TEE試験対策ガイド JB-POT・心エコー図専門医試験徹底攻略

出版社: 中外医学社
著者:
発行日: 2022-09-30
分野: 臨床医学:外科  >  麻酔科学/ペイン
ISBN: 9784498137103
電子書籍版: 2022-09-30 (1版1刷)
書籍・雑誌
≪全国送料無料でお届け≫
取寄せ目安:4~8営業日

9,900 円(税込)

電子書籍
章別単位で購入
ブラウザ、アプリ閲覧

9,900 円(税込)

商品紹介

JB-POTや心エコー図専門医などの試験対策に役立つ麻酔科研修医待望の1冊! 専門医合格の近道はここにあり.必須知識のわかりやすい解説+実際の出題を想定した文章題・動画問題で経食道心エコーが確実に身につく嬉しい内容.超音波の原理やドプラ法など基礎から,各疾患,アーチファクトとピットフォールなど臨床でも役立つ内容まで網羅! 合格後も役立ち知識が満載.

目次

  • Chapter 1-1 超音波の原理と画像 (1)超音波の原理

    Chapter 1-2 超音波の原理と画像(2)探触子

    Chapter 1-3 超音波の原理と画像(3)画像設定

    Chapter 1-4 超音波の原理と画像(4)超音波の音響安全

    Chapter 1-5 超音波の原理と画像(5)感染対策と洗浄・消毒

    Chapter 2 ドプラ法の原理と血流波形
      1.ドプラ効果とは
      2.超音波ドプラ血流測定の基礎
      3.ドプラモード(各論)
      4.弁疾患とドプラ波形

    Chapter 3 心臓の形態
      1.心臓の発生
      2.正常心臓の形態
      3.胎生期遺残構造物・病変と誤認されうる正常構造物
      4.心疾患に伴う心臓の形態変化
      5.エコーを用いた心臓形態の評価法
      6.先天性心疾患

    Chapter 4 心臓収縮機能
      1.解剖
      2.左室/右室収縮様式
      3.左室/右室の収縮機能

    Chapter 5 心臓拡張機能
      1.左室拡張機能障害とは
      2.心時相とPV loopからみた拡張機能障害
      3.拡張機能を診断するために必ず理解するべき4つの重要指標
      4.拡張機能障害診断アルゴリズム
      5.拡張機能を評価するためのその他の指標
      6.右室拡張機能
      7.拡張機能障害と特殊病態

    Chapter 6 弁疾患
      1.僧帽弁逆流症(MR)
      2.大動脈弁逆流症(AR)
      3.大動脈弁狭窄症(AS)
      4.人工弁評価
      5.三尖弁逆流症(TR)

    Chapter 7-1 心腔内病変
      1.良性原発性腫瘍
      2.悪性原発性腫瘍
      3.心腔内血栓症
      4.疣贅,膿瘍
      5.僧帽弁輪石灰化
      6.心房壁内血腫

    Chapter 7-2 心血管腔内デバイス
      1.IABP
      2.PCPSまたはVA-ECMO
      3.Impella
      4.左室補助人工心臓(LVAD)

    Chapter 8 心臓外の構造物
      1.低血圧と心タンポナーデ
      2.体外循環準備までのチェック
      3.体外循環開始時のチェック

    Chapter 9 先天性心疾患とTEE
      1.単純な心血管構造異常を伴う先天性心疾患群
      2.やや複雑な心血管構造異常を伴う先天性心疾患
      3.新生児期に手術が必要な疾患群

    Chapter 10 アーチファクトとピットフォール
      1.アーチファクト
      2.異常と間違えやすい正常構造物
      [文章問題]
      [ビデオ問題]

    Chapter 11 カテーテルインターベンション
      1.経カテーテル的僧帽弁形成術:MitraClipTM
      2.経カテーテル的左心耳閉鎖術:WATCHMANTM
      3.経カテーテル的大動脈弁留置術:TAVR/TAVI

    Chapter 12 3D TEEとマルチモダリティー
      1.3次元経食道心エコー(3D TEE)
      2.心腔内エコー(ICE)
      3.心臓CT

    Chapter 13 低血圧・心不全の鑑別と対処法
      1.総論:循環生理の基礎
      2.各論:周術期における循環変動とTEE所見

この書籍の参考文献

参考文献のリンクは、リンク先の都合等により正しく表示されない場合がありますので、あらかじめご了承下さい。

本参考文献は電子書籍掲載内容を元にしております。

Chapter 1 - 1 超音波の原理と画像 ( 1 ) 超音波の原理

P.8 掲載の参考文献
1) Spieker LE, Hufschmid U, Oechslin E, et al. Double aortic and pulmonary valves : an artifact generated by ultrasound refraction. J Am Soc Echocardiogr. 2004 ; 17 : 786-7.
2) 甲子乃人. 超音波の基礎と装置. 4訂版. 東京 : ベクトル・コア ; 2014.
3) 田中直人. よくわかる! 超音波検査に必要な「基礎」. 東京 : 文光堂 ; 2016.
4) Edelman SK. Understanding ultrasound physics. 4th ed. ESP ; 2012.

Chapter 1 - 2 超音波の原理と画像 ( 2 ) 探触子

P.14 掲載の参考文献
1) 甲子乃人. 超音波の基礎と装置. 4訂版. 東京 : ベクトル・コア ; 2014.
2) 田中直人. よくわかる! 超音波検査に必要な「基礎」. 東京 : 文光堂 ; 2016.
3) Edelman SK. Understanding ultrasound physics. 4th ed. ESP ; 2012.

Chapter 1 - 3 超音波の原理と画像 ( 3 ) 画像設定

P.18 掲載の参考文献
1) 甲子乃人. 超音波の基礎と装置. 4訂版. 東京 : ベクトル・コア ; 2014.
2) 田中直人. よくわかる! 超音波検査に必要な「基礎」. 東京 : 文光堂 ; 2016.
3) Edelman SK. Understanding ultrasound physics. 4th ed. ESP ; 2012.

Chapter 1 - 4 超音波の原理と画像 ( 4 ) 超音波の音響安全

P.22 掲載の参考文献
1) 甲子乃人. 超音波の基礎と装置. 4訂版. 東京 : ベクトル・コア ; 2014.
2) 田中直人. よくわかる! 超音波検査に必要な「基礎」. 東京 : 文光堂 ; 2016.
3) (社) 日本超音波医学会機器及び安全に関する委員会, 編纂, (社) 電子情報技術産業協会超音波専門委員会, 編. 超音波の安全性に関する資料. 第4版. 2020年9月公開. https://www.jsum.or.jp/committee/uesc/pdf/safty.pdf

Chapter 1 - 5 超音波の原理と画像 ( 5 ) 感染対策と洗浄・消毒

P.25 掲載の参考文献
1) Rutala WA, Weber DJ, Healthcare Infection Control Practices Advisory Committee. Guideline for disinfection and sterilization in healthcare facilities, 2008. Available from : https://www.cdc.gov/infectioncontrol/pdf/guidelines/disinfection-guidelines-H.pdf. Accessed April 21, 2021.
2) Rutala WA, Weber DJ. Disinfection and sterilization : an overview. Am J Infect Control. 2013 ; 41 (5 Suppl) : S2-5.
3) 日本超音波医学会機器及び安全に関する委員会. 経食道心エコープローブの洗浄について. https://www.jsum.or.jp/committee/uesc/pdf/tee_cleaning.pdf. 2021年4月21日閲覧.
4) 心エコー図ガイドライン作成委員会. 経食道心エコー図検査実施についての勧告 (2018年改訂版). http://www.jse.gr.jp/contents/guideline/data/TEE_guideline2.pdf. 2021年4月21日閲覧.
5) 日本消化器内視鏡技師会安全管理委員会. 内視鏡の洗浄・消毒に関するガイドライン. 第2版.
6) 消化器内視鏡の感染制御に関するマルチソサエティ実践ガイド作成委員会 (日本環境感染学会, 日本消化器内視鏡学会, 日本消化器内視鏡技師会). 消化管内視鏡の感染制御に関するマルチソサエティ実践ガイド. 改訂版. 2013.
7) Kanagala P, Bradley C, Hoffman P, et al. Guidelines for transoesophageal echocardiographic probe cleaning and disinfection from the British Society of Echocardiography. Eur J Echocardiogr. 2011 ; 12 : i17-23.

Chapter 2 ドプラ法の原理と血流波形

P.45 掲載の参考文献
1) 竹内真一, 内田武吉, 椎葉倫久, 他. 医用超音波工学の基礎. コロナ社 ; 2021.
2) 甲子乃人. 超音波の基礎と装置. 4訂版. ベクトルコア ; 2013.
3) 種村正, 高橋秀一. 心臓超音波テキスト. 第3版. 医歯薬出版 ; 2021.
4) Soni NJ, Arntfield R, Kory P. 山田徹, 南太郎, 監訳. Point-of-Care超音波. 原書第2版. 丸善出版 ; 2020.
5) 藤井礼子, 八木登志員. 各種ドプラ法の原理と使い方 パルスドプラ法. 心エコー. 2016 ; 17 : 948-57.
6) 水上尚子. 各種ドプラ法の原理と使い方 連続波ドプラ法. 心エコー. 2016 ; 17 : 958-65.
7) 戸出浩之. 各種ドプラ法の原理と使い方 断層カラードプラ法. 心エコー. 2016 ; 17 : 966-73.
8) 野村実, 監修. 国沢貞之, 編. 経食道心エコー II 真興交易医書出版部 ; 2012.

Chapter 3 心臓の形態

P.60 掲載の参考文献
1) Moore KL, Persaud TVN. 瀬口春道, 小林俊博, Eva Garcia del Saz, 訳. ムーア人体発生学. 原著第8版. 東京 : 医歯薬出版 ; 2011. p.271-318.
2) Sadler TW. 安田峯生, 山田重人, 訳. ラングマン人体発生学. 第11版. 東京 : メディカル・サイエンス・インターナショナル ; 2016. p.183-224.
3) Saremi F, Muresian H, Sanchez-Quintana D. Coronary veins : comprehensive CT-anatomic classification and review of variants and clinical implications. Radiographics. 2012 ; 32 : E1-32.
4) Naqvi N, McCarthy KP, Ho SY. Anatomy of the atrial septum and interatrial communications. J Thorac Dis. 2018 ; 10 (Suppl 24) : S2837-47.
5) Shereen R, Lee S, Salandy S, et al. A comprehensive review of the anatomical variations in the right atrium and their clinical significance. Transl Res Anat. 2019 ; 17 : 100046.
6) Schneider B, Hofmann T, Justen MH, et al. Chiari's network : normal anatomic variant or risk factor for arterial embolic events? J Am Col Cardiol. 1995 ; 26 : 203-10.
7) Xanthos T, Giannakopoulos N, Papadimitriou L. Lipomatous hypertrophy of the interatrial septum : a pathological and clinical approach. Int J Cardiol. 2007 : 121 : 4-8.
8) Zhong YL, Long XM, Jiang LY, et al. Surgical treatment of dextroversion, isolated persistent left superior vena cava draining into the left atrium. J Card Surg. 2015 ; 30 : 767-70.
9) Webb W, Gamsu G, Speckman J, et al. Computed tomographic demonstration of mediastinal venous anomalies. Am J Roentgenol. 1982 ; 139 : 157-61.
10) Atwell WJ, Zoltowski P. A case of left superior vena cava without a corresponding vessel on the right side. Anat Rec. 1938 ; 70 : 525-32.
11) Shumacker HB, King H, Waldhausen JA. Persistent left superior vena cava. Surgical implications, with special reference to caval drainage into the left atrium. Ann Surg. 1967 ; 165 : 797-805.
12) Gaasch WH, Folland ED. Left ventricular function in rheumatic mitral stenosis. Eur Heart J. 1991 ; 12 Suppl B : 66-9.
13) Bisoyi S, Dash AK, Nayak D, et al. Left ventricular pseudoaneurysm versus aneurysm a diagnostic dilemma. Ann Card Anaesth. 2016 ; 19 : 169-72.
15) Van Praagh R, The segmental approach to diagnosis in congenital heart disease. In : Bergsma D, ed. Birth defects original article series, vol 8, no. 5. National Foundation-March of Dimes. Baltimore : Williams & Wilkins, 1972. p.4-23.

Chapter 4 心臓収縮機能

P.76 掲載の参考文献
1) Lang RM, Badano LP, Mor-Avi V, et al. Recommendations for cardiac chamber quantification by echocardiography in adults : an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. J Am Soc Echocardiogr. 2015 ; 28 : 1-39.
2) Venkatachalam S, Wu G, Ahmad M. Echocardiographic assessment of the right ventricle in the current era : application in clinical practice. Echocardiography. 2017 ; 34 : 1930-47.
3) Rudski LG, Lai WW, Afilalo J, et al. Guidelines for echocardiographic assessment of the right heart in adults : a report from the American Society of Echocardiography. J Am Soc Echocardiogr. 2010 ; 23 ; 685-713.
4) Kocica MJ, Corno AF, Carreras-Costa F, et al. The helical ventricular myocardial band : global, three-dimensional, functional architecture of the ventricular myocardium. Eur J Cardiothorac Surg. 2006 ; 295 : S21-40.
5) Sengupta PP, Tajik AJ, Chandrasekaran K, et al. Twist mechanics of the left ventricle : principles and application. JACC Cardiovasc Imaging. 2008 ; 1 : 366-76.
6) Al-Naami GH. Torsion of young hearts : a speckle tracking study of normal infants. Children, and adolescents. Eur J Echocardiogr. 2010 ; 11 : 853-62.
7) Notomi Y, Srinath G, Shiota T, et al. Maturational and adaptive modulation of left ventricular torsional biomechanics : Doppler tissue imaging observation from infancy to adulthood. Circulation. 2006 ; 113 : 2534-41.
8) Takeuchi M, Nakai H, Komukai M, et al. Age-related changes in left ventricular twist assessed by two-dimensional speckle-tracking imaging. J Am Soc Echocardiogr. 2006 ; 19 : 1077-84.
9) Li Z, Mingxing X, Manli F, et al. Assessment of age-related changes in left ventricular twist by twodimensional ultrasound speckle tracking imaging. J Huazhong Univ Sci Technolog Med Sci. 2007 ; 27 : 691-5.
10) Kovacs A, Lakatos B, Tokodi M, et al. Right ventricular mechanical pattern in health and disease : beyond longitudinal shortening. Heart Fail Rev. 2019 ; 24 : 511-20.
11) Buckberg GD. The ventricular septum : the lion of right ventricular function, and its impact on right ventricular restoration. Eur J Cardiothorac Surg. 2006 ; 29 : Suppl 1 : S272-8.
12) Hashimoto I, Watanabe K. Alternation of right ventricular contraction pattern in healthy childrenshift from radial to longitudinal direction at approximately 15mm of tricuspid annular plane systolic excursion. Circ J. 2014 ; 78 : 1967-73.
13) Hu K, Liu D, Niemann M, et al. Methods for assessment of left ventricular systolic function in technically difficult patients with poor imaging quality. J Am Soc Echocardiogr. 2013 ; 26 : 105-13.
14) Luis SA, Chan J, Pellikka PA. Echocardiographic assessment of left ventricular systolic function : an overview of contemporary techniques, including speckle-tracking echocardiography. Mayo Clin Proc. 2019 ; 94 : 125-38.
15) Gal Portnoy S, Rudski LG. Echocardiographic evaluation of the right ventricle : a 2014 perspective. Curr Cardiol Rep. 2015 ; 17 : 21.
16) Smolarek D, Gruchala M, Sobiczewski W. Echocardiographic evaluation of right ventricular systolic function : the traditional and innovative approach. Cardiol J. 2017 ; 24 : 563-72.
17) Puchalski MD, Williams RV, Askovich B, et al. Assessment of right ventricular size and function : echo versus magnetic resonance imaging. Congenit Heart Dis. 2007 ; 2 : 27-31.
18) Schneider M, Binder T. Echocardiographic evaluation of the right heart. Wien Klin Wochenschr. 2018 ; 130 : 413-20.
19) Hsaio SH, Lin SK, Wang WC, et al. Severe tricuspid regurgitation shows significant impact in the relationship among peak systolic tricuspid annular velocity, tricuspid annular plane systolic excursion, and right ventricular ejection fraction. J Am Soc Echocardiogr. 2006 ; 19 : 902-10.
20) Aloia E, Cameli M, D'Ascenzi F, et al. TAPSE : an old but useful tool in different diseases. Int J Cardiol. 2016 ; 225 : 177-83.
21) Singbal Y, Vollbon W, Huyuh LT, et al. Exploring noninvasive tricuspid dP/dt as a marker of right ventricular function. Echocardiography. 2015 ; 32 : 1347-51.

Chapter 5 心臓拡張機能

P.93 掲載の参考文献
1) Schwammenthal E, Popescu BA, Popescu AC, et al. Noninvasive assessment of left ventricular end-diastolic pressure by the response of the transmitral a-wave velocity to a standardized Valsalva maneuver. Am J Cardiol. 2000 ; 86 : 169-74.
3) Diwan A, McCulloch M, Lawrie GM, et al. Doppler estimation of left ventricular filling pressures in patients with mitral valve disease. Circulation. 2005 ; 111 : 3281-9.
4) Bruch C, Stypmann J, Gradaus R, et al. Usefulness of tissue Doppler imaging for estimation of filling pressures in patients with primary or secondary pure mitral regurgitation. Am J Cardiol. 2004 ; 93 : 324-8.
5) Rudski LG, Lai WW, Afilalo J, et al. Guidelines for the echocardiographic assessment of the right heart in adults : a report from the American Society of Echocardiography endorsed by the European Association of Echocardiography, a registered branch of the European Society of Cardiology, and the Canadian Society of Echocardiography. J Am Soc Echocardiogr. 2010 ; 23 : 685-713 ; quiz 86-8.
6) Chowdhury MA, Cook JM, Moukarbel GV, et al. Pre-operative right ventricular echocardiographic parameters associated with short-term outcomes and long-term mortality after CABG. Echo Res Pract. 2018 ; 5 : 155-66.
7) Bolat I. Preoperative right ventricular echocardiographic parameters predict perioperative cardiovascular complications in patients undergoing non-cardiac surgery. Heart Lung Circ. 2020 ; 29 : 1146-51.
8) Sumin AN, Korok EV, Sergeeva TJ. Preexisting right ventricular diastolic dysfunction and postoperative cardiac complications in patients undergoing nonemergency coronary artery bypass surgery. J Cardiothorac Vasc Anesth. 2021 ; 35 : 799-806.
9) Villareal RP, Hariharan R, Liu BC, et al. Postoperative atrial fibrillation and mortality after coronary artery bypass surgery. J Am Coll Cardiol. 2004 ; 43 : 742-8.
10) Christian SA, Schorr C, Ferchau L, et al. Clinical characteristics and outcomes of septic patients with new-onset atrial fibrillation. J Crit Care. 2008 ; 23 : 532-6.
11) Nagueh SF, Kopelen HA, Quinones MA. Assessment of left ventricular filling pressures by Doppler in the presence of atrial fibrillation. Circulation. 1996 ; 94 : 2138-45.

Chapter 6 弁疾患

P.121 掲載の参考文献
1) 日本循環器学会, 日本胸部外科学会, 日本血管外科学会, 日本心臓血管外科学会合同ガイドライン. 2020年改訂版 弁膜症治療のガイドライン. https://www.j-circ.or.jp/cms/wp-content/uploads/2020/04/JCS2020_Izumi_Eishi.pdf
2) Carpentier A, Adams D, Filsoufi F. Mitral valve reconstruction. In : Carpentier's reconstructive valve surgery. Philadelphia : Saunders ; 2010. p.27-174.
3) Zoghbi WA, Adams D, Bonow RO, et al. Recommendations for noninvasive evaluation of native valvular regurgitation : a report from the American Society of Echocardiography Developed in Collaboration with the Society for Cardiovascular Magnetic Resonance. J Am Soc Echocardiogr. 2017 ; 30 : 303-71.
4) Calafiore AM, Iaco AL, Gallina S, et al. Surgical treatment of functional mitral regurgitation. Int J Cardiol. 2013 ; 166 : 559-71.
5) Rizza A, Sulcaj L, Glauber M, et al. Predictive value of less than moderate residual mitral regurgitation as assessed by transesophageal echocardiography for the short-term outcomes of patients with mitral regurgitation treated with mitral valve repair. Cardiovasc Ultrasound. 2007 ; 5 : 25.
6) Varghese R, Itagaki S, Anyanwu AC, et al. Predicting systolic anterior motion after mitral valve reconstruction : using intraoperative transoesophageal echocardiography to identify those at greatest risk. Eur J Cardiothorac Surg. 2014 ; 45 : 132-7 ; discussion 137-8.
7) Nicoara A, Skubas N, Ad N, et al. Guide- lines for the use of transesophageal echocardiography to assist with surgical decision-making in the operating room : a surgery-based approach : from the American Society of Echocardiography in Collaboration with the Society of Cardiovascular Anesthesiologists and the Society of Thoracic Surgeons. J Am Soc Echocardiogr. 2020 ; 33 : 692-734.
8) Correction. J Am Soc Echocardiogr. 2020 ; 33 : 1426.
9) Boodhwani M, de Kerchove L, Glineur D, et.al. Repair-oriented classification of aortic insufficiency : impact on surgical techniques and clinical outcomes. J Thorac Cardiovasc Surg. 2009 ; 137 : 286-94.
10) Cusp height in aortic valves. J Thorac Cardiovasc Surg. 2013 ; 146 : 269-74.
11) Hamamoto M, Kobayashi T, Ozawa M, et al. Pure cusp tear of trifecta bioprosthesis 2 years after aortic valve replacement. Ann Thorac Cardiovasc Surg. 2017 ; 23 : 157-60.
12) Ruiz CE, Hahn RT, Berrebi A, et al. Clinical trial principles and endpoint definitions for paravalvular leaks in surgical prosthesis. J Am Coll Cardiol. 2017 ; 69 : 2067-87.
13) Saran N, Said SM, Schaff HV, et al. Outcome of tricuspid valve surgery in the presence of permanent pacemaker. J Thorac Cardiovasc Surg. 2018 ; 155 : 1498-508.
14) Lancellotti P, Pibarot P, Chambers J, et al. Recommendations for the imaging assessment of prosthetic heart valves : a report from the European Association of Cardiovascular Imaging Endorsed by the Chinese Society of Echocardiography, the Inter-American Society of Echocardiography, and the Brazilian Department of Cardiovascular Imaging. Eur Heart J Cardiovasc Imaging. 2016 ; 17 : 589-90.

Chapter 7 - 2 心血管腔内デバイス

P.144 掲載の参考文献
1) Stevenson LW, Pagani FD, Young JB, et al. INTERMACS profiles of advanced heart failure : the current picture. J Hear Lung Transplant[Internet]. 2009 ; 28 : 535-41. Available from : http://dx.doi.org/10.1016/j.healun.2009.02.015
2) Thiele H, Zeymer U, Neumann FJ, et al. Intra-aortic balloon counterpulsation in acute myocardial infarction complicated by cardiogenic shock (IABP-SHOCK II) : Final 12 month results of a randomised, open-label trial. Lancet. 2013 ; 382 : 1638-45.
4) Cheng JM, Den Uil CA, Hoeks SE, et al. Percutaneous left ventricular assist devices vs. intra-aortic balloon pump counterpulsation for treatment of cardiogenic shock : a meta-analysis of controlled trials. Eur Heart J. 2009 ; 30 : 2102-8.
5) Schmidt M, Tachon G, Devilliers C, et al. Blood oxygenation and decarboxylation determinants during venovenous ECMO for respiratory failure in adults. Intensive Care Med. 2013 ; 39 : 838-46.
6) Mazzeffi M, Greenwood J, Tanaka K, et al. Bleeding, transfusion, and mortality on extracorporeal life support : ECLS Working Group on thrombosis and hemostasis. Ann Thorac Surg. 2016 ; 101 : 682-9.
7) Wilson JM, Bower LK, Fackler JC, et al. Aminocaproic acid decreases the incidence of intracranial hemorrhage and other hemorrhagic complications of ECMO. J Pediatr Surg. 1993 ; 28 : 536-41.
8) Crowley J, Cronin B, Essandoh M, et al. Transesophageal echocardiography for impella placement and management. J Cardiothorac Vasc Anesth[Internet]. 2019 ; 33 : 2663-8.
9) Seyfarth M, Sibbing D, Bauer I, et al. A randomized clinical trial to evaluate the safety and efficacy of a percutaneous left ventricular assist device versus intra-aortic balloon pumping for treatment of cardiogenic shock caused by myocardial infarction. J Am Coll Cardiol. 2008 ; 52 : 1584-8.
10) O'Neill WW, Schreiber T, Wohns DHW, et al. The current use of impella 2.5 in acute myocardial infarction complicated by cardiogenic shock : Results from the USpella Registry. J Interv Cardiol. 2014 ; 27 : 1-11.
11) Dhruva SS, Ross JS, Mortazavi BJ, et al. Association of use of an intravascular microaxial left ventricular assist device vs intra-aortic balloon pump with in-hospital mortality and major bleeding among patients with acute myocardial infarction complicated by cardiogenic shock. JAMA. 2020 ; 323 : 734-45.
12) Rose EA, Gelijns AC, Moskowitz AJ, et al. Long-term use of a left ventricular assist device. N Engl J Med. 2001 ; 345 : 1435-43.
13) Miller LW, Pagani FD, Russell SD, et al. Use of a continuous-flow device in patients awaiting heart transplantation. N Engl J Med. 2007 ; 357 : 885-96.
14) Slaughter MS, Rogers JG, Milano CA, et al. Advanced heart failure treated with continuous-flow left ventricular assist device. N Engl J Med. 2009 ; 361 : 2241-51.
15) Nguyen DQ, Thourani VH. Third-generation continuous flow left ventricular assist devices. Innov Technol Tech Cardiothorac Vasc Surg. 2010 ; 5 : 250-8.
16) Bourque K, Cotter C, Dague C, et al. Design rationale and preclinical evaluation of the HeartMate 3 left ventricular assist system for hemocompatibility. ASAIO J. 2016 ; 62 : 375-83.
17) Mehra MR, Uriel N, Naka Y, et al. A fully magnetically levitated left ventricular assist device-final report. N Engl J Med. 2019 ; 380 : 1618-27.
18) Mehra MR, Naka Y, Uriel N, et al. A fully magnetically levitated circulatory pump for advanced heart failure. N Engl J Med. 2017 ; 376 : 440-50.
19) Heatley G, Sood P, Goldstein D, et al. Clinical trial design and rationale of the multicenter study of maglev technology in patients undergoing mechanical circulatory support therapy with HeartMate 3 (MOMENTUM 3) investigational device exemption clinical study protocol. J Hear Lung Transplant. 2016 ; 35 : 528-36.
20) Stainback RF, Estep JD, Agler DA, et al. Echocardiography in the management of patients with left ventricular assist devices : recommendations from the American Society of Echocardiography. J Am Soc Echocardiogr[Internet]. 2015 ; 28 : 853-909.
21) Kang G, Ha R, Banerjee D. Pulmonary artery pulsatility index predicts right ventricular failure after left ventricular assist device implantation. J Hear Lung Transplant [Internet]. 2016 ; 35 : 67-73.

Chapter 8 心臓外の構造物

P.158 掲載の参考文献
1) 日本循環器学会, 日本心臓血管外科学会, 日本胸部外科学会, 日本血管外科学会合同ガイドライン. 2020年改訂版 大動脈瘤・大動脈解離診療ガイドライン. https://www.j-circ.or.jp/cms/wp-content/uploads/2020/07/JCS2020_Ogino.pdf
2) 渡橋和政. 経食道心エコー法マニュアル 第5版. 東京 : 南江堂 ; 2019.
3) 渡橋和政. 実戦TEEトレーニング : 動画で学ぶ術中戦略. 東京 : 南江堂 ; 2016.
4) Orihashi K. Transesophageal echocardiography during cardiopulmonary resuscitation (CPR-TEE). Circ J. 2020 ; 84 : 820-4.

Chapter 9 先天性心疾患とTEE

P.177 掲載の参考文献
1) 岡本浩嗣, 山浦健, 編. 経食道心エコー. 第3版. 羊土社 ; 2020.
2) Jr PAC, Reeves ST, editors. 野村実, 監修. 小出康弘, 岡本浩嗣, 編. 周術期経食道心エコー実践法. 第4版 (邦訳). 真興交易医書出版 ; 2021.
3) Kouchoukos NT, Blackstone EH, Hanley FL, et al. Kirklin/Barratt-Boyes cardiac surgery. 4th ed. Elsevier ; 2013.

Chapter 10 アーチファクトとピットフォール

P.190 掲載の参考文献
1) Bertrand PB, Levine RA, Isselbacher EM, et al. Fact or artifact in two-dimensional echocardiography : avoiding misdiagnosis and missed diagnosis. J Am Soc Echocardiogr. 2016 ; 29 : 381-91.
2) Le HT, Hangiandreou N, Timmerman R, et al. Imaging artifacts in echocardiography. Anesth Analg. 2016 ; 122 : 633-46.
3) Quien MM, Saric M. Ultrasound imaging artifacts : how to recognize them and how to avoid them. Echocardiography. 2018 ; 35 : 1388-401.
4) Faletra FF, Ramamurthi A, Dequarti MC, et al. Artifacts in three-dimensional transesophageal echocardiography. J Am Soc Echocardiogr. 2014 ; 27 : 453-62.
5) 渡橋和政. アーチファクトとその対策. 経食道心エコー法マニュアル. 5版. 東京 : 南江堂 ; 2019. p.18-23.
6) 国沢卓之, 金信秀. 原理とアーチファクト. In : 国沢卓之. 初心者から研修医のための経食道心エコー 部長も科長もみんな初心者. 東京 : 真興交易医書出版部 ; 2014. p.250-81.
7) 鈴木昭広, 国沢卓之. アーチファクトとピットフォール. In : 国沢卓之. 初心者から研修医のための経食道心エコー II 部長も科長ももう初級者. 東京 : 真興交易医書出版部 ; 2015. p.179-97.

Chapter 11 カテーテルインターベンション

P.210 掲載の参考文献
1) Alfieri O, Maisano F, De Bonis M, et al. The double-orfice technique in mitral valve repair : a simple solution for complex problems. J Thorac Cardiovasc Surg. 2001 ; 122 : 674-81.
2) 日本循環器学会, 日本胸部外科学会, 日本血管外科学会, 日本心臓血管外科学会. 2020年改訂版弁膜症治療のガイドライン. https://www.j-circ.or.jp/cms/wp-content/uploads/2020/04/JCS2020_Izumi_Eishi.pdf (2021年5月閲覧)
4) Feldman T, Foster E, Glower DD, et al. Percutaneous repair or surgery for mitral regurgitation. N Engl J Med. 2011 ; 364 : 1395-406.
5) Boekstegers P, Hausleiter J, Baldus S, et al. Percutaneous interventional mitral regurgitation treatment using Mitra-Clip system. Clin Res Cardiol. 2014 ; 103 : 85-96.
6) Zoghbi WA, Asch FM, Bruce C, et al. Guidelines for the evaluation of valvular regurgitaion after percutaneous valve repair or replacement : a report from the American Society of Echocardiography Developed in Collaboration with the Society for Cardiovascular Angiography and Interventions, Japanese Society of Echocardiography, and Society for Cardiovascular Magnetic Resonance. J Am Soc Echocardiogr. 2019 ; 32 : 431-75.
7) Halaby R, Herrman HC, Gertz ZM, et al. Effect of mitral valve gradient after MitraClip on outcomes in secondary mitral regurgiaion. Results from the COAPT Trial. JACC Cardiovasc Interv. 2021 ; 14 : 879-89.
8) Kuwata S, Taramasso M, Czopak A, et al. Continuous direct left atrial pressure. Intraprocedual measurement predicts clinical response following MitraClip therapy. JACC Cardiovasc Interv. 2019 ; 12 : 127-36.
9) Schueler R, Ozturk C, Wedekind JA, et al. Persistence of iatrogenic atrial septal defect after interventional mitral valve repair with the MitraClip system : a note of caution. JACC Cardiovasc Interv. 2015 ; 8 : 450-9.
10) Toyama K, Rader F, Kar S, et al. Iatrogenic atrial septal defect after percutaneous mitral valve repair with the MitraClip system. Am J Cardiol. 2018 ; 121 : 475-9.
11) Matar F, Welter-Frost A. Management of iatrogenic atrial septal defects in the era of large bore transcatheter mitral valve therapies. Cardiovasc Revasc Med. 2021 ; 31 : 83-8.
12) Freitas-Ferraz AB, Rodes-Cabau J, Junquera Vega L, et al. Transesophageal echocardiography complications associated with interventional cardiology procedures. Am Heart J. 2020 ; 221 : 19-28.
13) 日本循環器学会/日本不整脈心電図学会. 不整脈非薬物治療ガイドライン (2021年フォーカスアップデート版). https://www.j-circ.or.jp/cms/wp-content/uploads/2021/03/JCS2021_Kurita_Nogami.pdf (2021年5月閲覧)
14) 日本循環器学会. 左心耳閉鎖システムに関する適正使用指針. https://www.j-circ.or.jp/cms/wpcontent/uploads/2021/05/wm_tekisei_shishin.pdf (2021年5月閲覧)
15) Di Biase L, Santangeli P, Anselmino M, et al. Does the left atrial appendage morphology correlate with the risk of stroke in patients with atrial fibrillation? J Am Coll Cardiol. 2012 ; 60 : 531-8.
16) O'Brien B, Zafar H, De Freitas S, et al. Transseptal puncture - review of anatomy, techniques, complications and challenges. Int J Cardiol. 2017 ; 233 : 12-22.
17) Aonuma K, Yamasaki H, Nakamura M, et al. Percutaneous WATCHMAN left atrial appendage closure for Japanese patients with nonvalvular atrial fibrillation at increased risk of thromboembolism. Circ J. 2018 ; 82 : 2946-53.
18) Kar S, Doshi SK, Sadhu A, et al. Primary outcome evaluation of a next-generation left atrial appendage closure device. Circulation. 2021 ; 143 : 1754-62.
19) Mack MJ, Leon MB, Thourani VH, et al. Transcatheter aortic-valve replacement with a balloonexpandable valve in low-risk patients. N Engl J Med. 2019 ; 380 : 1695-705.
21) Beurthert S, Karam N, Resseguier N, et al. Femoral versus nonfemoral peripheral access for transcatheter aortic valve replacement. JACC. 2019 ; 74 : 2728-39.
22) Sa MPBO, Van den Eynde, Simonato M, et al. Valve-in-valve transcatheter aortic valve replacement versus redo surgical aortic valve replacement. JACC Cardiovasc Interv. 2021 ; 14 : 211-20.
23) Yamamoto M, Shimura T, Kano S, et al. Impact of preparatory coronary protection in patients at high anatomical risk of acute coronary obstruction during transcatheter aortic valve implantation. Int J Cardiol. 2016 ; 217 : 58-63.
24) Ribeiro HB, Rodes-Cabau J, Blanke P, et al. Incidence, predictors, and clinical outcomes of coronary obstruction following transcatheter aortic valve replacement for degenerative bioprosthetic surgical valves : insights from the VIVD registry. Eur Heart J. 2018 ; 39 : 687-95.

Chapter 12 3D TEEとマルチモダリティー

P.224 掲載の参考文献
1) Gianni C, Domenico G, Rocca D, et al. Real-time 3D intracardiac echocardiography. Card Electrophysiol Clin. 2021 ; 13 : 419-26.
3) Shahgaldi K, Manouras A, Brodin LA, et al. Direct measurement of left ventricular outflow tract area using three-dimensional echocardiography in biplane mode improves accuracy of stroke volume assessment. Echocardiography. 2010 ; 27 : 1078-85, 2010.
4) Leipsic J, Gurvitch R, LaBounty TM, et al. Multidetector computed tomography in transcatheter aortic valve implantation. JACC Cardiovasc Imaging. 2011 ; 4 : 416-29.
5) Jilaihawi H, Kashif M, Fontanna G, et al. Cross-sectional computed tomographic assessment improves accuracy of aortic annular sizing for transcatheter aortic valve replacement and reduced the incidence of paravalvular aortic regurgitation. J Am Coll Cardiol. 2012 ; 59 : 1275-86.
6) 馬原啓太郎. 大動脈弁をエコーでみる. 心エコー. 2015 ; 16 : 560-5.
7) Mediratta A, Addetia K, Medvedofsky D, et al. 3D echocardiographic analysis of aortic annulus for transcatheter aortic valve replacement using novel aortic valve quantification software : comparison with computed tomography. Echocardiography. 2017 ; 59 : 690-9.
8) Mork C, Wei M, Jiang W, et al. Aortic annular sizing using novel software in three-dimensional transesophageal echocardiography for transcatheter aortic valve replacement : a systematic review and meta-analysis. Diagnostics. 2021 ; 11 : 751.

Chapter 13 低血圧・心不全の鑑別と対処法

P.233 掲載の参考文献
1) 外須美夫. 麻酔中の循環維持法 : 前負荷指向型の循環管理. 日臨麻会誌. 1997 ; 17 : 366-9.
2) Rudski LG, Lai WW, Afilalo J. et. al. Guidelines for the echocardiographic assessment of the right heart in adults : a report from the American Society of Echocardiography endorsed by the European Association of Echocardiography, a registered branch of the European Society of Cardiology, and the Canadian Society of Echocardiography. J Am Soc Echocardiogr. 2010 ; 23 : 685-713.

最近チェックした商品履歴

Loading...