : The rare presentation of sinus tarsi syndrome secondary to metastasis in a patient with endometrial carcinoma. Radiol Case Rep, 6 (2) : 414, 2011.
21) Kelikian, A. S., Sarrafian, S. K. : Sarrafian's Anatomy of the Foot and Ankle : Descriptive, Topographical, Functional. 3rd ed, Wolters Kluwer Health/Lippincott Williams & Wilkins, Philadelphia, 53, 2011.
22) Martus, J. E., Femino, J. E., Caird, M. S., et al. : Accessory anterolateral talar facet as an etiology of painful talocalcaneal impingement in the rigid flatfoot : a new diagnosis. Iowa Orthop J, 28 : 1-8, 2008.
23) Niki, H. Hirano, T. Akiyama, Y. et al. : Accessory talar facet impingement in pathologic conditions of the peritalar region in adults. Foot Ankle Int, 35 (10) : 1006-1014, 2014.
24) Niki, H., Aoki, H., Hirano, T., et al. : Peroneal spastic flatfoot in adolescents with accessory talar facet impingement : A preliminary report. J Pediatr Orthop B, 24 (4) : 354-361, 2015.
25) Kurashige, T. : Accessory anterolateral talar facet impingement with tibialis spastic varus foot. SAGE Open Med Case Rep, 5 : 2050313X1774521, 2017.
26) Hertel, J., Denegar, C. R., Monroe, M. M., et al. : Talocrural and subtalar joint instability after lateral ankle sprain, Med Sci Sports Exerc, 31 (11) : 1501-1508, 1999.
27) Helgeson, K. : Examination and intervention for sinus tarsi syndrome, N Am J Sports Phys Ther, 4 (1) : 29-37, 2009.
28) Thermann, H., Zwipp, H., Tscherne, H. : Treatment algorithm of chronic ankle and subtalar instability. Foot Ankle Int, 18 (3) : 163-169, 1997.
29) Michels, F., Clockaerts, S., Van Der Bauwhede, J., et al. : Does subtalar instability really exist? A systematic review. Foot Ankle Surg, 26 (2) : 119-127, 2020.
30) Kato, T. : The diagnosis and treatment of instability of the subtalar joint. J Bone Joint Surg Br, 77 (3) : 400-406, 1995.
31) Ishii, T., Miyagawa, S., Fukubayashi, T., et al. : Subtalar stress radiography using forced dorsiflexion and supination. J Bone Joint Surg Br, 78 (1) : 56-60, 1996.
32) Lee, B. H., Choi, K. H., Seo, D. Y., et al. : Diagnostic validity of alternative manual stress radiographic technique detecting subtalar instability with concomitant ankle instability. Knee Surg Sport Traumatol Arthrosc, 24 (4) : 1029-1039, 2016.
33) Mahato, A., Mukherjee, P. B., Jha, D. K., et al. : Sinus tarsi syndrome : Diagnosed on 99mTc-MDP bone SPECT/CT. Asia Ocean J Nucl Med Biol, 8 (2) : 153-156, 2020.
34) Klein, A., Spreitzer, M. : MRI of the Sinus Tarsi and Canal : normal anatomy, pathologic findings, and features of the sinus tarsi syndrome. Radiology, 186 (1) : 233-240, 1993.
35) Lee, K. B., Bai, L. B., Park, J. G., et al. : Efficacy of MRI versus arthroscopy for evaluation of sinus tarsi syndrome. Foot Ankle Int, 29 (11) : 1111-1116, 2008.
36) Lektrakul, N., Chung, C. B., Lai, Y. M., et al. : Tarsal sinus : Arthrographic, MR imaging, MR arthrographic, and pathologic findings in cadavers and retrospective study data in patients with sinus tarsi syndrome. Radiology, 219 (3) : 802-810, 2001.
37) Song, W. T., Lee, J., Lee, J. H., et al. : A high rate of talocalcaneal interosseous ligament tears was found in chronic lateral ankle instability with sinus tarsi pain. Knee Surg Sport Traumatol Arthrosc, 29 (11) : 3543-3550, 2021.
38) Meyer, J. M., Lagier, R. : Post-traumatic sinus tarsi syndrome : An anatomical and radiological study. Acta Orthop Scand, 48 (1) : 121-128, 1977.
39) Achong, D. M. : Unsuspected Accessory Ossicle in Possible Sinus Tarsi Syndrome : The Value of Bone SPECT/CT. Clin Nucl Med, 45 (4) : e215-216, 2020.
40) Usmani, S., Al Huda, F. A., Al Kandari, F. : Three-phase 99mTc MDP bone scintigraphy and SPECT-CT in sinus tarsi syndrome. Clin Nucl Med, 41 (1) : e208-210, 2016.
41) Kinoshita, M., Okuda, R., Yasuda, T., et al. : Serial casting for recalcitrant peroneal spastic flatfoot with sinus tarsi syndrome. J Orthop Sci, 10 (5) : 550-554, 2005.
42) Yamashita, M. H. : Evaluation and selection of shoe wear and orthoses for the runner. Phys Med Rehabil Clin N Am, 16 (3) : 801-829, 2005.
43) Delahunt, E., Monaghan, K., Caulfield, B. : Altered neuromuscular control and ankle joint kinematics during walking in subjects with functional instability of the ankle joint. Am J Sports Med, 34 (12) : 1970-1976, 2006.
44) Schon, L. C., Clanton, T. O., Baxter, D. E. : Reconstruction for subtalar instability : A review. Foot Ankle, 11 (5) : 319-325, 1991.
45) Pisani, G., Pisani, P. C., Parino, E. : Sinus tarsi syndrome and subtalar joint instability. Clin Podiatr Med Surg, 22 (1) : 63-77, 2005.
46) Mann, R. A., Coughlin, M. J. : Surgery of the foot and ankle. 7th ed. Mosby, St. Louis, 1154, 1999.
47) Solheim, L. F., Denstad, T. F., Roaas, A. : Chronic lateral instability of the ankle : Method of reconstruction using the achilles tendon. Acta Orthop Scand, 51 (1) : 193-196, 1980.
48) Can, X., Mingqing, L., Chenggong, W., et al : Biomechanical comparison of tenodesis reconstruction for subtalar instability : A finite element analysis. BMC Musculoskelet Disord, 21 (1) : 669, 2020.
49) Mann, R. A., Beaman, D. N., Horton, G. A. : Isolated subtalar arthrodesis. Foot Ankle Int, 19 (8) : 511-519, 1998.
50) Grimm, P. D., Irwin, T. A., Jones, C. P. : Return to Physical Activity after Isolated Subtalar Arthrodesis. Foot Ankle Orthop, 7 (1) : 2021, 2022.
51) Diezi, C., Favre, P., Vienne, P. : Primary isolated subtalar arthrodesis : Outcome after 2 to 5 years follow-up. Foot Ankle Int, 29 (12) : 1195-1202, 2008.
52) Joveniaux, P., Harisboure, A., Ohl, X., et al. : Long-term results of in situ subtalar arthrodesis. Int Orthop, 34 (8) : 1199-1205, 2010.
53) Yang, C., Huang, Q., Cao, Y., et al. : Staged surgical management of sinus tarsi syndrome : Our experience of 273 cases. Ann Palliat Med, 10 (8) : 8909-8918, 2021.

IV章 各論 < 足部 >

P.278 掲載の参考文献
1) 星野裕信 : 骨端症. 小児診療, 78 : 453-457, 2015.
2) Sever, J. W. : Apophysitis of the Os Calcis. NY Med J, 95 : 1025-1029, 1912.
3) 木下光雄, 安田稔人ほか : 足部の骨端症. 関節外科, 22 : 484-492, 2003.
4) Volpon, J. B., Filho, G. C. : Calcaneal apophysitis : a quantitative radiographic evaluation of the secondary ossification center. Arch Orthop Trauma Surg, 122 (6) : 338-341, 2002.
5) 長谷川惇 : 足部の骨端症および副骨 (分離症) 障害. 関節外科, 28 (7) : 791-798, 2009.
6) Ramponi, D. R., Baker, C. : Sever's Disease (Calcaneal Apophysitis). Adv Emerg Nurs J, 41 (1) : 10-14, 2019.
7) Madden, C. C., Mellion, M. B. : Sever's disease and other causes of heel pain in adolescents. Am Fam Physician, 54 (6) : 1995-2000, 1996.
8) Belikan, P., Farber, L. C., Abel, F., et al. : Incidence of calcaneal apophysitis (Sever's disease) and return-to-play in adolescent athletes of a German youth soccer academy : a retrospective study of 10 years. J Orthop Surg Res, 17 (1) : 83, 2022. doi : 10.1186/s13018-022-02979-9
9) 浅井宜樹 : 足部の骨端症. 関節外科, 40 (1) : 96-101, 2021.
10) James, A. M., Williams, C. M., Haines, T. P. : "Effectiveness of interventions in reducing pain and maintaining physical activity in children and adolescents with calcaneal apophysitis (Sever's disease) : a systematic review". J Foot Ankle Res, 6 (1) : 16, 2013. doi : 10.1186/1757-1146-6-16
11) Iselin, H. : Wachstumsbeschwerden zur Zeit der knochem Entwicklung der Tubersositas metatarsi quinti. Deutsche Zeitschrift Chir, 117 : 529-535, 1912.
12) Lehman, R. C., Gregg JR, et al. : Iselin's disease. Am J Sports Med. 14 (6) : 494-496, 1986.
13) 豊田章 : 中足骨に関する研究. 日医大誌, 17 : 368-387, 1950.
14) Wenzel, G. : Anatomische Notizen. Virchow's Arch, 99 : 460-471, 1885.
15) Cuveland, E. : Die apophyse des Metatarsale V und Os Vesalianum, Fortschr. Rontgenstr. Mit Rontgenpraxis, 82 (2) : 251-257, 1955.
16) 富沢仙一, 八子宏ほか : 第5中足骨粗面部骨端症 (Iselin病) の9症例. 日足外会誌, 9 : 12-14, 1981.
17) 横田昌幸, 原山国秀, 松本英孝ほか : 第5中足骨粗面部骨端症 (Iselin病) の3例. 関東整災誌, 12 (1) : 86-90, 1981.
18) 掛川晃, 田中矢, 鈴木康之ほか : 第5中足骨近位部骨折に係る解剖学的考察. 日整外スポーツ医会誌, 34 (2) : 80-85, 2014.
19) 大西純二, 田岡博明ほか : 第5中足骨粗面部骨端症およびその遺残障害. 別冊整形外科, 69 : 103-107, 2016.
20) Dameron, T. B. Jr. : Fractures and anatomical variations of the proximal portion of the fifth metatarsal. J Bone Joint Surg, 57 (6) : 788-792, 1975.
21) 藤原由利夫 : 第5中足骨結節部アポヒゼオパチーの症例. 整形外科, 11 (11) : 815-817, 1960.
22) Schwartz, B., Jay, R. M., Schoenhaus, H. D. : Apophysitis of the fifth metatarsal base. Iselin's disease. J Am Podiatr Med Assoc, 81 (3) : 128-130, 1991.
23) Sylvester, J. E., Hennrikus, W. I. : Treatment outcomes of adolescents with Iselin's apophysitis. J Pediatr Orthop, 24 (4) : 362-365, 2015.
24) Ralph, B. G., Barrett, G., DiDomenico, L. A. : Iselin's disease : A case presentation of nonunion and review of the differential diagnosis. J Foot Ankle Surg, 38 (6) : 409-416, 1999.
25) Canale, S. T., William, K. D. : Iselin's disease. J Pediatr Orthop, 12 (1) : 90-93, 1992.
26) 金田和也, 原藤健吾 : 第5中足骨粗面部骨端症 (Iselin病) に対して中空海綿骨スクリューを用いて観血的治療を行った1例. 整形外科, 65 : 538-541, 2014.
27) 若本諒, 塚田晴彦, 山崎義人ほか : ラグビー選手に生じた第5中足骨粗面部骨端症 (Iselin病) の1例. 青森スポ研誌, 28 : 11-15, 2019.
28) 田中正栄, 大森豪, 古賀良生ほか : 第5中足骨粗面部骨端症と遺残障害の検討. スポーツ傷害, 17 : 5-7, 2012.
29) 杉浦保夫, 田島宝, 杉浦 勲ほか : 静岡学童集団における手部・足部の骨格変異のレ線学的研究. 人遺誌, 7 (2) : 67-77, 1962.
30) 杉浦保夫, 中沢修 : 手部・足部の骨格変異. 骨年齢-骨格発育のX線診断. 中外医学社, 東京, 122-126, 1968.
31) 熊澤雅樹, 横江清司, 亀山泰 : 成長期母趾基節骨骨端症の検討. 東海スポーツ傷害研会誌, 32 : 20-23, 2014.
32) 今村格, 北純ほか : 痛みを伴い分節する母趾基節骨骨端核の治療経験. 日足外会誌, 33 (1) : 122-126, 2012.
33) Muffulli, N. : Epiphyseal injuries of the proximal phalanx of the hallux. Clinical J Sports Med, 11 (2) : 121-123, 2001.
34) Shiraishi, M, Mizuta, H., Kubota, K., et al. : Stress fracture of the proximal phalanx of the great toe. Foot Ankle Int, 14 (1) : 28-34, 1993.
35) 横江清司 : 第1足指基節骨疲労骨折の2例. 臨床スポーツ医学, 2 : 163-165, 1985.
36) 桜田卓也, 宇佐美則夫, 井口 傑ほか : 母趾基節骨疲労骨折の検討. 東日本臨整会誌, 6 : 111-114, 1994.
37) Buch, B. D., Myerson, M. S. : Salter-Harris type IV epiphyseal fracture of the proximal phalanx of the great toe : A case report. Foot Ankle, 16 (4) : 216-219, 1995.
38) 長谷川惇 : 足部の骨端症. 関節外科, 16 (6) : 722-728, 1997.
39) Powell, H. D. W. : Extra centre of ossification for the medial malleolus in children. J Bone Joint Surg, 43-B : 107-113, 1961.
40) Bircher, E. : Neue Falle von Varietaten der Handwurezel und des Fussgelenles. a) Os Trigonum traumaticum? b) Os Subtibiale. Fortscher Roentgenstrahlen, 26 : 85-93, 1918.
41) Leimbach, G. : Beitrage zur Kenntnis der Inkonstanten Skeletemente des Tarsus. (Akzessorische Fuswurzelknochen). Arch Orthop Unfall-Chir, 38 : 431-448, 1937.
42) Arho, A. O. : Raajojen ylilukuiset luut rontgenkuvissa. Duodecim, 56 : 399-410, 1940.
43) 鶴田登代志, 塩川靖夫, 加藤明ほか : 足部過剰骨のX線学的研究. 日整会誌, 55 (4) : 357-370, 1981.
44) Coughlin, M. J., Saltzman, C. L., et al. : Mann's Surgery of the Foot and Ankle. Elsevier Saunders, Philadelphia, 534-535, 2014.
45) Coral, A. : The radiology of skeletal elements in the subtibial region : incidence and significance. Skeletal Radiol, 16 (4) : 298-303, 1987.
46) 滝正徳, 田中健太郎ほか : アスリートの足関節内果二次骨化障害に対する骨接合術の経験. 日足外会誌, 40 (1) : 169-171, 2019.
47) Ishii, T., Miyagawa, S., Hayashi, K. : Traction apophysitis of the medial malleolus. J Bone Joint Surg, 76 (5) : 802-806, 1994.
48) Ogden, J. A., Lee, J. : Accessory ossification patterns and injuries of the malleoli. J Pediatr Orthop, 10 : 306-316, 1990.
49) Coral, A. : Os subtibiale mistaken for a recent fracture. Br Med J, 292 (6535) : 15571-1572, 1986.
50) 三上将, 長汐亮, 松本修ほか : サッカー選手に認められた足関節内果偽関節様症例の検討-足関節内果副核癒合障害と推測された5例について-. 臨スポーツ医, 13 (5) : 587-591, 1996.
51) 夏目由美子, 田中康仁ほか : 足関節内果副核障害の2例. 整形外科, 46 : 77-80, 1995.
52) 米田岳史, 山下正道ほか : スポーツ選手に見られたos subtibiale障害の治療経験. 日足外会誌, 18 : 198-203, 1997.
53) Shinohara, Y., Tanaka, Y., Yokoi, K., et al. : Arthroscopic resection of symptomatic ossicle of the medial malleolus : A case report. J Foot Ankle Surg, 55 (6) : 1302-1306, 2016.
54) Freiberg, A. H. : Infarction of the second metatarsal bone, a typical injury. Surg Gyn Ob, 19 : 163-191, 1914.
55) Sarrafian, S. K. : Anatomy of the Foot and Ankle : Descriptive, Anatomical and Functional, 2nd ed, JB Lippincott, Philadelphia, 79-85, 1993.
56) Katcherian, D. A. : Treatment of Freiberg's disease. Orthop Clin North Am, 25 (1) : 69-81, 1994.
57) 黒川紘章, 田中康仁 : 足関節・足部のスポーツ障害の診断と治療. 臨スポーツ医, 32 (4) : 398-403, 2015.
58) Wax, A., Leland, R. : Freiberg disease and avascular necrosis of the metatarsal heads. Foot Ankle Clin, 24 (1) : 69-82, 2019.
59) Carmont, M. R., Rees, R. J., Blundell, C. M., et al. : Current Concepts Review : Freiberg's Disease. Foot Ankle Int, 30 (2) : 167-176, 2009.
60) Trnka, H. J., Lara, J. S. : Freiberg's Infarction : Surgical Options. Foot Ankle Clin, 24 (4) : 669-676, 2019.
61) 林宏冶, 熊井司 : Freiberg病. 図説足の臨床 改訂3版. 田中康仁ほか編. メジカルビュー社, 東京, 202-205, 2010.
62) Gauthier, G., Elbaz, R. : Freiberg's infarction : a subchondral bone fatigue fracture. A new surgical treatment. Clin Orthop Relat Res, 142 : 93-95, 1979.
63) Smilie, I. S. : Treatment of Freiberg's Infarction. Proc R Soc Med, 60 : 29-31, 1967.
64) 平野貴章 : Freiberg病. 関節外科, 32 (1) : 28-34, 2013.
65) Seybold, J. D., Zide, J. R. : Treatment of Freiberg disease. Foot Ankle Clin, 23 : 157-169, 2018.
66) 石井武彰, 白仁田厚ほか : Freiberg病に対して骨軟骨片固定術及び中足骨短縮術を施行した1例. 整形外科と災害外科, 59 (2) : 362-367, 2010.
67) 鶴田敏幸, 峯博子ほか : 若年スポーツ選手のFreiberg病に対する自家骨移植術の治療成績. 日臨スポーツ医会誌, 20 (1) : 105-111, 2012.
68) Miyamoto, W., Takao, M., Uchio, Y., et al. : Late-stage Freiberg disease treated by osteochondral plug transplantation : A case series. Foot Ankle Int, 29 (9) : 950-955, 2008.
P.291 掲載の参考文献
1) Patel, M. S., Mutawakkil, M. Y., Kadakia, A. R. : Low-Energy Lisfranc Injuries : When to Fix and When to Fuse. Clin Sports Med, 39 (4) : 773-791, 2020.
2) Hardcastle, P. H., Reschauer, R., Kutscha-Lissberg, E., et al. : Injuries to the tarsometatarsal joint. Incidence, classification and treatment. J Bone Joint Surg Br, 64 (3) : 349-356, 1982.
3) Stodle, A. H., Hvaal, K. H., Enger, M., et al. : Lisfranc injuries : Incidence, mechanisms of injury and predict or s of instability. Foot Ankle Surg, 26 (5) : 535-540, 2020.
4) Ponkilainen, V. T., Partio, N., Salonen, E. E., et al. : Inter- and intraobserver reliability of non-weight-bearing foot radiographs compared with CT in Lisfranc injuries. Arch Orthop Trauma Surg, 140 (10) : 1423-1429, 2020.
5) Moracia-Ochagavia, I., Rodriguez-Merchan, E. C. : Lisfranc fracture-dislocations : current management. EFORT Open Rev, 4 (7) : 430-444, 2019.
6) Ponkilainen, V. T., Partio, N., Salonen, E. E., et al. : Outcomes after nonoperatively treated non-displaced Lisfranc injury : a retrospective case series of 55 patients. Arch Orthop Trauma Surg, 141 (8) : 1311-1317, 2021.
7) Rankine, J. J., Nicholas, C. M., Wells, G., et al. : The diagnostic accuracy of radiographs in Lisfranc injury and the potential value of a craniocaudal projection. AJR Am J Roentgenol, 198 (4) : W365-W369, 2012.
8) Joannas, G., Filippi, J. : How to Identify Unstable Lisfranc Injuries? Review of Diagnostic Strategies and Algorithm Proposal. Foot Ankle Clin, 25 (4) : 697-710, 2020.
9) Weatherford, B. M., Anderson, J. G., Bohay, D. R. : Management of Tarsometatarsal Joint Injuries. J Am Acad Orthop Surg, 25 (7) : 469-479, 2017.
10) Tarczynska, M., Gaweda, K., Dajewski, Z., et al. : Comparison of treatment results of acute and late injuries of the lisfranc joint. Acta Ortop Bras, 21 (6) : 344-346, 2013.
11) Sripanich, Y., Weinberg, M. W., Krahenbuhl, N., et al. : Imaging in Lisfranc injury : a systematic literature review. Skeletal Radiol, 49 (1) : 31-53, 2020.
12) Haraguchi, N., Ota, K., Ozeki, T., et al. : Anatomical Pathology of Subtle Lisfranc Injury. Sci Rep, 9 (1) : 14831, 2019.
13) Kaar, S., Femino, J., Morag, Y. : Lisfranc joint displacement following sequential ligament sectioning. J Bone Joint Surg Am, 89 (10) : 2225-2232, 2007.
14) Myerson, M. S., Fisher, R. T., Burgess, A. R., et al. : Fracture dislocations of the tarsometatarsal joints : end results correlated with pathology and treatment. Foot Ankle, 6 (5) : 225-242, 1986.
15) Nunley, J. A., Vertullo, C. J. : Classification, investigation, and management of midfoot sprains : Lisfranc injuries in the athlete. Am J Sports Med, 30 (6) : 871-878, 2002.
16) Seybold, J. D., Coetzee, J. C. : Lisfranc Injuries : When to Observe, Fix, or Fuse. Clin Sports Med, 34 (4) : 705-723, 2015.
17) Ponkilainen, V. T., Laine, H. J., Maenpaa, H. M., et al. : Incidence and Characteristics of Midfoot Injuries. Foot Ankle Int, 40 (1) : 105-112, 2019.
18) Nunley, J. A., Vertullo, C. J. : Classification, investigation, and management of midfoot sprains : Lisfranc injuries in the athlete. Am J Sports Med, 30 (6) : 871-878, 2002.
19) Stavlas, P., Roberts, C. S., Xypnitos, F. N., et al. : The role of reduction and internal fixation of Lisfranc fracture-dislocations : a systematic review of the literature. Int Orthop, 34 (8) : 1083-1091, 2010.
20) Hirano, T., Niki, H., Beppu, M. : Anatomical considerations for reconstruction of the Lisfranc ligament. J Orthop Sci, 18 (5) : 720-726, 2013.
21) Suzuki, Y., Edama, M., Kaneko, F., et al. : Morphological characteristics of the Lisfranc ligament. J Foot Ankle Res, 13 (1) : 46, 2020.
22) Clare, M. P. : Lisfranc injuries. Curr Rev Musculoskelet Med, 10 (1) : 81-85, 2017.
23) Wynter, S., Grigg, C. : Lisfranc injuries. Aust Fam Physician, 46 (3) : 116-119, 2017.
24) Gupta, R. T., Wadhwa, R. P., Learch, T. J., et al. : Lisfranc injury : imaging findings for this important but often-missed diagnosis. Curr Probl Diagn Radiol, 37 (3) : 115-126, 2008.
25) Faciszewski, T., Burks, R. T., Manaster, B. J. : Subtle injuries of the Lisfranc joint. J Bone Joint Surg Am, 72 (10) : 1519-1522, 1990.
26) Kennelly, H., Klaassen, K., Heitman, D., et al. : Utility of weight-bearing radiographs compared to computed tomography scan for the diagnosis of subtle Lisfranc injuries in the emergency setting. Emerg Med Australas, 31 (5) : 741-744, 2019.
27) Bhimani, R., Sornsakrin, P., Ashkani-Esfahani, S., et al. : Using area and volume measurement via weightbearing CT to detect Lisfranc instability. J Orthop Res, 39 (11) : 2497-2505, 2021.
28) Penev, P., Qawasmi, F., Mosheiff, R., et al. : Ligamentous Lisfranc injuries : analysis of CT findings under weightbearing. Eur J Trauma Emerg Surg, 47 (4) : 1243-1248, 2021.
29) Sripanich, Y., Weinberg, M., Krahenbuhl, N., et al. : Change in the First Cuneiform-Second Metatarsal Distance After Simulated Ligamentous Lisfranc Injury Evaluated by Weightbearing CT Scans. Foot Ankle Int, 41 (11) : 1432-1441, 2020.
30) Sripanich, Y., Weinberg, M. W., Krahenbuhl, N., et al. : Reliability of measurements assessing the Lisfranc joint using weightbearing computed tomography imaging. Arch Orthop Trauma Surg, 141 (5) : 775-781, 2021.
31) Ablimit, A., Ding, H. Y., Liu, L. G. : Magnetic resonance imaging of the Lisfranc ligament. J Orthop Surg Res, 13 (1) : 282, 2018.
32) Raikin, S. M., Elias, I., Dheer, S., et al. : Prediction of midfoot instability in the subtle Lisfranc injury. Comparison of magnetic resonance imaging with intraoperative findings. J Bone Joint Surg Am, 91 (4) : 892-899, 2009.
33) Crim, J. : MR imaging evaluation of subtle Lisfranc injuries : the midfoot sprain. Magn Reson Imaging Clin N Am, 16 (1) : 19-27, 2008.
34) Woodward, S., Jacobson, J. A., Femino, J. E., et al. : Sonographic evaluation of Lisfranc ligament injuries. J Ultrasound Med, 28 (3) : 351-357, 2009.
35) Graves, N. C., Rettedal, D. D., Marshall, J. J., et al. : Ultrasound assessment of dorsal lisfranc ligament strain under clinically relevant loads. J Am Podiatr Med Assoc, 104 (1) : 11-18, 2014.
36) Rettedal, D. D., Graves, N. C., Marshall, J. J., et al. : Reliability of ultrasound imaging in the assessment of the dorsal Lisfranc ligament. J Foot Ankle Res, 6 (1) : 7, 2013.
37) 岡田洋和 : 超音波検査によるリスフラン関節損傷の診断. 日足外会誌, 36 : 208-212, 2015.
38) DeLuca, M. K., Walrod, B., Boucher, L. C. : Ultrasound as a Diagnostic Tool in the Assessment of Lisfranc Joint Injuries. J Ultrasound Med, 39 (3) : 579-587, 2020.
39) Krause, F., Schmid, T., Weber, M. : Current Swiss Techniques in Management of Lisfranc Injuries of the Foot. Foot Ankle Clin, 21 (2) : 335-350, 2016.
40) Abbasian, M. R., Paradies, F., Weber, M., et al. : Temporary Internal Fixation for Ligamentous and Osseous Lisfranc Injuries : Outcome and Technical Tip. Foot Ankle Int, 36 (8) : 976-983, 2015.
41) Kuo, R. S., Tejwani, N. C., Digiovanni, C. W., et al. : Outcome after open reduction and internal fixation of Lisfranc joint injuries. J Bone Joint Surg Am, 82 (11) : 1609-1618, 2000.
42) Coetzee, J. C., Ly, T. V. : Treatment of primarily ligamentous Lisfranc joint injuries : primary arthrodesis compared with open reduction and internal fixation. Surgical technique. J Bone Joint Surg Am, 89 (Suppl 2 Pt 1) : 122-127, 2007.
43) Ly, T. V., Coetzee, J. C. : Treatment of primarily ligamentous Lisfranc joint injuries : primary arthrodesis compared with open reduction and internal fixation. A prospective, randomized study. J Bone Joint Surg Am, 88 (3) : 514-520, 2006.
44) Ulla, I. A. : Persistent instability in pure ligamentous Lisfranc joint injuries. Foot Ankle Surg, 27 (7) : 793-798, 2021.
45) Abbasian, M. R., Paradies, F., Weber, M., et al. : Temporary Internal Fixation for Ligamentous and Osseous Lisfranc Injuries : Outcome and Technical Tip. Foot Ankle Int, 36 (8) : 976-983, 2015.
46) Stodle, A. H., Hvaal, K. H., Brogger, H., et al. : Outcome after nonoperative treatment of stable Lisfranc injuries. A prospective cohort study. Foot Ankle Surg, 28 (2) : 245-250, 2022.
47) Preidler, K. W., Peicha, G., Lajtai, G., et al. : Conventional radiography, CT, and MR imaging in patients with hyperflexion injuries of the foot : diagnostic accuracy in the detection of bony and ligamentous changes. AJR Am J Roentgenol, 173 (6) : 1673-1677, 1999.
48) Chen, P., Ng, N., Snowden, G., et al. : Rates of Displacement and Patient-Reported Outcomes Following Conservative Treatment of Minimally Displaced Lisfranc Injury. Foot Ankle Int, 41 (4) : 387-391, 2020.
49) Curtis, M. J., Myerson, M., Szura, B. : Tarsometatarsal joint injuries in the athlete. Am J Sports Med, 21 (4) : 497-502, 1993.
50) Crates, J. M., Barber, F. A., Sanders, E. J. : Subtle lisfranc subluxation : results of operative and nonoperative treatment. J Foot Ankle Surg, 54 (3) : 350-355, 2015.
51) Ren, W., Li, Hai-Bo., Lu, Ji-Ke., et al. : Undisplaced subtle ligamentous Lisfranc injuries, conservative or surgical treatment with percutaneous position screws? Chin J Traumatol, 22 (4) : 196-201, 2019.
52) Hu, S. J., Chang, S. M., Li, X. H., et al. : Outcome comparison of Lisfranc injuries treated through dorsal plate fixation versus screw fixation. Acta Ortop Bras, 22 (6) : 315-320, 2014.
53) Kirzner, N., Zotov, P., Goldbloom, D., et al. : Dorsal bridge plating or transarticular screws for Lisfranc fracture dislocations : a retrospective study comparing functional and radiological outcomes. Bone Joint J, 100-B (4) : 468-474, 2018.
54) Stavrakakis, I. M., Magarakis, G. E., Christoforakis, Z. : Percutaneous fixation of Lisfranc joint injuries : A systematic review of the literature. Acta Orthop Traumatol Turc, 53 (6) : 457-462, 2019.
55) Vosbikian, M., O'Neil, J. T., Piper, C., et al. : Outcomes After Percutaneous Reduction and Fixation of Low-Energy Lisfranc Injuries. Foot Ankle Int, 38 (7) : 710-715, 2017.
56) Wagner, E., Ortiz, C., Villalon, I. E., et al. : Early weight-bearing after percutaneous reduction and screw fixation for low-energy lisfranc injury. Foot Ankle Int, 34 (7) : 978-983, 2013.
57) Myerson, M. S., Cerrato, R. A. : Current management of tarsometatarsal injuries in the athlete. J Bone Joint Surg Am, 90 (11) : 2522-2533, 2008.
58) Han, P. F., Zhang, Z. L., Chen, C. L., et al. : Comparison of primary arthrodesis versus open reduction with internal fixation for Lisfranc injuries : Systematic review and meta-analysis. J Postgrad Med, 65 (2) : 93-100, 2019.
59) Kandil, M. I., Abouzeid, M., Eltaher, S. M., et al. : Primary fusion versus open reduction internal fixation for purely ligamentous lisfranc injuries : A Prospective comparative study and analysis of factors affecting the outcomes. Foot Ankle Surg, 28 (7) : 898-905, 2022.
60) Smith, N., Stone, C., Furey, A. : Does Open Reduction and Internal Fixation versus Primary Arthrodesis Improve Patient Outcomes for Lisfranc Trauma? A Systematic Review and Meta-analysis. Orthop Relat Res, 474 (6) : 1445-1452, 2016.
61) Henning, J. A., Jones, C. B., Sietsema, D. L., et al. : Open reduction internal fixation versus primary arthrodesis for lisfranc injuries : a prospective randomized study. Foot Ankle Int, 30 (10) : 913-922, 2009.
62) Alcelik, I., Fenton, C., Hannant, G., et al. : A systematic review and meta-analysis of the treatment of acute lisfranc injuries : Open reduction and internal fixation versus primary arthrodesis. Foot Ankle Surg, 26 (3) : 299-307, 2020.
63) Joannas, G., Filippi, J. : How to Identify Unstable Lisfranc Injuries? Review of Diagnostic Strategies and Algorithm Proposal. Foot Ankle Clin, 25 (4) : 697-710, 2020.
64) Hawkinson, M. P., Tennent, D. J., Belisle, J., et al. : Outcomes of Lisfranc Injuries in an Active Duty Military Population. Foot Ankle Int, 38 (10) : 1115-1119, 2017.
65) Buda, M., Kink, S., Stavenuiter, R., et al. : Reoperation Rate Differences Between Open Reduction Internal Fixation and Primary Arthrodesis of Lisfranc Injuries. Foot Ankle Int, 39 (9) : 1089-1096, 2018.
66) Cochran, G., Renninger, C., Tompane, T., et al. : Primary Arthrodesis versus Open Reduction and Internal Fixation for Low-Energy Lisfranc Injuries in a Young Athletic Population. Foot Ankle Int, 38 (9) : 957-963, 2017.
67) Rammelt, S., Schneiders, W., Schikore, H., et al. : Primary open reduction and fixation compared with delayed corrective arthrodesis in the treatment of tarsometatarsal (Lisfranc) fracture dislocation. J Bone Joint Surg Br, 90 (11) : 1499-1506, 2008.
68) Alberta, F. G., Aronow, M. S., Barrero, M., et al. : Ligamentous Lisfranc joint injuries : a biomechanical comparison of dorsal plate and transarticular screw fixation. Foot Ankle Int, 26 (6) : 462-473, 2005.
69) Fernandez, I., Weiss, W. M., Panchbhavi, V. K. : Evaluation of the Area of the Lisfranc Ligament Damaged by Screw Fixation. Foot Ankle Spec, 12 (1) : 49-53, 2019.
70) Ho, N. C., Sangiorgio, S. N., Cassinelli, S., et al. : Biomechanical comparison of fixation stability using a Lisfranc plate versus transarticular screws. Foot Ankle Surg, 25 (1) : 71-78, 2019.
71) Jin, S., Wang, L., Zhou, S. : Clinical Study on Different Methods of Internal Fixation for Treatment of Lisfranc Joint Injury. Evid Based Complement Alternat Med, 2021 : 1300920, 2021.
72) Bansal, A., Carlson, D. A., Owen, J. R., et al. : Ligamentous Lisfranc Injury : A Biomechanical Comparison of Dorsal Plate Fixation and Transarticular Screws. J Orthop Trauma, 33 (7) : e270-e275, 2019.
73) Garriguez-Perez, D., Puerto-Vazquez, M., Delgado, J. L. T., et al. : Impact of the Subtle Lisfranc Injury on Foot Structure and Function. Foot Ankle Int, 42 (10) : 1303-1310, 2021.
74) Cho, J., Kim, J., Min, T. H., et al. : Suture Button vs Conventional Screw Fixation for Isolated Lisfranc Ligament Injuries. Foot Ankle Int, 42 (5) : 598-608, 2021.
75) Panchbhavi, V. K., Vallurupalli, S., Yang, J., et al. : Screw fixation compared with suture-button fixation of isolated Lisfranc ligament injuries. J Bone Joint Surg Am, 91 (5) : 1143-1148, 2009.
76) Ahmed, S., Bolt, S., McBryde, A. : Comparison of standard screw fixation versus suture button fixation in Lisfranc ligament injuries. Foot Ankle Int, 31 (10) : 892-896, 2010.
77) Lewis J. S. Jr., Anderson, R. B. : Lisfranc Injuries in the Athlete. Foot Ankle Int, 37 (12) : 1374-1380, 2016.
78) Attia, A. K., Mahmoud, K., Alhammoud, A., et al. : Return to Play After Low-Energy Lisfranc Injuries in High-Demand Individuals : A Systematic Review and Meta-Analysis of Athletes and Active Military Personnel. Orthop J Sports Med, 9 (3) : 2325967120988158, 2021.
79) Mora, A. D., Kao, M., Alfred, T., et al. : Return to Sports and Physical Activities After Open Reduction and Internal Fixation of Lisfranc Injuries in Recreational Athletes. Foot Ankle Int, 39 (7) : 801-807, 2018.
80) Vopat, B. G., Vopat, M. L., van Dijk, P. A. D., et al. : Return to Sport after Surgical Treatment of Lisfranc Injuries in Athletes : A Retrospective Case Series. Kans J Med, 12 (4) : 141-145, 2019.
P.301 掲載の参考文献
1) Kutaish, H., Stern, R., Drittenbass, L., et al. : Injuries to the Chopart joint complex : a current review. Eur J Orthop Surg Traumatol, 27 (4) : 425-431, 2017.
2) Thiounn, A., Szymanski, C., Lalanne, C., et al. : Prospective observational study of midtarsal joint sprain : Epidemiological and ultrasonographic analysis. Orthop Traumatol Surg Res, 102 (5) : 657-661, 2016.
3) Rammelt, S. : Chopart and Lisfranc joint injuries. In : Bentley, G. editor, European surgical orthopaedics and traumatology. The EFORT textbook, Springer, Berlin, Heidelberg (Germany), New York, 3835-3857, 2014.
4) De Dea, M., L. Loizou, C., Allen, G. M., et al. : Talonavicular ligament : prevalence of injury in ankle sprains, histological analysis and hypothesis of its biomechanical function. Br J Radiol, 90 (1071) : 20160816, 2017.
5) Hirschmann, A., Walter, W. R., Alaia, E. F., et al. : Acute Fracture of the Anterior Process of Calcaneus : Does It Herald a More Advanced Injury to Chopart Joint? AJR Am J Roentgenol, 210 (5) : 1123-1130, 2018.
6) Doring, S., Provyn, S., Marcelis, S., et al. : Ankle and midfoot ligaments : Ultrasound with anatomical correlation : A review. Eur J Radiol, 107 : 216-226, 2018.
7) Walter, W. R., Hirschmann, A., Tafur, M., et al. : Imaging of Chopart (Midtarsal) Joint Complex : Normal Anatomy and Posttraumatic Findings. AJR Am J Roentgenol, 211 (2) : 416-425, 2018.
8) 笹原潤 : 診断. 明日の足診療シリーズ I 足の変性疾患・後天性変形の診かた. 日本足の外科学会監, 全日本病院出版会, 10-24, 2020.
9) Degan, T. J., Morrey, B. F., Braun, D. P. : Surgical excision for anterior-process fractures of the calcaneus. J Bone Joint Surg Am, 64 (4) : 519-524, 1982.
10) Dhinsa, B. S., Latif, A., Walker, R., et al. : Fractures of the anterior process of the calcaneum ; a review and proposed treatment algorithm. Foot Ankle Surg, 25 (3) : 258-263, 2019.
11) Massen, F. K., Baumbach, S. F., Herterich, V., et al. : Fractures to the anterior process of the calcaneus-Clinical results following functional treatment. Injury, 50 (10) : 1781-1786, 2019.
P.307 掲載の参考文献
1) Mason, L. W., Molloy, A. P. : Turf toe and disorders of the sesamoid complex. Clin Sports Med, 34 (4) : 725-739, 2015.
2) McBride, I. D., Wyss, U. P., Cooke, T. D., et al. : First metatarsophalangeal joint reaction forces during high-heel gait. Foot Ankle Int, 11 (5) : 282-288, 1991.
3) Waldrop, N. E. 3rd. : Assessment and treatment of sports injuries to the first metatarsophalangeal joint. Foot Ankle Clin, 26 (1) : 1-12, 2021.
4) Bowers, K. D. Jr., Martin, R. B. : Turf-toe : a shoe-surface related football injury. Med Sci Sports, 8 (2) : 81-83, 1976.
5) York, P. F., Wydra, F. B., Hunt, K. J. : Injuries to the great toe. Curr Rev Musculoskelet Med, 10 : 104-112, 2017.
6) Rodeo, S. A., O'Brien, S., Warren, R. F., et al. : Turf-toe : an analysis of metatarsophalangeal joint sprains in professional football players. Am J Sports Med, 18 : 280-285, 1990.
7) Kaplan, L. D., Jost, P. W., Honkamp, N., et al. : Incidence and variance of foot and ankle injuries in elite college football players. Am J Orthop (Belle Mead NJ), 40 (1) : 40-44, 2011.
8) Bjorneboe, J., Bahr, R., Andersen, T. E. : Risk of injury on third-generation artificial turf in Norwegian professional football. Br J Sports Med, 44 (9) : 794-798, 2010.
9) George, E., Harris, A. H., Dragoo, J. L., et al. : Incidence and risk factors for turf toe injuries in intercollegiate football : data from the National Collegiate Athletic Association injury surveillance system. Foot Ankle Int, 35 (2) : 108-115, 2014.
10) Garcia, C. A., Hoffman, S. L., Hastings, M. K., et al. : Effect of metatarsal phalangeal joint extension on plantar soft tissue stiffness and thickness. Foot (Edinb), 18 (2) : 61-67, 2008.
11) Frimenko, R. E., Lievers, W. B., Riley, P. O., et al. : Development of an injury risk function for first metatarsophalangeal joint sprains. Med Sci Sports Exerc, 45 : 2144-2150, 2013.
12) Waldrop, N. E. 3rd., Zirker, C. A., Wijdicks, C. A., et al. : Radiographic evaluation of plantar plate injury : an in vitro biomechanical study. Foot Ankle Int, 34 (3) : 403-408, 2013.
13) Roche, A. J., Calder, J. D. : An atraumatic turf toe in an elite soccer player-a stress related phenomenon? Foot Ankle Surg, 20 (1) : 71-73, 2014.
14) Kadakia, A. R., Molloy, A. : Current concepts review : traumatic disorders of the first metatarsophalangeal joint and sesamoid complex. Foot Ankle Int, 32 (8) : 834-849, 2011.
15) Anderson, R. B., Shawen, S. B. : Great toe disorders. In : Porter DA, Schon LC, editors. Baxter's foot and ankle in sport. 2nd ed. Elsevier Health Sciences, Philadelphia, 423, 2007.
16) Tewes, D. P., Fischer, D. A., Fritts, H. M., et al. : MRI findings of acute turf toe. A case report and review of anatomy. Clin Orthop Relat Res, 304 : 200-203, 1994.
17) Crain, J. M., Phancao, J. P., Stidham, K. : MR imaging of turf toe. Magn Reson Imaging Clin N Am, 16 (1) : 93-103, 2008.
18) Dietrich, T. J., da Silva, F. L. F., de Abreu, M. R., et al. : First metatarsophalangeal joint- MRI findings in asymptomatic volunteers. Eur Radiol, 25 (4) : 970-979, 2015.
19) Jahss, M. H. : Traumatic dislocations of the first metatarsophalangeal joint. Foot Ankle, 1 (1) : 15-21, 1980.
20) Clanton, T. O., Ford, J. J. : Turf toe injury. Clin Sports Med, 13 (4) : 731-741, 1994.
21) Maskill, J. D., Bohay, D. R., Anderson, J. G. : First ray injuries. Foot Ankle Clin, 11 (1) : 143-163, 2006.
22) Anderson, R. B. : Turf Toe Injuries of the Hallux Metatarsophalangeal Joint. Tech Foot Ankle Surg, 1 (2) : 102-111, 2002.
23) McCormick, J. J., Anderson, R. B. : Turf toe : anatomy, diagnosis, and treatment. Sports Health, 2 (6) : 487-494, 2010.
24) Clanton, T. O., Butler, J. E., Eggert, A. : Injuries to the metatarsophalangeal joints in athletes. Foot Ankle, 7 (3) : 162-176, 1986.
25) Coker, T. P., Arnold, J. A., Weber, D. L. : Traumatic lesions of the metatarsophalangeal joint of the great toe in athletes. Am J Sports Med, 6 (6) : 326-334, 1978.
26) Faltus, J., Mullenix, K., Moorman, C. T. 3rd., et al. : Case series of first metatarsophalangeal joint injuries in division 1 college athletes. Sports Health, 6 (6) : 519-526, 2014.
27) McCormick, J. J., Anderson, R. B. : Rehabilitation following turf toe injury and plantar plate repair. Clin Sports Med, 29 (2) : 313-323, 2010.
28) Doty, J., Coughlin, M. : Turf toe repair. A technical note. Foot Ankle Spec, 6 (6) : 452-456, 2015.
29) Nihal, A., Trepman, E., Nag, D. : First ray disorders in athletes. Sports Med Arthrosc Rev, 17 : 160-166, 2009.
30) Smith, K., Waldrop, N. : Operative Outcomes of Grade 3 Turf Toe Injuries in Competi-Tive Football Players. Foot Ankle Int, 39 : 1076-1081, 2018.
31) McCormick, J. J., Anderson, R. B. : The great toe : failed turf toe, chronic turf toe, and complicated sesamoid injuries. Foot Ankle Clin, 14 (2) : 135-150, 2009.
32) Chamberland, P. D., Smith, J. W., Fleming, L. L. : The blood supply to the great toe sesamoids. Foot Ankle, 14 (8) : 435-442, 1993.
33) Covell, D. J., Lareau, C. R., Anderson, R. B. : Operative Treatment of Traumatic Hallux Valgus in Elite Athletes. Foot Ankle Int, 38 : 590-595, 2017.
34) Jahss, M. H. : The sesamoids of the hallux. Clin Orthop Relat Res, 157 : 88-97, 1981.
35) Dedmond, B. T., Cory, J. W., McBryde, A. : The hallucal sesamoid complex. J Am Acad Orthop Surg, 14 : 745-753, 2006.
36) Coughlin, M. J. : Sesamoid pain : causes and surgical treatment. Instr Course Lect, 39 : 23-35, 1990.
37) Anderson, R. B., McBryde, Jr, A. M. : Autogenous bone grafting of hallux sesamoid nonunions. Foot Ankle Int, 18 : 293-296, 1997.
38) Blundell, C. M., Nicholson, P., Blackney, M. W. : Percutaneous screw fixation for fractures of the sesamoid bones of the hallux. J Bone Joint Surg Br, 84 (8) : 1138-1141, 2002.
39) Bichara, D. A., Henn, R. F. 3rd., Theodore, G. H. : Sesamoidectomy for hallux sesamoid fractures. Foot Ankle Int, 33 : 704-706, 2012.
40) Shimozono, Y., Hurley, E. T., Brown, A. J., Kennedy, J. G. : Sesamoidectomy for Hallux Sesamoid Disorders : A Systematic Review. Foot Ankle Surg, 57 : 1186-1190, 2018.
41) Nakajima, K. : Arthroscopic Sesamoidectomy for Hallux Sesamoid Disorders. J Foot Ankle Surg, 61 (1) : 175-180, 2022.
42) Taylor, C. F., Butler, M., Parsons, S. W. : Problems associated with the excision of the hallux sesamoids. Foot Ankle Clin, 19 : 425-436, 2014.
43) Yang, R., Chu, Y. : Hallucal sesamoiditis manifested on bone scan. Clin Nucl Med, 38 : 1019-1021, 2013.
44) Ogata, K., Sugioka, Y., Urano, Y., et al. : Idiopathic osteonecrosis of the first metatarsal sesamoid. Skeletal Radiol, 15 : 141-145, 1986.
45) Waizy, H., Jager, M., Abbara-Czardybon, M., et al. : Surgical treatment of AVN of the fibular (lateral) sesamoid. Foot ankle Int/Am Orthop Foot Ankle Soc [and] Swiss Foot Ankle Soc, 29 (2) : 231-236, 2008.
46) Davies, M. S., Saxby, T. S. : Arthroscopy of the first metatarsophalangeal joint. J Bone Joint Surg Br, 81 (2) : 203-206, 1999.
47) Debnath, U. K., Hemmady, M. V., Hariharan, K. : Indications for and technique of first metatarsophalangeal joint arthroscopy. Foot Ankle Int, 27 (12) : 1049-1054, 2006.
48) van Dijk, C. N., Veenstra, K. M., Nuesch, B. C. : Arthroscopic surgery of the metatarsophalangeal first joint. Arthroscopy, 14 (14) : 851-855, 1998.
49) Kim, Y. S., Park, E. H., Lee, H. J., et al. : Clinical comparison of the osteochondral autograft transfer system and subchondral drilling in osteochondral defects of the first metatarsal head. Am J Sports Med, 40 (8) : 1824-1833, 2012.
P.315 掲載の参考文献
1) Harris, R., Beath, T. : Army foot survey : an investigation of foot ailments in Canadian soldiers. National Research Council of Canada, Ottawa. 1 : 52-55, 1947.
2) 鶴田登代志, 塩川靖夫, 加藤明ほか. : 足部過剰骨のX線学的研究. 日整会誌, 55 : 357-370, 1981.
3) Koo, B. S., Song, Y., Lee, S., et al. : Prevalence and distribution of sesamoid bones and accessory ossicles of the foot as determined by digital tomosynthesis. Clin Anat, 30 (8) : 1072-1076, 2017.
4) Kalbouneh, H., Alajoulin, O., Shawaqfeh, J., et al. : Accessory Ossicles in the Region of the Foot and Ankle : An Epidemiologic Survey in a Jordanian Population. Medicina (Kaunas), 57 (11) : 1178, 2021.
5) Mygind, H. B. : The accessory tarsal scaphoid ; clinical features and treatment. Acta Orthop Scand, 23 (2) : 142-151, 1953.
6) Knapik, D. M., Guraya, S. S., Conry, K. T., et al. : Longitudinal radiographic behavior of accessory navicular in pediatric patients. J Child Orthop, 10 (6) : 685-689, 2016.
7) Geist, E. : Supernumerary bones of the foot : A roentgen study of the feet of one hundred normal individuals. Am J Orthop Surg, 12 : 403-414, 1914.
8) Sella, E. J., Lawson, J. P. : Biomechanics of the accessory navicular synchondrosis. Foot Ankle, 8 (3) : 156-163, 1987.
9) Lawson, J. P., Ogden, J. A., Sella, E., et al. : The painful accessory navicular. Skeletal Radiol, 12 (4) : 250-262, 1984.
10) Romanowski, C. A., Barrington, N. A. : The accessory navicular-an important cause of medial foot pain. Clin Radiol, 46 (4) : 261-264, 1992.
11) Jegal, H., Park, Y. U., Kim, J. S., et al. : Accessory Navicular Syndrome in Athlete vs General Population. Foot Ankle Int, 37 (8) : 862-867, 2016.
12) Grogan, D. P., Gasser, S. I., Ogden, J. A. : The painful accessory navicular : a clinical and histopathological study. Foot Ankle, 10 (3) : 164-169, 1989.
13) Geist, E. : The Accessory Scaphoid bone. J Bone Joint Surg, 7 (3) : 570-574, 1925.
14) Nakayama, S., Sugimoto, K., Takakura, Y., et al. : Percutaneous drilling of symptomatic accessory navicular in young athletes. Am J Sports Med, 33 (4) : 531-535, 2005.
15) Chung, J. W., Chu, I. T. : Outcome of fusion of a painful accessory navicular to the primary navicular. Foot Ankle Int, 30 (2) : 106-109, 2009.
16) Chen, Y. J., Hsu, R. W., Liang, S. C. : Degeneration of the accessory navicular synchondrosis presenting as rupture of the posterior tibial tendon. J Bone Joint Surg Am, 79 (12) : 1791-1798, 1997.
17) Chuang, Y. W., Tsai, W. S., Chen, K. H., et al. : Clinical use of high-resolution ultrasonography for the diagnosis of type II accessory navicular bone. Am J Phys Med Rehabil, 91 (2) : 177-181, 2012.
18) Choi, Y. S., Lee, K. T., Kang, H. S., et al. : MR imaging findings of painful type II accessory navicular bone : correlation with surgical and pathologic studies. Korean J Radiol, 5 (4) : 274-279, 2004.
19) Schweitzer, M. E., Karasick, D. : MR imaging of disorders of the posterior tibialis tendon. AJR Am J Roentgenol, 175 (3) : 627-635, 2000.
20) Kamel, S. I., Belair, J. A., Hegazi, T. M., et al. : Painful type II os naviculare : introduction of a standardized, reproducible classification system. Skeletal Radiol, 49 (12) : 1977-1985, 2020.
21) Sella, E. J., Lawson, J. P., Ogden, J. A. : The accessory navicular synchondrosis. Clin Orthop Relat Res, 209 : 280-285, 1986.
22) Chiu, N. T., Jou, I. M., Lee, B. F., et al. : Symptomatic and asymptomatic accessory navicular bones : findings of Tc-99m MDP bone scintigraphy. Clin Radiol, 55 (5) : 353-355, 2000.
23) Chong, A., Ha, J. M., Lee, J. Y. : Clinical Meaning of Hot Uptake on Bone Scan in Symptomatic Accessory Navicular Bones. Nucl Med Mol Imaging, 50 (4) : 322-328, 2016.
24) Rosenbaum, A. J., DiPreta, J. A., Tartaglione, J., et al. : Acute Fractures of the Tarsal Navicular : A Critical Analysis Review. JBJS Rev, 3 (3) : e5, 2015.
25) Jain, S., Karunanithi, S., Agarwal, K. K., et al. : Incremental value of single photon emission tomography/computed tomography in 3-phase bone scintigraphy of an accessory navicular bone. Indian J Nucl Med, 29 (3) : 191-192, 2014.
26) Bae, S., Kang, Y., Song, Y. S., et al. : Maximum standardized uptake value of foot SPECT/CT using Tc-99m HDP in patients with accessory navicular bone as a predictor of surgical treatment. Medicine (Baltimore), 98 (2) : e14022, 2019.
27) Usmani, S., Al-Khaldi, R. A., Banna, A. A., et al. : Symptomatic Os Navicular on 99mTc-MDP SPECT/CT. J Pak Med Assoc, 71 (8) : 2105-2106, 2021.
28) Kim, J. Y., Kim, J. Y., Park, S. B., et al. : A retrospective multicenter study of quantitative bone SPECT/CT to predict the surgical removal of the accessory navicular bone. Nucl Med Commun, 42 (9) : 998-1004, 2021.
29) Wynn, M., Brady, C., Cola, K., et al. : Effectiveness of Nonoperative Treatment of the Symptomatic Accessory Navicular in Pediatric Patients. Iowa Orthop J, 39 (1) : 45-49, 2019.
30) Knapik, D. M., Archibald, H. D., Xie, K. K., et al. : A retrospective study on factors predictive of operative intervention in symptomatic accessory navicular. J Child Orthop, 13 (1) : 107-113, 2019.
31) Park, Y. H., Kim, W., Choi, J. W., et al. : Risk Factors for Persistent Pain Requiring Surgical Treatment in Adult Symptomatic Accessory Navicular. Clin J Sport Med, 32 (3) : e308-e312, 2021.
32) Kidner, F. : The prehallux (accessory scaphoid) in its relation to flat foot. J Bone Joint Surg, 11 : 831-837, 1929.
33) Macnicol, M. F., Voutsinas, S. : Surgical treatment of the symptomatic accessory navicular. J Bone Joint Surg Br, 66 (2) : 218-226, 1984.
34) Jasiewicz, B., Potaczek, T., Kacki, W., et al. : Results of simple excision technique in the surgical treatment of symptomatic accessory navicular bones. Foot Ankle Surg, 14 (2) : 57-61, 2008.
35) Micheli, L. J., Nielson, J. H., Ascani, C., et al. : Treatment of painful accessory navicular : a modification to simple excision. Foot Ankle Spec, 1 (4) : 214-217, 2008.
36) Pretell-Mazzini, J., Murphy, R. F., Sawyer, J. R., et al. : Surgical treatment of symptomatic accessory navicular in children and adolescents. Am J Orthop (Belle Mead NJ), 43 (3) : 110-113, 2014.
37) Rietveld, A. B., Diemer, W. M. : Surgical Treatment of the Accessory Navicular (Os Tibiale Externum) in Dancers : A Retrospective Case Series. J Dance Med Sci, 20 (3) : 103-108, 2016.
38) Cha, S. M., Shin, H. D., Kim, K. C., et al. : Simple excision vs the Kidner procedure for type 2 accessory navicular associated with flatfoot in pediatric population. Foot Ankle Int, 34 (2) : 167-172, 2013.
39) Kiter, E., Gunal, I., Turgut, A., et al. : Evaluation of simple excision in the treatment of symptomatic accessory navicular associated with flat feet. J Orthop Sci, 5 (4) : 333-335, 2000.
40) Dawson, D. M., Julsrud, M. E., Erdmann, B. B., et al. : Modified Kidner procedure utilizing a Mitek bone anchor. J Foot Ankle Surg, 37 (2) : 115-121, discussion 74, 1998.
41) Lee, K. T., Kim, K. C., Park, Y. U., et al. : Midterm outcome of modified Kidner procedure. Foot Ankle Int, 33 (2) : 122-127, 2012.
42) Garras, D. N., Hansen, P. L., Miller, A. G., et al. : Outcome of modified Kidner procedure with subtalar arthroereisis for painful accessory navicular associated with planovalgus deformity. Foot Ankle Int, 33 (11) : 934-939, 2012.
43) Cao, H. H., Tang, K. L., Lu, W. Z., et al. : Medial displacement calcaneal osteotomy with posterior tibial tendon reconstruction for the flexible flatfoot with symptomatic accessory navicular. J Foot Ankle Surg, 53 (5) : 539-543, 2014.
44) Kim, J. R., Park, C. I., Moon, Y. J., et al. : Concomitant calcaneo-cuboid-cuneiform osteotomies and the modified Kidner procedure for severe flatfoot associated with symptomatic accessory navicular in children and adolescents. J Orthop Surg Res, 9 : 131, 2014.
45) Shurnas, P. S., Sanders, A. : A novel approach to the symptomatic accessory navicular. Tech Foot Ankle Surg, 6 : 195-200, 2007.
46) Miyamoto, W., Takao, M., Yamada, K., et al. : Reconstructive surgery using interference screw fixation for painful accessory navicular in adult athletes. Arch Orthop Trauma Surg, 132 (10) : 1423-1427, 2012.
47) Seehausen, D. A., Harris, L. R., Kay, R. M., et al. : Accessory Navicular is Associated With Wider and More Prominent Navicular Bone in Pediatric Patients by Radiographic Measurement. J Pediatr Orthop, 36 (5) : 521-525, 2016.
48) Malicky, E. S., Levine, D. S., Sangeorzan, B. J. : Modification of the Kidner procedure with fusion of the primary and accessory navicular bones. Foot Ankle Int, 20 (1) : 53-54, 1999.
49) Jang, H. S., Park, K. H., Park, H. W. : Comparison of outcomes of osteosynthesis in type II accessory navicular by variable fixation methods. Foot Ankle Surg, 23 (4) : 243-249, 2017.
50) Zeng, G., Hu, X., Chen, Y., et al. : Comparison of outcomes of arthrodesis and reconstruction (advancement), posterior tibial tendon with excision of accessory tarsal navicular bone (Kidner procedure) in type 2 accessory navicula. Foot Ankle Surg, 26 (8) : 930-934, 2020.
51) Knupp, M., Hintermann, B. : Reconstruction in Posttraumatic Combined Avulsion of an Accessory Navicular and the Posterior Tibial Tendon. Tech Foot Ankle Surg, 4 (2) : 113-118, 2005.
52) Scott, A. T., Sabesan, V. J., Saluta, J. R., et al. : Fusion versus excision of the symptomatic Type II accessory navicular : a prospective study. Foot Ankle Int, 30 (1) : 10-15, 2009.
53) Kakihana, M., Tochigi, Y., Yamazaki, T., et al. : Suture anchor stabilization of symptomatic accessory navicular in adolescents : Clinical and radiographic outcomes. J Orthop Surg (Hong Kong), 28 (2) : 2309499020918949, 2020.
54) Veitch, J. M. : Evaluation of the Kidner procedure in treatment of symptomatic accessory tarsal scaphoid. Clin Orthop Relat Res, (131) : 210-213, 1978.
55) Prichasuk, S., Sinphurmsukskul, O. : Kidner procedure for symptomatic accessory navicular and its relation to pes planus. Foot Ankle Int, 16 (8) : 500-503, 1995.
56) Kopp, F. J., Marcus, R. E. : Clinical outcome of surgical treatment of the symptomatic accessory navicular. Foot Ankle Int, 25 (1) : 27-30, 2004.
57) Choi, H. J., Lee, W. C. : Revision Surgery for Recurrent Pain after Excision of the Accessory Navicular and Relocation of the Tibialis Posterior Tendon. Clin Orthop Surg, 9 (2) : 232-238, 2017.
58) Kim, J., Day, J., Seilern Und Aspang, J. : Outcomes Following Revision Surgery After Failed Kidner Procedure for Painful Accessory Navicular. Foot Ankle Int, 41 (12) : 1493-501, 2020.
P.323 掲載の参考文献
1) Petraglia, F., Ramazzina, I., Costantino, C. : Plantar fasciitis in athletes : diagnostic and treatment strategies. A systematic review. Muscles Ligaments Tendons J, 2 (4) : 312-316, 2012.
2) Hoffman, M. D., Krishnan, E. : Health and exercise-related medical issues among 1,212 ultramarathon runners : baseline findings from the Ultrarunners Longitudinal TRAcking (ULTRA) Study. PLoS One, 9 (1) : e83867, 2014.
3) Nielsen, R. O., Ronnow, L., Rasmussen, S., et al. : A prospective study on time to recovery in 254 injured novice runners. PLoS One, 9 (6) : e99877, 2014.
4) DiGiovanni, B. F., Dawson, L. K., Baumhauer, J. F. : Plantar heel pain. Mann's surgery of the foot and ankle 2nd ed. Coughlin MJ. et al. editors, 685-699, Mosby, USA, 2014.
5) Acevedo, J. I., Beskin, J. L. : Complications of plantar fascia rupture associated with corticosteroid injection. Foot Ankle Int, 19 (2) : 91-97, 1998.
6) 足の外科学用語集 第3版. 日本足の外科学会編, 南山堂, 東京, 2017.
7) Wearing, S. C., Smeathers, J. E., Urry, S. R., et al. : The pathomechanics of plantar fasciitis. Sports Med, 36 (7) : 585-611, 2006.
8) Kumai, T., Benjamin, M. : Heel spur formation and the subcalcaneal enthesis of the plantar fascia. J Rheumatol, 29 (9) : 1957-1964, 2002.
9) Riddle, D. L., Pulisic, M., Pidcoe, P., et al. : Risk factors for plantar fasciitiss : a matched case-control study. J Bone Joint Surg, 85 (5) : 872-877, 2003.
10) Petraglia, F., Ramazzina, I., Costantino, C. : Plantar fasciitis in athletes : diagnostic and treatment strategies. A systematic review. Muscles Ligaments Tendons J, 7 (1) : 107-118, 2017.
11) Beeson, P. : Plantar fasciopathy : revisiting the risk factors. Foot Ankle Surg, 20 (3) : 160-165, 2014.
12) Hall, M. M., Finnof, J. T., Sayeed, Y. A., et al. : Sonographic Evaluation of the Plantar Heel in Asymptomatic Endurance Runners. J Ultrasound Med, 34 (10) : 1861-1871, 2015.
13) 西野聖吾, 松田夕子, 川島朝子ほか : アキレス腱付着部と足底腱膜付着部の骨棘と超音波画像における腱肥厚との関連. Jpn J Med Ultrasonics, 43 (5) : 663-668, 2016.
14) Prischasuk, S., Subhadrabandhu, T. : The relationship of pes planus and calcaneal spur to plantar heel pain. Clin Orthop Relat Res, 306 : 192-196, 1994.
15) Maki, M., Ikoma, K., Imai, K., et al. : Correlation between the outcome of extracorporeal shockwave therapy and pretreatment MRI findings for chronic plantar fasciitis. Mod Rheumatol, 25 (3) : 427-430, 2015.
16) Engkananuwat, P., Kanlayanaphotporn, R., Purepong, N., et al. : Effectiveness of the Simultaneous Stretching of the Achilles Tendon and Plantar Fascia in Individuals With Plantar Fasciitis. Foot Anke Int, 39 (1) : 75-82, 2017.
17) Nakamura, M., Ikezoe, T., Takeno, Y., et al. : Time course of changes in passive properties of the gastrocnemius muscle-tendon unit during 5 min of static stretching. Manual Therapy, 18 (3) : 211-215, 2013.
18) Cheung, R. T. H., Sze, L. K. Y., Mok N. W., et al. : Intrinsic foot muscle volume in experienced runners with and without chronic plantar fasciitis. J Sci Med Sport, 19 (9) : 713-715, 2016.
19) Pfeffer, G., Bacchetti, P., Deland, J., et al. : Comparison of Custom and Prefabricated Orthoses in the Initial Treatment of Proximal Plantar Fasciitis. Foot Ankle Int, 20 (4) : 214-221, 1999.
20) Donley, B. G., Moore, T., Sferra, J., et al. : The efficacy of oral nonsteroidal anti-inflammatory medication (NSAID) in the treatment of plantar fasciitis : a randomized, prospective, placebo-controlled study. Foot Ankle Int, 28 (1) : 20-23, 2007.
21) Celik, D., Kus, G., Sirma, S. : Joint mobilization and stretching exercise vs steroid injection in the treatment of plantar fasciitis : A randomized controlled study. Foot Ankle Int, 37 (2) : 150-156, 2016.
22) Kumai, T., Samoto, N., Hasegawa, A., et al. : Short-term efficacy and safety of hyaluronic acid injection for plantar fasciopathy. Knee Surg Sports Traumatol Arthrosc, 26 (3) : 903-911, 2018.
23) Hohmann, E., Tetsworth, K., Glatt, V. : Platelet-Rich Plasma Versus Corticosteroids for the Treatment of Plantar Fasciitis : A Systematic Review and Meta-analysis. Am J Sports Med, 49 (5) : 1381-1393, 2021.
24) Elizondo-Rodriguez, J., Simental-Mendia, M., Pena-Martinez, V., et al. : Comparison of Botulinum Toxin A, Corticosteroid, and Anesthetic Injection for Plantar Fasciitis. Foot Ankle Int, 42 (3) : 305-313, 2021.
25) Hurley, E. T., Shimozono, Y., Hannon, C. P., et al. : Platelet-Rich Plasma Versus Corticosteroids for Plantar Fasciitis : A Systematic Review of Randomized Controlled Trials. Orthop J Sports Med, 8 (4) : 2325967120915704, 2020.
26) Podolsky, R., Kalichman, L. : Taping for plantar fasciitis. J Back Musculoskelet Rehabil, 28 (1) : 1-6, 2015.
27) Rompe, J. D., Hopf, C., Nafe, B., et al. : Low-energy extracorporeal shock wave therapy for painful heel : a prospective controlled single-blind study. Arch Orthop. Truma Surg, 115 (2) : 75-79, 1996.
28) Rompe, J. D., Decking, J., Schoellner, C., et al. : Shock Wave Application for Chronic Plantar Fasciitis in Running Athletes ; A Prospective, Randomized, Placebo-Controlled Trial. Am J Sports Med, 31 (2) : 268-275, 2003.
29) Wang, C. J., Huang, H. Y., Pai, C. H., et al. : Shock wave-enhanced neovascularization at the tendon-bone junction : an experiment in dogs. J Foot Ankle Surg, 41 (1) : 16-22, 2002.
30) Aqil, A., Siddiqui, M. R., Solan, M., et al. : Extracorporeal shock wave therapy is effective in treating chronic plantar fasciitis : a meta-analysis of RCTs. Clin Orthop Relat Res, 471 (11) : 3645-3652, 2013.
31) Lohrer, H., Nauck, T., Dorn-Lange, N. V., et al. : Comparison of radial versus focused extracorporeal shock waves in plantar fasciitis using functional measures. Foot Ankle Int, 31 (1) : 1-9, 2010.
32) Komatsu, F., Takao, M., Innami, K., et al. : Endoscopic surgery for plantar fasciitis : application of a deep-fascial approach. Arthroscopy, 27 (8) : 1105-1109, 2011.
33) Feng, S. M., Song, R. L., Wang, A. G., et al. : Endoscopic partial plantar fasciotomy via 2 medial portals vs mini-open procedure for refractory plantar fasciitis. Foot Ankle Int, 42 (4) : 458-463, 2021.
34) Molund, M., Husebye, E. E., Hellesnes, J., et al. : Proximal Medial Gastrocnemius Recession and Stretching Versus Stretching as Treatment of Chronic Plantar Heel Pain. Foot Ankle Int, 39 (12) : 1423-1431, 2018.
35) Gamba, C., Serrano-Chinchilla, P., Ares-Vidal, J., et al. : Proximal Medial Gastrocnemius Release Versus Open Plantar Fasciotomy for the Surgical Treatment in Recalcitrant Plantar Fasciitis. Foot Ankle Int, 41 (3) : 267-274, 2020.
36) Leach, R., Jones, R., Silva, T. : Rupture of the plantar fascia in athletes. J Bone Joint Surg Am, 60 (4) : 537-539, 1978.
37) DiGiovanni, B. F., Prong, M. L., Gould, J. S. : Plantar Heel Pain. Orthopaedic Knowledge update Foot and Ankle. Chou, L. B. Wolters Kluwer/American Academy of Orthopaedic Surgeions, USA, 241-252, 2020.
38) Saxena, A., Fullem, B. : Plantar fascia ruptures in athletes. Am J Sports Med, 32 (3) : 662-665, 2004.
39) Debus, F., Eschbach, D., Ruchholtz, S., et al. : Rupture of plantar fascia : Current standard of therapy : A systematic literature review. Foot Ankle Surg, 26 (4) : 358-362, 2020.
P.327 掲載の参考文献
1) Rask, M. R. : Medial plantar neurapraxia (jogger's foot) : report of 3 cases. Clin Orthop Relat Res, (134) : 193-195, 1978.
2) Ferkel, E., Davis, W. H., Ellington, J. K. : Entrapment Neuropathies of the Foot and Ankle. Clin Sports Med, 34 (4) : 791-801, 2015.
3) Peck, E., Finnoff, J. T., Smith, J. : Neuropathies in runners. Clin Sports Med, 29 (3) : 437-457, 2010.
4) Smith, J., Dahm, D. : Nerve entrapments. In : O'Connor, F., Wilder, R., editors. The textbook of running medicine. McGraw-Hill, New York, 257-272, 2001.
5) Baxter, D. : Functional nerve disorders in the athlete's foot, ankle and leg. InstrCourse Lect, 42 : 185-194, 1993.
6) Schon, L. C., Glennon, T. P., Baxter, D. E. : Heel pain syndrome : electrodiagnostic support for nerve entrapment. Foot Ankle, 14 (3) : 129-135, 1993.
7) Collins, M. S., Tiegs-Heiden, C. A., Frickm M. A. : MRI appearance of jogger's foot. Skeletal Radiol, 49 (12) : 1957-1963, 2020.
8) 笹原潤, 宮本亘, 安井洋一ほか : 足部・足関節スポーツ傷害に対する超音波ガイド下インターベンション. 日整外スポーツ医会誌. 41 : 194-200, 2021.
P.332 掲載の参考文献
1) Newell, S. G., Woodle, A. : Cuboid syndrome. Phys Sports Med, 9 : 71-76, 1981.
2) Patterson, S. M. : Cuboid syndrome : A review of the literature. J Sports Sci Med, 5 (4) : 597-606, 2006.
3) Chow, T. H., Chen, Y. S., Hsu, C. C., et al. : Characteristics of Plantar Pressure with Foot Postures and Lower Limb Pain Profiles in Taiwanese College Elite Rugby League Athletes. Int J Environ Res Public Health, 19 (3) : 1158, 2022.
4) Martin, C., Zapf, A., Herman, D. C. : Cuboid Syndrome : Whip It Good! Curr Sports Med Rep, 16 (4) : 221, 2017.
5) Durall, C. J. : Examination and Treatment of Cuboid Syndrome : A Literature Review. Sports Health, 3 (6) : 514-519, 2011.
6) 亀山泰, 横江清司, 井戸田仁 : スポーツ選手の足背外側部痛 いわゆるCuboid syndromeの経験. 日臨スポーツ医会誌, 7 (3) : 267-270, 1999.
7) 熊澤雅樹, 亀山泰, 井戸田仁 : アスリートの足外側部痛-いわゆるCuboid syndromeの検討-. 日足外会誌, 37 (1) : 64-67, 2016.
8) Marshall, P., Hamilton, W. G. : Cuboid subluxation in ballet dancers. Am J Sports Med, 20 (2) : 169-175, 1992.
9) Jennings, J., Davies, G. J. : Treatment of Cuboid Syndrome Secondary to Lateral Ankle Sprains : A Case Series. J Orthop Sports Phys Ther, 35 (7) : 409-415, 2005.
10) 中嶋寛之 : 足のスポーツ障害. 整・災外, 28 : 1423-1429, 1985.
11) 獅子目賢一郎, 田島直也, 黒木俊政 : 高校生スポーツ選手にみられた足部痛-Cuboid Syndromeを考慮して. 別冊整形外科, 25 : 122-124, 1994.
12) 石井朝夫 : スポーツでの腱損傷. Jpn J Sports Sci, 15 : 383-387, 1996.
13) 萬納寺毅智 : ランニングによる足関節部の腱・腱鞘・滑液包炎. 臨床スポーツ医学, 8 : 1151-1157, 1991.
14) Traister, E., Simons, S. : Diagnostic Considerations of Lateral Column Foot Pain in Athletes. Curr Sports Med Rep, 13 (6) : 370-376, 2014.
15) Hallinan, J. T., Wilbur, W., Pathria, M. N., et al. : The peroneus longus muscle and tendon : a review of its anatomy and pathology. Skeletal Radiol, 48 (9) : 1329-1344, 2019.
16) Horner, J. K., Fiala, K. : Calcaneocuboid Ligament Complex Reconstruction for the Cuboid Syndrome in a-14-Years-Old Athlete ; A Case Report. JBJS Case Connect, 11 (4) : 2021. doi : 10.2106/JBJS.CC.21.00198

V章 各論 < 疲労骨折 >

P.340 掲載の参考文献
1) Wentz, L., Liu, P. Y., Haymes, E., et al. : Females have a greater incidence of stress fractures than males in both military and athletic populations : a systemic review. Mil Med, 176 (4) : 420-430, 2011.
2) 松橋優介, 根本孝一, 佐々尾 宙ほか : 青年期自衛隊員における骨折の疫学的検討. 骨折, 36 (2) : 426-429, 2014.
3) Iwamoto, J., Takeda, T. ; Stress fractures in athletes : review of 196 cases. J Orthop Sci, 8 (3) : 273-278, 2003.
4) Goldberg, B., Pecora, C. : Stress Fractures. Phys Sportsmed, 22 (3) : 68-78, 1994.
5) Hame, S. L., LaFemina, J. M., McAllister, D. R., et al. : Fractures in the collegiate athlete. Am J Sports Med, 32 (2) : 446-451, 2004.
6) Arendt, E., Agel, J., Heikes, C., et al. : Stress injuries to bone in college athletes : a retrospective review of experience at a single institution. Am J Sports Med, 31 (6) : 959-968, 2003.
7) Changstrom, B. G., Brou, L., Khodaee, M., et al. : Epidemiology of stress fracture injuries among US high school athletes, 2005-2006 through 2012-2013. Am J Sports Med, 43 (1) : 26-33, 2015.
8) Rizzone, K. H., Ackerman, K. E., Roos, K. G., et al. : The Epidemiology of Stress Fractures in Collegiate Student-Athletes, 2004-2005 Through 2013-2014 Academic Years. J Athl Train, 52 (10) : 966-975, 2017.
9) Ramkumar, P. N., Farber, J., Arnouk, J., et al. : Injuries in a Professional Ballet Dance Company : A 10-year Retrospective Study. J Dance Med Sci, 20 (1) : 30-37, 2016.
10) Ekegren, C. L., Quested, R., Brodrick, A. : Injuries in pre-professional ballet dancers : Incidence, characteristics and consequences. J Sci Med Sport, 17 (3) : 271-275, 2014.
11) Gam, A., Goldstein, L., Karmon, Y., et al. : Comparison of stress fractures of male and female recruits during basic training in the Israeli anti-aircraft forces. Mil Med, 170 (8) : 710-712, 2005.
12) Beck, T. J., Ruff, C. B., Shaffer, R. A., et al. : Stress fracture in military recruits : gender differences in muscle and bone susceptibility factors. Bone, 27 (3) : 437-444, 2000.
13) Pester, S., Smith, P. C. : Stress fractures in the lower extremities of soldiers in basic training. Orthop Rev, 21 (3) : 297-303, 1992.
14) Ruddick, G. K., Lovell, G. A., Drew, M. K., et al. : Epidemiology of bone stress injuries in Australian high performance athletes : A retrospective cohort study. J Sci Med Sport, 22 (10) : 1114-1118, 2019.
15) Sharma, S., Dhillon, M. S., Kumar, P., et al. : Patterns and Trends of Foot and Ankle Injuries in Olympic Athletes : A Systematic Review and Meta-analysis. Indian J Orthop, 54 (3) : 294-307, 2020.
16) 深井厚, 岩噌弘志 : 疲労骨折の疫学. 整・災外, 59 (11) : 1381-1386, 2016.
17) 亀山泰 : 足の疲労骨折. 臨スポーツ医, 31 (7) : 654-659, 2014.
18) Barrack, M. T., Gibbs, J. C., De Souza, M. J., et al. : Higher incidence of bone stress injuries with increasing female athlete triad-related risk factors : a prospective multisite study of exercising girls and women. Am J Sports Med, 42 (4) : 949-958, 2014.
19) 平崎亜紀子, 大場俊二 : 成長期の疲労骨折の疫学-当院患者における実態調査を通じて-. 臨スポーツ医, 27 (1) : 97-105, 2010.
20) Barrow, G. W., Saha, S. : Menstrual irregularity and stress fractures in collegiate female distance runners. Am J Sports Med, 16 (3) : 209-216, 1988.
21) Bennell, K. L., Malcolm, S. A., Thomas, S. A., et al. : The incidence and distribution of stress fractures in competitive track and field athletes. A twelve-month prospective study. Am J Sports Med, 24 (2) : 211-217, 1996.
22) 田原圭太郎, 鎌田浩史, 山澤文裕 : 高校陸上競技選手のスポーツ外傷・障害調査における疲労骨折に関する検討-全国高等学校総合体育大会・全国高等学校駅伝競走大会の調査-. 日臨スポーツ医会誌, 29 (3) : 372-379, 2021.
23) 初雁晶子, 鳥居俊 : 大学生男子長距離走選手における疲労骨折発生に関する実態調査. 日臨スポーツ医会誌, 26 (3) : 390-396, 2018.
24) 三宅秀俊, 杉山貴哉, 杉山貴生ほか : スポーツ整形外科クリニックを受診した中学・高校陸上競技選手の傷害調査. 日臨スポーツ医会誌, 27 (2) : 308-313, 2019.
25) 大西純二 : 陸上競技走種目における疲労骨折の疫学. 臨スポーツ医, 33 (4) : 352-356, 2016.
26) Ekstrand, J., Torstveit, M. K. : Stress fractures in elite male football players. Scand J Med Sci Sports, 22 (3) : 341-346, 2012.
27) Sundgot-Borgen, J., Torstveit, M. K. : The female football player, disordered eating, menstrual function and bone health. Br J Sports Med, 41 (Suppl 1) : 68-72, 2007.
28) Le Gall, F., Carling, C., Reilly, T. : Injuries in young elite female soccer players : an 8-season prospective study. Am J Sports Med, 36 (2) : 276-284, 2008.
29) Miyamori, T., Nagao, M., Sawa, R., et al. : Playing football on artificial turf as a risk factor for fifth metatarsal stress fracture : a retrospective cohort study. BMJ Open, 9 (2) : e022864, 2019.
30) Fujitaka, K., Taniguchi, A., Isomoto, S., et al. : Pathogenesis of Fifth Metatarsal Fractures in College Soccer Players. Orthop J Sports Med, 3 (9) : 2325967115603654, 2015.
31) Khan, M., Madden, K., Burrus, M. T., et al. : Epidemiology and Impact on Performance of Lower Extremity Stress Injuries in Professional Basketball Players. Sports Health, 10 (2) : 169-174, 2018.
32) Begly, J. P., Guss, M., Ramme, A. J., et al. : Return to Play and Performance After Jones Fracture in National Basketball Association Athletes. Sports Health, 8 (4) : 342-346, 2016.
33) Agel, J., Olson, D. E., Dick, R., et al. : Descriptive epidemiology of collegiate women's basketball injuries : National Collegiate Athletic Association Injury Surveillance System, 1988-1989 through 2003-2004. J Athl Train, 42 (2) : 202-210, 2007.
34) Dick, R., Hertel, J., Agel, J., et al. : Descriptive epidemiology of collegiate men's basketball injuries : National Collegiate Athletic Association Injury Surveillance System, 1988-1989 through 2003-2004. J Athl Train, 42 (2) : 194-201, 2007.
35) Brooks, J. H., Fuller, C. W., Kemp, S. P., et al. : Epidemiology of injuries in English professional rugby union : part 1 match injuries. Br J Sports Med, 39 (10) : 757-766, 2005.
36) Brooks, J. H., Fuller, C. W., Kemp, S. P., et al. : Epidemiology of injuries in English professional rugby union : part 2 training Injuries. Br J Sports Med, 39 (10) : 767-775, 2005.
37) Pearce, C. J., Brooks, J. H., Kemp, S. P., et al. : The epidemiology of foot injuries in professional rugby union players. Foot Ankle Surg, 17 (3) : 113-118, 2011.
38) Dixon, M., Fricker, P. : Injuries to elite gymnasts over 10 yr. Med Sci Sports Exerc, 25 (12) : 1322-1329, 1993.
39) 中村格子 : 新体操選手の疲労骨折. 臨スポーツ医, 33 (4) : 386-391, 2016.
40) 大坪俊矢, 重森裕, 福嶋洋ほか : 新体操競技におけるスポーツ傷害の実態調査-2018年度のユース世代選手を対象として-. 日臨スポーツ医会誌, 30 (1) : 248-253, 2022.
41) Kadel, N., Teitz, C., Kronmal, R. : Stress fractures in ballet dancers. Am J Sports Med, 20 (4) : 445-449, 1992.
42) O'Malley, M. J., Hamilton, W. G., Munyak, J. : Stress fractures at the base of the second metatarsal in ballet dancers. Foot Ankle Int, 17 : 89-94, 1996.
43) Harrington, T., Crichton, K. J., Anderson, I. F. : Overuse ballet injury of the base of the second metatarsal. A diagnostic problem. Am J Sports Med, 21 (4) : 591-598.
P.351 掲載の参考文献
1) Brukner, P., Bradshaw, C., Khan, K. M., et al. : Stress fractures : A review of 180 cases. Clin J Sport Med, 6 (2) : 85-89, 1996.
2) Iwamoto, J., Takeda, T. : Stress fractures in athletes : review of 196 cases. J Orthop Sci, 8 (3) : 273-278, 2003.
3) 宇佐見則夫 : 【疲労骨折の診かた治しかた】脛骨内果疲労骨折. MB Orthop, 25 (13) : 39-43, 2012.
4) Schils, J. P., Andrish, J. T., Piraino, D. W., et al. : Medial malleolar stress fractures in seven patients : Review of the clinical and imaging features. Radiology, 185 (1) : 219-221, 1992.
5) Lempainen, L., Liimatainen, E., Heikkila, J., et al. : Medial malleolar stress fracture in athletes : diagnosis and operative treatment. Scand J Surg, 101 (4) : 261-264, 2012.
6) Ariyoshi, M., Nagata, K., Hiraoka, K., et al. : Stress fracture of the medial malleolus. Kurume Med J, 44 (3) : 233-236, 1997.
7) Reider, B., Falconiero, R., Yurkofsky, J. : Nonunion of a medial malleolus stress fracture : A case report. Am J Sports Med, 21 (3) : 478-481, 1993.
8) Boden, B. P., Osbahr, D. C. : High-risk stress fractures : evaluation and treatment. J Am Acad Orthop Surg, 8 (6) : 344-353, 2000.
9) Devas, M. : Stress Fractures. Churchill Livingstone, Edinburgh-London-New York, 93-95, 1975.
10) Shelbourne, K. D., Fisher, D. A., Rettig, A. C., et al. : Stress fractures of the medial malleolus. Am J Sports Med, 16 (1) : 60-63, 1988.
11) Irion, V., Miller, T. L., Kaeding, C. C. : The treatment and outcomes of medial malleolar stress fractures : a systematic review of the literature. Sports Health, 6 (6) : 527-530, 2014.
12) 小室保尚, 萬納寺毅智, 竹村夫美子ほか : スポーツによる足関節内果疲労骨折. 整スポ会誌, 10 : 511-517, 1991.
13) 富原朋弘, 上野憲司, 金国一ほか : スポーツ選手における脛骨内果疲労骨折. 整スポ会誌, 20 (3) : 357-363, 2000.
14) Jowett, A. J. L., Birks, C. L., Blackney, M. C. : Medial malleolar stress fracture secondary to chronic ankle impingement. Foot Ankle Int, 29 (7) : 716-721, 2008.
15) Nguyen, A., Beasley, I., Calder, J. : Stress fractures of the medial malleolus in the professional soccer player demonstrate excellent outcomes when treated with open reduction internal fixation and arthroscopic spur debridement. Knee Surg Sports Traumatol Arthrosc, 27 (9) : 2884-2889, 2019.
16) Lee, H. S., Lee, Y. K., Kim, H. S., et al. : Medial malleolar stress fracture resulting from repetitive stress caused by lateral ankle instability : A case report. Medicine (Baltimore), 98 (5) : e14311, 2019.
17) Okada, K., Senma, S., Abe, E., et al. : Stress fractures of the medial malleolus : A case report. Foot Ankle Int, 16 (1) : 49-52, 1995.
18) 櫻吉啓介, 小林尚史 : 両側脛骨内果疲労骨折の1例. 臨整外, 33 (10) : 1251-1254, 1998.
19) 中康匡, 山際哲夫 : 足関節内果疲労骨折の小経験. 関西臨スポーツ医研会誌, 25 : 5-10, 2015.
20) 吉田玄, 大久保衞, 上野憲司ほか : スポーツ選手に発生した脛骨内果疲労骨折の3例. 日足外会誌, 12 : 71-73, 1991.
21) Sherbondy, P. S., Sebastianelli, W. J. : Stress fractures of the medial malleolus and distal fibula. Clin Sports Med, 25 (1) : 129-137, 2006.
22) van den Bekerom, M. P. J., Kerkhoffs, G. M. M. J., van Dijk, C. N. : Treatment of Medial Malleolar Stress Fractures. Oper Tech Sports Med, 17 : 106-111, 2009.
23) 山田隆宏, 宇佐見則夫, 工藤加奈子ほか : 足関節内果周辺に生じる疲労骨折 : 骨折型と治療について. 日足外会誌, 41 (1) : 192-195, 2020.
24) Menge, T. J., Looney, C. G. : Medial malleolar stress fracture in an adolescent athlete. J Foot Ankle Surg, 54 (2) : 242-246, 2015.
25) Haraguchi, N., Ota, K., Tsunoda, N., et al. : Weight-bearing-line analysis in supramalleolar osteotomy for varus-type osteoarthritis of the ankle. J Bone Joint Surg Am, 97 (4) : 333-339, 2015.
26) Saunier, J., Chapurlat, R. : Stress fracture in athletes. Joint Bone Spine, 85 (3) : 307-310, 2018.
27) Banal, F., Etchepare, F., Rouhier, B., et al. : Ultrasound ability in early diagnosis of stress fracture of metatarsal bone. Ann Rheum Dis, 65 (7) : 977-978, 2006.
28) 皆川洋至 : 疲労骨折の診断. 整・災外, 59 (11) : 1403-1409, 2016.
29) Banal, F., Gandjbakhch, F., Foltz, V., et al. : Sensitivity and specificity of ultrasonography in early diagnosis of metatarsal bone stress fractures : A pilot study of 37 patients. J Rheumatol, 36 (8) : 1715-1719, 2009.
30) Caesar, B. C., McCollum, G. A., Elliot, R., et al. : Stress fractures of the tibia and medial malleolus. Foot Ankle Clin, 18 (2) : 339-355, 2013.
31) 可徳三博, 青柳孝彦, 峯博子ほか : 足関節内果疲労骨折に対する治療経験. 骨折, 34 (3) : 657-660, 2012.
32) Kor, A., Saltzman, A. T., Wempe, P. D. : Medial malleolar stress fractures : Literature review, diagnosis, and treatment. J Am Podiatr Med Assoc, 93 (4) : 292-297, 2003.
33) Orava, S., Karpakka, J., Taimela, S., et al. : Stress fracture of the medial malleolus. J Bone Joint Surg Am, 77 (3) : 362-365, 1995.
34) 片桐健太, 立石智彦, 長瀬寅ほか : スポーツ選手に生じた足関節内果疲労骨折に対する関節鏡併用手術の経験. JOSKAS, 40 (2) : 490-491, 2015.
35) Approved standard indications of ESWT https://www.shockwavetherapy.org/about-eswt/indications/
36) Taki, M., Iwata, O., Shiono, M., et al. : Extracorporeal shock wave therapy for resistant stress fracture in athletes : a report of 5 cases. Am J Sports Med, 35 (7) : 1188-1192, 2007.
37) 高橋謙二, 加藤雄太, 土屋明弘 : フィギュアスケートによる足関節内果疲労骨折. 臨スポーツ医, 39 (2) : 171-174, 2022.
38) 富原朋弘, 原庸, 谷内政俊ほか : 脛骨内果疲労骨折における術後骨癒合の検討. JOSKAS, 39 (2) : 488-489, 2014.
39) Kanto, R., Fukunishi, S., Morooka, T., et al. : Double threaded screw fixation for bilateral stress fracture of the medial malleolus. Case Rep Orthop, 2014 : 729035, 2014.
40) Wegner, A. M., Wolinsky, P. R., Robbins, M. A., : Headless compression screw fixation of vertical medial malleolus fractures is superior to unicortical screw fixation. Am J Orthop, 47 (8) : 1-10, 2018.
41) 亀岡尊史, 中谷知薫, 服部惣一ほか : 高校生アスリートにおける足関節内果疲労骨折の3例. 日足外会誌, 36 (1) : 317-320, 2015.
42) 小倉拓馬, 中村優子, 海江田光祥ほか : 足関節内果疲労骨折の3例. 整形外科と災害外科, 68 (4) : 681-683, 2019.
43) 杉本和也, 磯本慎二, 中本佑輔ほか : 足部の難治性疲労骨折に対する手術治療. 整・災外, 59 (11) : 1477-1482, 2016.
44) 田中寿一 : サッカー選手の疲労骨折. 臨スポーツ医, 33 (4) : 372-377, 2016.
45) 山内大生, 木村由佳, 奈良岡琢哉ほか : 骨端線閉鎖前の脛骨内果疲労骨折に対してバットレスプレートを用いて骨接合術を行った1例. 青森スポ研誌, 24 : 33-36, 2015.
46) 西井幸信, 衣笠清人, 寺本司ほか : 手術治療を行った足関節内果疲労骨折の検討. 日足外会誌, 37 (1) : 284-287, 2016.
47) Klavas, D. M., Holderread, B. M., Liu, J., et al. : Bilateral medial malleolus stress fractures in a high school athlete treated with open reduction internal fixation. Cureus, 13 (9) : e18186, 2021.
48) Wegner, A. M., Wolinsky, P. R., Robbins, M. A., et al. : Antiglide plating of vertical medial malleolus fractures provides stiffer initial fixation than bicortical or unicortical screw fixation. Clin Biomech, 31 : 29-32, 2016.
49) 岡田貴充, 野村茂治, 中島聡ほか : 足関節内果疲労骨折の2症例. 日小整会誌, 10 (2) : 121-124, 2001.
50) 柳澤真也, 高岸憲二, 長谷川惇ほか : スポーツにより発症した脛骨内果疲労骨折の5例. 日足外会誌, 30 (2) : 82-86, 2009.
51) 亀山泰, 横江清司, 鬼頭満ほか : 足関節内果および足舟状骨疲労骨折について. スポーツ医・科, 22 : 1-5, 2010.
52) 鈴木義司, 鈴木隆辰, 山下大輔ほか : 青年期に発症した足関節内果疲労骨折7例の治療経験. 静岡整形誌, 8 (2) : 142-146, 2015.
53) Scranton, P. E. Jr., McDermott, J. E. : Anterior tibiotalar spurs : a comparison of open versus arthroscopic debridement. Foot Ankle, 13 (3) : 125-129, 1992.
54) 村瀬研一 : 足関節内果の疲労骨折. 臨スポーツ医, 20 : 157-162, 2003.
P.360 掲載の参考文献
1) Towne, L. C., Blazina, M. E., Cozen, L. N. : Fatigue fracture of the tarsal navicular. J Bone Joint Surg Am, 52 (2) : 376-378, 1970.
2) Mann, J. A., Pedowitz, D. I. : Evaluation and treatment of navicular stress fractures including nonunions, revision surgery, and persistent pain after treatment. Foot Ankle Clin, 14 (2) : 187-204, 2009.
3) Fitch, K. D., Blackweel, J. B., Gilmour, W. N. : Operation for non-union of stress fracture of the tarsal navicular. J Bone Joint Surg Br, 71 (1) : 105-110, 1989.
4) 鳥居俊 : 舟状骨 (足部) 疲労骨折. 臨スポーツ医, 20 (臨増) : 166-172, 2003.
5) 亀山泰 : 舟状骨疲労骨折. MB Orthop, 24 (13) : 13-23, 2011.
6) Torg, J. S., Pavlov, H., Cooley, L. H., et al. : Stress fractures of the tarsal navicular. A retrospective review of twenty-one cases. J Bone Joint Surg Am, 64 (5) : 700-712, 1982.
7) Pavlov, H., Torg, J. S., Freiberger, R. H. : Tarsal navicular stress fractures : radiographic evaluation. Radiology, 148 (3) : 641-645, 1983.
8) 宮脇素子, 岡田尚之, 川村孝一郎ほか : 足舟状骨疲労骨折の成因について. 日足外会誌, 29 (2) : 100-103, 2008.
9) Khan, K. M., Fuller, P. J., Brukner, P. D., et al. : Outcome of conservative and surgical management of navicular stress fracture in athletes. Eighty-six cases proven with computerized tomography. Am J Sports Med, 20 (6) : 657-666, 1992.
10) Saxena, A., Fullem, B., Hannaford, D. : Results of treatment of 22 navicular stress fractures and a new proposed radiographic classification system. J Foot Ankle Surg, 39 (2) : 96-103, 2000.
11) 杉本和也 : 舟状骨疲労骨折の病態, 診断および治療. MB Orthop, 25 (13) : 45-50, 2012.
12) Torg, J. S., Moyer, J., Gaughan, J. P., et al. : Management of tarsal navicular stress fractures : conservative versus surgical treatment : a meta-alalysis. Am J Sports Med, 38 (5) : 1048-1053, 2010.
13) Fowler, J. R., Gaughan, J. P., Boden, B. P., et al. : The non-surgical treatment of tarsal navicular stress fractures. Sports Med, 41 (8) : 613-619, 2011.
14) 竹林知美, 高橋謙二, 高橋達也ほか : アスリートの舟状骨疲労骨折に対し保存治療として適応した体外衝撃波療法の治療経験. 日足外会誌, 39 (1) : 218-221, 2018.
15) 齋田竜太, 門田聡, 角田和彦ほか : 足舟状骨疲労骨折難治症例に対し距舟関節背側骨切除術を加えた2例. 日足外会誌, 41 (1) : 245-248, 2020.
16) Bui-Mansfield, L. T., Lenchik, L., Rogers, L. F., et al. : Osteochondritis dissecans of the tarsal navicular bone : imaging findings in four patients. J Comput Assist Tomogr, 24 (5) : 744-747, 2000.
17) 門田聡, 長谷川惇, 野口英雄ほか : 舟状骨軟骨障害に対する治療経験. 日足外会誌, 29 (2) : 69-74, 2008.
18) Ozturk, E., Sirvanci, M., Mutlu, H., et al. : Osteochondritis dissecans of the tarsal navicular. Foot Ankle Int, 29 (4) : 442-444, 2008.
19) Kanazawa, K., Yoshimura, I., Shiokawa, T., et al. : Surgical treatment of an osteochondral lesion associated with stress fracture of the tarsal navicular : a case report. J Foot Ankle Surg, 52 (1) : 99-102, 2013.
20) Saxena, A., Fullem, B. W. : A unique procedure for treatment of osteochondral lesions of the tarsal navicular : three cases in athletes. J Foot Ankle Surg, 52 (2) : 249-253, 2013.
21) Kumahara, R., Kimura, Y., Sasaki, E., et al. : Osteochondral autograft transplantation for rare case of osteochondral lesion of the tarsal navicular in an adolescent athlete : a case report. Foot Ankle Surg, 107 (6) : 541-547, 2022.
22) Togher, C. J., Nguyen, G., Pascarella, E. : Surgical treatment of a navicular osteochondral lesion using micronized cartilage matrix : a case report. Foot Ankle Surg, 1 (1), 2021.
P.367 掲載の参考文献
1) Lawrence, S. J., Botte, M. J. : Jones' fractures and related fractures of the proximal fifth metatarsal. Foot Ankle, 14 (6) : 358-365, 1993.
2) Den Hartog, B. D. : Fracture of the proximal fifth metatarsal. J Am Acad Orthop Surg, 17 (7) : 458-464, 2009.
3) Jones, R. : Fractures of the base of the fifth metatarsal bone by indirect violence. Ann Surg, 35 (6) : 697-700, 1902.
4) Shereff, M. J., Yang, Q. M., Kummer, F. J., et al. : Vascular anatomy of the fifth metatarsal. Foot Ankle, 11 (6) : 350-353, 1991.
5) Polzer, H., Polzer, S., Mutschler, W., et al. : Acute fractures to the proximal fifth metatarsal bone ; development of classification and treatment recommendations based on the current evidence. Injury, 43 (10) : 1626-1632, 2012.
6) Torg, J. S., Balduini, F. C., Zelko, R. R., et al. : Fractures of the base of the fifth metatarsal distal to the tuberosity. Clasification and guidelines for non-surgical and surgical management. J Bone Joint Surg Am, 66 (2) : 209-214, 1984.
7) Ekstrand, J., Torstveit, M. K. : Stress fractures in elite male footballplayers. Scand J Med Sci Sports, 22 (3) : 341-346, 2012.
8) 齋田良知, 高澤祐治, 池田浩 : ユース年代サッカー選手における第5中足骨疲労骨折の発生状況. 日整外スポーツ医会誌, 29 : 258, 2009.
9) 齋田良知, 池田浩, 中島啓樹ほか : プロサッカー選手における第5中足骨疲労骨折 (Jones骨折) の発生状況調査. JOSKAS, 40 (4) : 531, 2015.
10) Ekstrand, J., van Dijk, C. N. : Fifth metatarsal fractures among male professional footballers ; a potential career-ending disease. Br J Sports Med, 47 (12) : 754-758, 2013.
11) 荻内隆司 : 疲労骨折 (Jones骨折) の疫学. 予防に導くスポーツ整形外科, 古賀英之ほか編, 文光堂, 260-264, 2019.
12) Matsuda, S., Futabashi, T. : Risk factors and mechanism of fifth metatarsal stress fracture. Sports Injuries snd Prevention, Springer Japan, Tokyo, 355-363, 2015.
13) Raikin, S. M., Slenker, N., Ratigan, B. : The association of a varus hindfoot and fracture of the fifth metatarsal metaphyseal-diaphyseal junction : the Jones fracture. Am J Sports Med, 36 (7) : 1367-1372, 2008.
14) Saita, Y., Nagao, M., Kawasaki, T., et al. : Range limitation in hip internal rotation and fifth metatarsal stress fractures (Jones fracture) in professional football players. Knee Surg Sports Traumatol Arthrosc, 26 (7) : 1943-1949, 2017.
15) Yoho, R. M., Carrington, S., Dix, B., et al. : The association of metatarsus adductus to the proximal fifth metatarsal Jones fracture. J Foot Ankle Surg, 51 (6) : 739-742, 2012.
16) Fujitaka, K., Taniguchi, A., Isomoto, S., et al. : Pathogenesis of fifth metatarsal fractures in college soccer players. Orthop J Sports Med, 3 (9) : 23259667115603654, 2015.
17) Fleischer, A. E., Stack, R., Klein, E. E., et al. : Forefoot adduction is a risk factor for jones fracture. J Foot Ankle Surg, 56 (5) : 917-921, 2017.
18) Dao, D., Sodhi, S., Tabasinejad, R., et al. : Serum 25-hydro-xyvitamin D level and stress fractures in military personal : a systematic review and meta-analysis. Am J Sports Med, 43 (8) : 2064-2072, 2015.
19) Shimasaki, Y., Nagao, M., Miyamori, T., et al. : Evaluating the risk of a fifth metatarsal stress fracture by measuring the serum 25-hydroxyvitamin D levels. Foot Ankle Int, 37 (3) : 307-311, 2016.
20) Eskrand, J., Nigg, B. M. : Surface-related injuries in soccer. Sports Med, 8 (1) : 56-62, 1989.
21) Poulos, C. C., Gallucci, J. Jr., Gage, W. H., et al. : The perceptions of professional soccer players on the risk of injury from comptition and training on natural grass and 3rd generation artificial turf. BMC Sports Sci Med Rehabil, 6 (1) : 11, 2014.
22) Miyamori, T., Nagao, M., Sawa, R., et al. : Playing football on artificial turf as a risk factor for fifth metatarsal stress fracture : a retrospective cohort study. BMJ Open, 9 (2) : e022864, 2019.
23) Queen, R. M., Charnock, B. L., Garrett, W. E. Jr., et al. : A comparison of cleat types during two football-specific tasks on Field Turf. Br J Sports Med, 42 (4) : 278-284, 2008.
24) 植木博子 : Jones骨折検診. 予防に導くスポーツ整形外科, 古賀英之ほか編, 文光堂, 282-287, 2019.
25) Jones骨折研究会 https://saita0617.wixsite.com/jones
26) Strauss, E., Ryaby, J. P., McCabe, J. : Treatment of Jones' fractures of the foot with adjunctive use of low-pulsed ultrasound stimulation. J Orthop Trauma, 13 (4) : 310-311, 1999.
27) Alvarez, R. G., Cincere, B., Channappa, C., et al. : Extracorporeal shock wave treatmentof non- or delayed union of proximal metatarsal fractures. Foot Ankle Int, 32 (8) : 746-754, 2011.
28) Tanaka, K., Kanamori, K., Kajiwara, M., et al : Extracorporeal Shock Wave Therapy (ESWT) for Refractory. Int J Foot Ankle, 3 (1) : 3 : 027, 2019.
29) 立石智彦 : ジョーンズ骨折術後の競技復帰. 臨スポーツ医, 36 (8) : 916-920, 2019.
30) Kavanaugh, J. H., Brower, T. D., Mann, R. V. : The Jones fracture revisited. J Bone Joint Surg Am, 60 (6) : 776-782, 1978.
31) DeLee, J. C., Evans, J. P., Julian, J. : Stress fracture of the fifth metatarsal. Am J Sports Med, 11 (5) : 349-353, 1983.
32) Tsukada, S., Ikeda, H., Seki, Y., et al. : Intramedullary screw fixation with bone autografting to treat proximal fifth metatarsal metaphyseal-diaphyseal fracture in athletes : a case series. Sports Med Arthrosc Rehabil Ther Technol, 4 (1) : 25, 2012.
33) Bernstein, D. T., Mitchell, R. J., McCulloch, P. C., et al. : Treatment of proximal fifth metatarsal fractures and refractures with plantar plating in elite athletes. Foot and Ankle Int, 39 (12) : 1410-1415, 2018.
34) Chloros, G. D., Kakos, C. D., Tastsidis, I. K., et al. : Fifth metatarsal fractures : an update on management, complications, and outcomes. EFFORT Open Reviews, 7 (1) : 113-125, 2022.
35) Justin, D. O., Glisson, R. R., Nunley, J. A. : A biomechanical comparison of partially thresded screws versus tapered variable pitch screws. Am J Sports Med, 40 (3) : 691-698, 2012. doi : 10.1177/0363546511428870
36) 荻内隆司 : 中足骨疲労骨折. 整形外科手術イラストレイテッド. 下腿・足の手術, 木下光雄ほか編, 中山書店, 85-90, 2019.
37) Weel, H., Mallee, W. H., van Dijk, C. N., et al. : The effect of concentrated bone marrow aspirate in operative treatment of fifth metatarsal stress fractures ; a double-blind randomized controlled trial. BMC Musculoskelet Disord, 16 : 211, 2015.
38) Murawski, C. D., Kennedy, J. G. : Percutaneus internal fixation of proximal fifth metatarsal jones fractures (Zone II and III) with Charlotte Carolina screw and bone marrow aspirate concentrate ; an outocome sutudy in athletes. Am J Sports Med, 39 (6) : 1295-1301, 2011.
39) Veljkovic, A., Le, V., Escudero, M., et al. : Succesful fifth metatarsal bulk autograft reconstruction of thermal necrosis post intramedullary fixation. Knee Surg Sports Traumatol Arthrosc, 28 (5) : 1595-1599, 2020.
40) 林将也, 荻内隆司, 立石智彦ほか : Jones骨折に対する髄内スクリュー固定術後に生じた熱傷性壊死4例の治療経験. 日足外会誌, 35 : S365, 2014.
41) Kaiser, P. B., Riedel, M. D., Qudsi, R. A., et al. : Iatrogenic fracture gapping during fixation of Jones fractures : Anatomic and mechanical considerations in a cadaveric model. Injury, 49 (8) : 1485-1490, 2018.
42) Lee, K. T., Kim, K. C., Park, Y., et al. : Radiographic evaluation of foot structure following fifth metatarsal stress fracture. Foot Ankle Int, 32 (8) : 796-801, 2011.
43) Lee, K. T., Park, Y. U., Jegal, H., et al. : Prognotic classification of fifth metatarsal stress fracture using planter gap. Foot Ankle Int, 34 (5) : 691-696, 2013.
44) Morimoto, S., Iseki, T., Morooka, T., et al. : Fixation Using the Herbert Screw for Fifth Metatarsal Stress Fractures in High-Level Athletes. Am J Sports Med, 49 (14) : 4001-4007, 2021.
P.376 掲載の参考文献
1) Warren, M. P., Brooks-Gunn, J., Hamilton, L. H., et al. : Scoliosis and fractures in young ballet dancers. Relation to delayed menarche and secondary amenorrhea. N Engl J Med, 314 (21) : 1348-1353, 1986.
2) Kadel, N. J., Teitz, C. C., Kronmal, R. : Stress fractures in ballet dancers. Am J Sports Med, 20 (4) : 445-449, 1992.
3) 能瀬さやか : 女性アスリートの三主徴とその対策. Health Management for Female Athletes (東京大学医学部附属病院女性診療科・産科), 3 : 111-169, 2018.
4) 熊澤雅樹, 横江清司, 亀山泰ほか : アスリートの踵骨疲労骨折. スポーツ医・科学, 31 : 1-3, 2021.
5) Mandell, J. C., Khurana, B., Smith, S. E. ;. Stress fractures of the foot and ankle, part 2 : site-specific etiology, imaging, and treatment, and differential diagnosis. Skeletal Radiol, 46 (9) : 1165-1186, 2017.
6) Sormaala, M. J., Niva, M. H., Kiuru, M. J., et al. : Stress injuries of the calcaneus detected with magnetic resonance imaging in military recruits. J Bone Joint Surg Am, 88 (10) : 2237-2242, 2006.
7) Taketomi, S. Uchiyama, E. Iwaso, H. : Stress fracture of the anterior process of the calcaneus report. Foot Ankle Spec, 6 (5) : 389-392, 2013.
8) 附田愛美, 木村由佳, 佐々木英嗣ほか : 踵骨前方突起疲労骨折の1例. 青森スポ研誌, 28 : 17-20, 2019.
9) Hamilton, W. G. : Chapter 29 Foot and ankle injuries in dancers. In : Coughlin MJ, Mann RA, editors. Surgery of the Foot and Ankle. 7th ed. CV Mosby, St Louis, MO, 1241-1276, 1999.
10) Robertson, G. A., Wood, M. A. : Lower, limb stress fractures in sport : Optimising their management and outcome. World J Orthop, 8 (3) ; 242-255, 2017.
11) Anderson, R. B., Cohen, B. E. : Chapter 31 Stress fractures of the foot and ankle. In : Coughlin, M. J., Saltzman, C. L., Anderson, R. B., editors. 9th ed. Mann's Surg. Foot Ankle. Elsevier Inc, 1688-1722, 2014.
12) Hulkko, A., Orava, S. : Stress fractures in athletes. Int J Sports Med, 8 : 221-226, 1987.
13) 能由美, 今村宏太郎 : 当院における前足部疲労骨折の発症部位の特徴と早期発見, 早期復帰のための検討. 日臨スポーツ医会誌, 19 (2) : 308-313, 2011.
14) 小川正三, 森謙一 : 女性クラシックバレエダンサーにおける中足骨の骨変化について (第2報). 足の外科研究会誌, 4 : 6-9, 1983.
15) Michelli, L. S., Sohn, R. S., Solomon, R. : Stress fractures of the second metatarsal involving Lisfranc's joint in ballet dancers. J Bone Joint Surg Am, 67 (9) : 1372-1375, 1985.
16) 小川正三, 崎原宏, 森謙一ほか : クラシックバレエダンサーにおける第2中足骨基部の過労性骨障害 (疲労骨折) について. 日足外学会誌, 16 ; 244-248, 1995.
17) O'Malley, M. J., Hamilton, W. G., Munyak, J., et al. : Stress fracture at the base of the second metatarsal in ballet dansers. Foot Ankle Int, 17 (2) : 89-94, 1996.
18) Harrington, T., Crichton, K. J., Anderson, I. F. : Overuse ballet injury of the base of the second metatarsal : a diagnostic problem. Am J Sports Med, 21 (4) : 591-598, 1993.
19) 竹島憲一郎, 平石英一, 工藤加奈子ほか : バレエダンサーにおける第2中足骨基部疲労骨折の治療成績. 日足外会誌, 36 (1) : 114-118, 2015.
20) Muscolo, L., Migues, A., Slullitel, G., et al. : Stress Fracture Nonunion at the Base of the Second Metatarsal in a Ballet Dancer A Case Report. Am J Sports Med, 34 (6) : 1535-1537, 2004.
21) Albisetti, W., Perugia, D., De Bartolomeo, O., et al. : Stress fractures of the base of the metatarsal bones in young trainee ballet dancers. Int Orthop, 34 (1) : 51-55, 2010.
22) Myerson, M. S., Fisher, R. T., Burgess, A. R., et al. : Fracture dislocations of the tarsometatarsal joints : End results correlated with pathology and treatment. Foot Ankle, 6 (5) : 225-242, 1986.
23) Queen, R. M., Crowder, T. T., Johnson, H., et al. : Treatment of metatarsal stress fracture : case reports. Foot Ankle Int, 28 (4) : 506-510, 2007.
24) 平石英一, 竹島憲一郎, 森岡健ほか : 20代の女性クラシックバレエダンサーに発症した変形性Lisfranc関節症. ライフエクステンション研紀, 24 : 22-25, 2013.
25) Shearer, C. T., Penner, M. J. : Stress fractures of the base of the fourth metatarsal 2 cases and a review of the literature. Am J Sports Med, 35 (3) : 479-483, 2007.
26) Yokoe, K., Kameyama, Y. ; Relationship between stress fractures of the proximal phalanx of the great toe and hallux valgus. Am J Sport Med, 32 (4) : 1032-34, 2004.
27) 杉本和也 : 足趾のスポーツ傷害. MB Orthop, 23 (13) : 66-71, 2010.
28) 村松由崇, 北城梓, 柴田英哲ほか : 母趾基節骨疲労骨折の1例. 整形外科と災害外科, 69 : 260-264, 2020.
29) Shiraishi, M., Mizuta, H., Kubota, K., et al. : Stress fracture of the proximal phalanx of the great toe. Foot Ankle, 14 (1) : 28-34, 1993.
30) 桜田卓也, 宇佐見則夫, 井口傑ほか : 母趾季基節骨疲労骨折の検討. 東日臨整外会誌, 6 : 111-114, 1994.

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