Ultrasound anatomy and three-dimensional transesophagealechocardiography in mitral valve surgery (review)

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Abstract

Modern methods of ultrasound diagnostics allow to get complete and accurate information about the type of anatomical damage and mechanism of regurgitation in patients with mitral valve pathology preoperatively and in the operating room. The article discussed in detail the possibilities of the three-dimensional transesophageal echocardiography in clarifying the diagnosis, determine the indications for surgical intervention and assess its effectiveness.

References

1. Бокерия Л.А., Бузиашвили Ю.И. Чреспищевод- ная эхокардиография в коронарной хирургии. М.: НЦССХ им. А.Н. Бакулева РАМН; 1999.

2. Бокерия Л.А., Голухова Е.З. (ред.) Клиническая кардиология: диагностика и лечение. В 3 т. М.: НЦССХ им. А.Н. Бакулева РАМН; 2011.

3. Шевченко Ю.Л., Попов Л.В., Волкова Л.В. Ин- траоперационная чреспищеводная эхокардио- графия при вмешательствах на сердце. М.: ГЭОТАР-Медиа; 2004.

4. Matsumoto M., Inoue M., Tamura S. Three-dimensional echocardiography for spatial visualization and volume calculation of cardiac structures. J. Clin. Ultrasound. 1981; 4: 157¬–65.

5. Бокерия Л.А., Машина Т.В., Голухова Е.З. Трех- мерная эхокардиография. М.: НЦССХ им. А.Н. Бакулева РАМН; 2002.

6. Justin M.S., Bushra S. Three-dimensional echocardiography in valvular heart diseases. SA Heart J. 2010; 7: 106–13.

7. Lancellotti P., Moura L., Pierard L.A. European Association of Echocardiography recommendations for the assessment of valvular regurgitation. Part 2: Mitral and tricuspid regurgitation (native valve disease). Eur. J. Echocardiogr. 2011: 307–32.

8. Zamorano J.L., Gon¸calves A. Three-dimensional echocardiography in valvular heart disease. Heart. 2013; 99 (11): 811–8.

9. Асатрян Т.В. Реконструктивная хирургия про- лапса передней створки митрального клапана различной этиологии: Дис. … канд. мед. наук. М.; 2003.

10. Воропаев Т.С. Клапанный аппарат предсердно- желудочковых отверстий в норме и при митраль- ном стенозе. Вестник хирургии. 1956; 7: 46–7.

11. Lam J., Ranganathan N., Nigle E. Morphology of the human mitral valve, chordae tendineae: A new classification. Circulation. 1970; 41: 449–58.

12. Цукерман Г.И., Али Хассан, Скопин И.И. Рекон- структивная хирургия пролапса митрального клапана. М.: Экспедитор; 1995.

13. Сarpentier A., Chauvaud S., Fabiani I.N. Reconstructive surgery of mitral valve incompetence. J. Thorac. Cardiovasc. Surg. 1980; 79: 338–48.

14. Hien M.D. Rauch H., Lichtenberg A. Real-time three-dimensional transesophageal echocardiography: improvements in intraoperative mitral valve imaging. Anesth. Analg. 2013; 116: 287–95.

15. Kongsaerepong V., Shiota M., Gillinov M. Echocardiographic predictors of successful versus unsuccessful mitral valve repaire in ischemic mitral regurgitation. Am. J. Cardiol. 2006; 29: 504–8.

16. Izumo M., Shiota M., Kar S. Comparison of realtime three-dimensional transesophageal echocardiography to two-dimensional transesophageal echocardiography for quantification of mitral valve prolapse in patients with severe mitral regurgitation. Am. J. Cardiol. 2013; 111: 588–94.

17. Grewal J., Mankad S., Freeman W. Real-time threedimensional transesophageal echocardiography in the intraoperative assessment of mitral valve disease. J. Am. Soc. Echocardiogr. 2009; 22: 33–41.

18. Kapetanakis S. Three-dimensional echocardiography. Hospital Chronicles. Suppl. 2010; 2: 52–5.

19. Lang R., Salgo I., Anyanwu A. The road to mitral valve repaire with live 3D transesophageal echocardiography. MedicaMundi. 2008; 52: 37–42.

20. Biaggi P., Jedrzkiewicz S., Gruner C. Quantification of mitral valve anatomy by three-dimensional transesophageal echocardiography in mitral valve prolapse predicts surgical anatomy and the complexity of mitral valve repair. J. Am. Soc. Echocardiogr. 2012; 25: 758–65.

21. Delabays A., Jeanrenaud X., Chassot P. et al. Localization and quantification of mitral valve prolapses using three-dimensional echocardiography. Eur. J. Echocardiogr. 2004; 6: 422–9.

22. Grewal J., Suri R., Mankad S. Mitral annulus dynamics in myxomatousvalve disease new insights with real-time 3-dimensional echocardiography. Circulation. 2010; 12: 1423–31.

23. Khabbaz K.R., Mahmood F., Shakil O. Dynamic 3-dimensional echocardiographic assessment of mitral annular geometry in patients with functional mitral regurgitation. Ann. Thorac. Surg. 2013; 95: 105–10.

24. De Agustнn J.A., Marcos-Alberca P., Fernandez- Golfin C. Direct measurement of proximal elisovocity surface area by single-beat three-dimensional color Doppler echocardiography in mitral regurgitation: a validation study. J. Am. Soc. Echocardiogr. 2012; 25: 815–23.

25. Голухова Е.З. Бакулева А.А., Машина Т.В., Каку- чая Т.Т. Первый опыт в России применения ме- тодики Mitral Valve Quantification в кардиохи- рургической практике. Креативная кардиоло- гия. 2009; 1: 61–7.

26. Голухова Е.З., Бакулева А.А., Машина Т.В., Каку- чая Т.Т. Митральная недостаточность: анализ геометрии митрального клапана (Mitral Valve Quantification). Креативная кардиология. 2011; 1: 129–33.

27. Kovalova S., Necas J. RT-3D TEE: Characteristics of mitral annulus using Mitral Valve Quantification (MVQ) program. Echocardiography. 2011; 28 (4): 461–7.

28. Машина Т.В., Джанкетова В.С., Шамсиев Г.А., Голухова Е.З. Интраоперационная чреспище- водная трехмерная эхокардиография: клиниче- ский случай и литературная справка. Креатив- ная кардиология. 2013; 1: 88–93.

29. Chikwe J., Adams D.H., Su K.N., Anyanwu A.C. et al. Can three-dimensional echocardiography accurately predict complexity of mitral valve repair? Eur. J. Cardiothorac. Surg. 2012; 3: 518–24.

30. Fattouch K., Murana G., Castrovinci S. Mitral valve annuloplasty and papillary muscle relocation oriented by 3-dimensional transesophageal echocardiography for severe functional mitral regurgitation. J. Thorac. Cardiovasc. Surg. 2012; 143: 538–42.

31. Mahmood F., Subramaniam B., Gorman J. Threedimensional echocardiographic assessment of changes in mitral valve geometry after valve repaire. EuroIntervention. Suppl. 2010; 88: 1838–44.

32. Mehrotra R., Bansal M., Agrawal V. Mitral valve assesment using real-time three-dimensional transesophageal echocardiography. Indian Heart J. 2009; 61: 123–5.

33. Delabays A., Jeanrenaud X., Chassot P. et al. Localization and quantification of mitral valve prolapses using three-dimentional echocardiography. Eur. J. Echocardiogr. 2004; 6: 422–9.

34. Bouma W., Van der Horst I. et al. Chronic ischemic mitral regurgitation. Current treatment results end new mechanism – based surgical approaches. Еur. J. Cardiothorac. Surg. 2010; 37: 170–85.

35. Kongsaerepong V., Shiota M., Gillinov M. Echocardiographic predictors of successful versus unsuccessful mitral valve repaire in ischemic mitral regurgitation. Am. J. Cardiol. 2006; 29: 504–8.

36. Kwan J., Shiota T., Agler D. Geometric differences of the mitral apparatus between ischemic and dilated cardiomyopathy with significant mitral regurgitation: real-time three-dimensional echocardiography study. Circulation. 2003; 107: 1135–40.

37. Толстихина А.А. Новые ультразвуковые техно- логии в диагностике митральной недостаточно- сти при ишемической и аритмогенной дис- функции левого желудочка, ассоциированной с фибрилляцией предсердий: Дис. … канд. мед. наук. М.; 2012.

38. Бокерия О.Л., Базарсадаева Т.С. Внезапная сер- дечная смерть и пороки митрального и аорталь- ного клапанов. Анналы аритмологии. 2013; 10 (3): 162–70. DOI: 10.15275/annaritmol.2013.3.6.

39. Бокерия Л.А., Голухова Е.З., Шанаурина Н.В., Машина Т.В., Можина А.А. Недостаточность клапанов сердца: ультразвуковая диагностика. М.: НЦССХ им А.Н. Бакулева; 2008.

40. Sugeng L., Weinert L., Lang R.M. Real-time threedimensional color Doppler flow of mitral and tricuspidal regurgitation: feasibility and intial quantitative compaison with 2-dimensional methods. J. Am. Soc. Echocardiogr. 2007; 20: 1050–7.

Chief Editor

Leo A. Bockeria, MD, PhD, DSc, Professor, Academician of Russian Academy of Sciences, President of Bakoulev National Medical Research Center for Cardiovascular Surgery