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  1. 1
    Academic Journal

    Contributors: Авторы заявляют об отсутствии финансирования исследования.

    Source: Complex Issues of Cardiovascular Diseases; Том 13, № 4 (2024); 6-12 ; Комплексные проблемы сердечно-сосудистых заболеваний; Том 13, № 4 (2024); 6-12 ; 2587-9537 ; 2306-1278

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    Relation: https://www.nii-kpssz.com/jour/article/view/1602/948; Coffey S., Roberts-Thomson R., Brown A., Carapetis J., Chen M., Enriquez-Sarano M., Zühlke L., Prendergast B.D. Global epidemiology of valvular heart disease. Nat Rev Cardiol. 2021; 18(12): 853-864. doi:10.1038/s41569-021-00570-z.; Peters A.S., Duggan J.P., Trachiotis G.D., Antevil J.L. Epidemiology of Valvular Heart Disease. Surg Clin North Am. 2022; 102 (3): 517-528. doi:10.1016/j.suc.2022.01.008.; Yadgir S., Johnson C.O., Aboyans V., Adebayo O.M., Adedoyin R.A., Afarideh M., Alahdab F., Alashi A., Alipour V, Arabloo J. et al. Global, Regional, and National Burden of Calcific Aortic Valve and Degenerative Mitral Valve Diseases, 1990-2017. Circulation. 2020; 141 (21): 1670-1680. doi:10.1161/CIRCULATIONAHA.119.043391.; Nkomo V.T., Gardin J.M., Skelton T.N., Gottdiener J.S., Scott C.G., Enriquez-Sarano M. Burden of valvular heart diseases: a population-based study. Lancet. 2006; 368: 1005–11. doi:10.1016/S0140-6736(06)69208-8.; Virani S.S., Alonso A., Aparicio H.J., Benjamin E.J., Bittencourt M.S., Callaway C.W., Carson A.P., Chamberlain A.M., Cheng S., Delling F.N. et al. Heart disease and stroke Statistics-2021 update: a report from the American heart association. Circulation. 2021; 143: e254–743. doi:10.1161/CIR.0000000000000950.; Grigioni F., Enriquez-Sarano M., Ling L.H., Bailey K.R., Seward J.B., Tajik A.J., Frye R.L. Sudden death in mitral regurgitation due to flail leaflet. J Am Coll Cardiol. 1999; 34 (7): 2078-85. doi:10.1016/s0735-1097(99)00474-x.; Freed L.A., Levy D., Levine R.A., Larson M.G., Evans J.C., Fuller D.L., Lehman B., Benjamin E.J. Prevalence and clinical outcome of mitral-valve prolapse. N Engl J Med. 1999; 341: 1–7. doi:10.1056/NEJM199907013410101.; Singh J.P., Evans J.C., Levy D., Larson M.G., Freed L.A., Fuller D.L., Lehman B., Benjamin E.J. Prevalence and clinical determinants of mitral, tricuspid, and aortic regurgitation (the Framingham heart study). Am J Cardiol. 1999; 83: 897–902. doi:10.1016/S0002-9149(98)01064-9.; Nazarzadeh M., Pinho-Gomes A-C., Smith Byrne K., Canoy D., Raimondi F., Ayala Solares J.R., Otto C.M., Rahimi K. Systolic blood pressure and risk of valvular heart disease: a Mendelian randomization study. JAMA Cardiol. 2019; 4: 788. doi:10.1001/jamacardio.2019.2202.; Tung M., Nah G., Tang J., Marcus G., Delling F.N. Valvular disease burden in the modern era of percutaneous and surgical interventions: the UK Biobank. Open Heart. 2022; 9 (2): e002039. doi:10.1136/openhrt-2022-002039

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    Academic Journal

    Source: Siberian Journal of Clinical and Experimental Medicine; Том 39, № 2 (2024); 46-57 ; Сибирский журнал клинической и экспериментальной медицины; Том 39, № 2 (2024); 46-57 ; 2713-265X ; 2713-2927

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    Relation: https://www.sibjcem.ru/jour/article/view/2307/960; Mil-Homens Luz F., Amorim M.J. Ischemic mitral regurgitation – to repair or replace? Looking beyond the valve. Port. J. Card. Thorac. Vasc. Surg. 2022;29(1):25–34. DOI:10.48729/pjctvs.253.; Calafiore A.M., Prapas S., Katsavrias K., Totaro A., Di Marco M., Guarracini S. et al. Ischemic mitral regurgitation: Changing rationale of reparative surgical strategy. Hellenic J. Cardiol. 2021;62(1):35–37. DOI:10.1016/j.hjc.2020.12.003.; Beeri R. Ischemic mitral regurgitation and leaflet remodeling: Another arrow hits the target. J. Am. Coll. Cardiol. 2022;80(5):511–512. DOI:10.1016/j.jacc.2022.05.023.; Servito T., Elbatarny M., Yanagawa B., Dokollari A., Bisleri G. Surgical repair of ischemic mitral regurgitation: One ring does not fit all. Curr. Opin. Cardiol. 2021;36(2):154–162. DOI:10.1097/HCO.0000000000000827.; Hickey M.S., Smith L.R., Muhlbaier L.H., Harrell F.E. Jr., Reves J.G., Hinohara T. et al. Current prognosis of ischemic mitral regurgitation. Implications for future management. Circulation. 1988;78(3_Pt_2):I51–I59.; Nonaka D.F., Fox A.A. Ischemic mitral regurgitation: Repair, replacement or nothing. Semin. Cardiothorac. Vasc. Anesth. 2019;23(1):11–19. DOI:10.1177/1089253218792921.; Burch G.E., De Pasquale N.P., Phillips J.H. The syndrome of papillary muscle dysfunction. Am. Heart. J. 1968;75(3):399–415. DOI:10.1016/0002-8703(68)90097-5.; Vinciguerra M., Grigioni F., Romiti S., Benfari G., Rose D., Spadaccio C. et al. Ischemic mitral regurgitation: A multifaceted syndrome with evolving therapies. Biomedicines. 2021;9(5):447. DOI:10.3390/biomedicines9050447.; Vinciguerra M., Romiti S., Wretschko E., D’Abramo M., Rose D., Miraldi F. et al. Mitral plasticity: The way to prevent the burden of ischemic mitral regurgitation? Front. Cardiovasc. Med. 2022;8:794574. DOI:10.3389/fcvm.2021.794574.; Yamazaki S., Numata S., Yaku H. Surgical intervention for ischemic mitral regurgitation: How can we achieve better outcomes? Surg. Today. 2020;50(6):540–550. DOI:10.1007/s00595-019-01823-8.; Otto C.M., Nishimura R.A., Bonow R.O., Carabello B.A., Erwin J.P. 3rd, Gentile F. et al. 2020 ACC/AHA Guideline for the management of patients with valvular heart disease: Executive summary: A Report of the American College of Cardiology/American Heart Association Joint Committee on Clinical Practice Guidelines. Circulation. 2021;143(5):е35– е71. DOI:10.1161/CIR.000000000000932.; Piatkowski R., Kochanowski J., Budnik M., Peller M., Grabowski M., Opolski G. Stress echocardiography protocol for deciding type of surgery in ischemic mitral regurgitation: Predictors of mitral regurgitation recurrence following CABG alone. J. Clin. Med. 2021;10(21):4816. DOI:10.3390/jcm10214816.; Hadjadj S., Marsit O., Paradis J.M., Beaudoin J. Pathophysiology, diagnosis, and new therapeutic approaches for ischemic mitral regurgitation. Can. J. Cardiol. 2021;37(7):968–979. DOI:10.1016/j.cjca.2020.12.011.; Бузиашвили Ю.И., Кокшенева И.В., Абуков С.Т., Абдуллаев А.А. Значение функции папиллярных мышц митрального клапана и прилежащих сегментов миокарда левого желудочка в прогрессировании ишемической митральной регургитации у больных ишемической болезнью сердца после хирургического лечения. Терапевтический архив. 2015;87(8):915. DOI:10.17116/terarkh20158789-15.; Carpentier A. Cardiac valve surgery – the “French correction”. J. Thorac. Cardiovasc. Surg. 1983;86(3):323–337.; Schaff H.V., Nguyen A. Contemporary techniques for mitral valve repair – the Mayo Clinic experience. Indian J. Thorac. Cardiovasc. Surg. 2020;36(Suppl_1):18–26. DOI:10.1007/s12055-019-00801-6.; Kuralay E. Mitral ring annuloplasty by biological material. Turk. Gogus. Kalp. Damar. Cerrahisi. Derg. 2022;30(4):645–648. DOI:10.5606/tgkdc.dergisi.2022.23578.; Chotivatanapong T. Mitral annuloplasty ring design and selection: Complete semi-rigid is best. JTCVS Tech. 2021;10:55–57. DOI:10.1016/j.xjtc.2021.10.036.; Del Forno B., Castiglioni A., Sala A., Geretto A., Giacomini A., Denti P. et al. Mitral valve annuloplasty: Tutorial (video). Multimed. Man. Cardiothorac. Surg. 2017:016. DOI:10.1510/mmcts.2017.016.; Pierce E.L., Bloodworth C.H., Imai A., Begum S., Soomro M.A., Naseeb Kh. et al. Mitral annuloplasty ring flexibility preferentially reduces posterior suture forces. J. Biomech. 2018;75:58–66. DOI:10.1016/j.jbiomech.2018.04.043.; Kubota K., Otsuji Y., Ueno T. et al. Functional mitral stenosis after surgical annuloplasty for ischemic mitral regurgitation: importance of subvalvular tethering in the mechanism and dynamic deterioration during exertion. J. Thorac. Cardiovasc. Surg. 2010;140(3):617–623. DOI:10.1016/j.jtcvs.2009.11.00342.; Bertrand P.B., Gutermann H., Smeets C.J., Van Kerrebroeck C., Verhaert D., Vandervoort P. et al. Functional impact of transmitral gradients at rest and during exercise after restrictive annuloplasty for ischemic mitral regurgitation. J. Thorac. Cardiovasc. Surg. 2014;148(1):183–187. DOI:10.1016/j.jtcvs.2013.10.013.; Bertrand P.B., Verbrugge F.H., Verhaert D., Smeets C.J., Grieten L., Mullens W. et al. Mitral valve area during exercise after restrictive mitral valve annuloplasty: Importance of diastolic anterior leaflet tethering. J. Am. Coll. Cardiol. 2015;65(5):452–461. DOI:10.1016/j.jacc.2014.11.037.; Penicka M., Linkova H., Lang O. et al. Predictors of improvement of unrepaired moderate ischemic mitral regurgitation in patients undergoing elective isolated coronary artery bypass graft surgery. Circulation. 2009;120(15):1474–1481. DOI:10.1161/CIRCULATIONAHA.108.842104.; Braun J., Bax J.J., Versteegh M.I., Voigt P.G., Holman E.R., Klautz R.J. et al. Preoperative left ventricular dimensions predict reverse remodeling following restrictive mitral annuloplasty in ischemic mitral regurgitation. Eur. J. Cardiothorac. Surg. 2005;27(5):847–853. DOI:10.1016/j.ejcts.2004.12.031.; Jeong D.S., Lee H.Y., Kim W.S., Sung K., Park P.W., Lee Y.T. Off pump coronary artery bypass versus mitral annuloplasty in moderate ischemic mitral regurgitation. Ann. Thorac. Cardiovasc. Surg. 2012;18(4):322– 330. DOI:10.5761/atcs.oa.11.01845.; Fattouch K., Sampognaro R., Speziale G. et al. Impact of moderate ischemic mitral regurgitation after isolated coronary artery bypass grafting. Ann. Thorac. Surg. 2010;90(4):1187–1194. DOI:10.1016/j.athoracsur.2010.03.103.; Sun X., Huang J., Shi M., Huang G., Pang, L., Wang Y. Predictors of moderate ischemic mitral regurgitation improvement after off-pump coronary artery bypass. J. Thorac. Cardiovasc. Surgery. 2015;149(6):1606– 1612. DOI:10.1016/j.jtcvs.2015.02.047.; Poh K.K., Lee G.K., Lee L.C., Chong E., Chia B.L., Yeo T.C. Reperfusion therapies reduce ischemic mitral regurgitation following inferoposterior ST-segment elevation myocardial infarction. Coron. Artery. Dis. 2012;23(8):555–559. DOI:10.1097/MCA.0b013e32835aab65.; Hwang H.Y., Lim J.H., Oh S.J., Paeng J.C., Kim K.B. Improved functional mitral regurgitation after off-pump revascularization in acute coronary syndrome. Ann. Thorac. Surg. 2012;94(4):1157–1165. DOI:10.1016/j.athoracsur.2012.04.118.; Capoulade R., Zeng X., Overbey J.R. et al. Impact of left ventricular to mitral valve ring mismatch on recurrent ischemic mitral regurgitation after ring annuloplasty. Circulation. 2016;134(17):1247–1256. DOI:10.1161/CIRCULATIONAHA.115.021014.; Magne J., Pibarot P., Dagenais F., Hachicha Z., Dumesnil J.G., Sénéchal M. Preoperative posterior leaflet angle accurately predicts outcome after restrictive mitral valve annuloplasty for ischemic mitral regurgitation. Circulation. 2007;115(6):782–791. DOI:10.1161/CIRCULATIONAHA.106.649236; Bouma W., Lai E.K., Levack M.M. et al. Preoperative three-dimensional valve analysis predicts recurrent ischemic mitral regurgitation after mitral annuloplasty. Ann. Thorac. Surg. 2016;101(2):567–575. DOI:10.1016/j.athoracsur.2015.09.076.; Sun X., Jiang Y., Huang G., Huang J., Shi M., Pang L. et al. Threedimensional mitral valve structure in predicting moderate ischemic mitral regurgitation improvement after coronary artery bypass grafting. J. Thorac. Cardiovasc. Surg. 2019;157(5):1795–1803.e2. DOI:10.1016/j.jtcvs.2018.09.018.; Sun X., Huang G., Huang J., Shi M., Wang F., Pang L. et al. Left ventricular regional dyssynchrony predicts improvements in moderate ischaemic mitral regurgitation after off-pump coronary artery bypass. Eur. J. Cardiothorac. Surg. 2018;54(1):84–90. DOI:10.1093/ejcts/ezy024.; Teng Z., Ma X., Zhang Q., Yun Y., Ma C., Hu S. et al. Additional mitral valve procedure and coronary artery bypass grafting versus isolated coronary artery bypass grafting in the management of significant functional ischemic mitral regurgitation: a meta-analysis. J. Cardiovasc. Surg. (Torino). 2017;58(1):121–130. DOI:10.23736/S0021-9509.16.08852-2.; Gelsomino S., Lorusso R., De Cicco G., Capecchi I., Rostagno C., Caciolli S. et al. Five-year echocardiographic results of combined undersized mitral ring annuloplasty and coronary artery bypass grafting for chronic ischaemic mitral regurgitation. Eur. Heart. J. 2008;29(2):231–240. DOI:10.1093/eurheartj/ehm468.; Van Garsse L., Gelsomino S., Parise O., Lucà F., Cheriex E., Lorusso R. et al. Systolic papillary muscle dyssynchrony predicts recurrence of mitral regurgitation in patients with ischemic cardiomyopathy (ICM) undergoing mitral valve repair. Echocardiography. 2012;29(10):1191–1200. DOI:10.1111/j.1540-8175.2012.01789.x.; Gelsomino S., Lorusso R., Billè G., Rostagno C., De Cicco G., Romagnoli S. et al. Left ventricular diastolic function after restrictive mitral ring annuloplasty in chronic ischemic mitral regurgitation and its predictive value on outcome and recurrence of regurgitation. Int. J. Cardiol. 2009;132(3):419–428. DOI:10.1016/j.ijcard.2007.12.058.; Ereminiene E., Vaskelyte J., Benetis R., Stoskute N. Ischemic mitral valve repair: predictive significance of restrictive left ventricular diastolic filling. Echocardiography. 2005;22(3):217–224. DOI:10.1111/j.0742-2822.2005.03108.x.; Kongsaerepong V., Shiota M., Gillinov A.M., Song J.M., Fukuda S., Mc-Carthy P.M. et al. Echocardiographic predictors of successful versus unsuccessful mitral valve repair in ischemic mitral regurgitation. Am. J. Cardiol. 2006;98(4):504–508. DOI:10.1016/j.amjcard.2006.02.056.; Kron I.L., Hung J., Overbey J.R., Bouchard D., Gelijns A.C., Moskowitz A.J. et al. Predicting recurrent mitral regurgitation after mitral valve repair for severe ischemic mitral regurgitation. J. Thorac. Cardiovasc. Surg. 2015;149(3):752–61.e1. DOI:10.1016/j.jtcvs.2014.10.120.; Чернявский А.М., Разумахин Р.А., Эфендиев В.У., Рузматов Т.М., Подсосникова Т.Н. и др. Отдаленные результаты хирургического лечения умеренной ишемической митральной недостаточности у пациентов с сохраненной фракцией выброса левого желудочка. Патология кровообращения и кардиохирургия. 2015;19(2):63–71. DOI:10.21688/1681-3472-2015-2-63-71.; Smith P.K., Puskas J.D., Ascheim D.D., Voisine P., Gelijns A.C., Moskowitz A.J. et al. Surgical treatment of moderate ischemic mitral regurgitation. N. Engl. J. Med. 2014;371(23):2178–2188. DOI:10.1056/NEJMoa1410490.; El-Hag-Aly M.A., El Swaf Y.F., Elkassas M.H., Hagag M.G., Allam H.K. Moderate ischemic mitral incompetence: does it worth more ischemic time? Gen. Thorac. Cardiovasc. Surg. 2020;68(5):492–498. DOI:10.1007/s11748-019-01212-5.; Чрагян В.А., Арутюнян В.Б., Дьячков С.И. Результаты одномоментной коррекции ишемической митральной недостаточности и коронарного шунтирования у больных с осложненными формами ишемической болезни сердца. Пермский медицинский журнал. 2017;34(3):25–32. DOI:10.17816/pmj34325-32.; Salmasi M.Y., Harky A., Chowdhury M.F., Abdelnour A., Benjafield A., Suker F. et al. Should the mitral valve be repaired for moderate ischemic mitral regurgitation at the time of revascularization surgery? J. Card. Surg. 2018;33(7):374–384. DOI:10.1111/jocs.13722.; Khallaf A., Elzayadi M., Alkady H., El Naggar A. Results of coronary artery bypass grafting alone versus combined surgical revascularization and mitral repair in patients with moderate ischemic mitral regurgitation. Heart Surg. Forum. 2020;23(3):E270–E275. DOI:10.1532/hsf.2773.; Anantha Narayanan M., Aggarwal S., Reddy Y.N.V., Alla V.M., Baskaran J., Kanmanthareddy A. et al. Surgical repair of moderate ischemic mitral regurgitation – A systematic review and meta-analysis. Thorac. Cardiovasc. Surg. 2017;65(6):447–456. DOI:10.1055/s-0036-1598012.; Seese L., Deitz R., Dufendach K., Sultan I., Aranda-Michel E., Gleason T.G. et al. Midterm outcomes of isolated coronary artery bypass grafting in the setting of moderate ischemic mitral regurgitation. J. Surg. Res. 2022;278:317–324. DOI:10.1016/j.jss.2022.04.043.; Moscarelli M., Athanasiou T., Speziale G., Punjabi P.P., Malietzis G. Lancellotti P. et al. The value of adding sub-valvular procedures for chronic ischemic mitral regurgitation surgery: a meta-analysis. Perfusion. 2017;32(6):436–445. DOI:10.1177/0267659117693683.; Nappi F., Lusini M., Avtaar Singh S.S., Santana O., Chello M., Mihos C.G. Risk of ischemic mitral regurgitation recurrence after combined valvular and subvalvular repair. Ann. Thor. Surg. 2019;108(2):536–543. DOI:10.1016/j.athoracsur.2018.12.030.; Mihos C.G., Yucel E., Santana O. The role of papillary muscle approximation in mitral valve repair for the treatment of secondary mitral regurgitation. Eur. J. Card. Thorac. Surg. 2017;51(6):1023–1030. DOI:10.1093/ejcts/ezw384.; Kron I.L., Green G.R., Cope J.T. Surgical relocation of the posterior papillary muscle in chronic ischemic mitral regurgitation. Ann. Thorac. Surg. 2002;74(2):600–601. DOI:10.1016/s0003-4975(02)03749-9.; Fattouch K., Lancellotti P., Castrovinci S. Murana G., Sampognaro R., Corrado E. et al. Papillary muscle relocation in conjunction with valve annuloplasty improve repair results in severe ischemic mitral regurgitation. J. Thorac. Cardiovasc. Surg. 2012;143(6):1352–1355. DOI:10.1016/j.jtcvs.2011.09.062.; Messas E., Guerrero J.L., Handschumacher M.D., Conrad C., Chow C.M., Sullivan S. et al. Chordal cutting: a new therapeutic approach for ischemic mitral regurgitation. Circulation. 2001;104(16):1958–1963. DOI:10.1161/hc4201.097135.; Calafiore A.M., Refaie R., Iacò A.L., Asif M., Al Shurafa H.S., Al-Amri H. et al. Chordal cutting in ischemic mitral regurgitation: a propensity-matched study. J. Thorac. Cardiovasc. Surg. 2014;148(1):41–46. DOI:10.1016/j.jtcvs.2013.07.036.; Nielsen S.L., Timek T.A., Green R.G., Dagum P., Daughters G.T., Hasenkam M.J. et al. Influence of anterior mitral leaflet second-order chordae tendineae on left ventricular systolic function. Circulation. 2003;108(4):486–491. DOI:10.1161/01.CIR.0000080504.70265.05.; Zhan-Moodie S., Xu D., Suresh K.S., He Q., Onohara D., Kalra K. et al. Papillary muscle approximation reduces systolic tethering forces and improves mitral valve closure in the repair of functional mitral regurgitation. JTCVS open. 2021;7:91–104. DOI:10.1016/j.xjon.2021.04.008.; Oi K., Arai H., Nagaoka E., Fujiwara T., Oishi K., Takeshita M. et al. Long-term outcomes of papillary muscle relocation anteriorly for functional mitral regurgitation. Interact. Cardiovasc. Thorac. Surg. 2022;35(6):ivac245. DOI:10.1093/icvts/ivac245.; https://www.sibjcem.ru/jour/article/view/2307

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    Academic Journal

    Source: Siberian Journal of Clinical and Experimental Medicine; Том 39, № 2 (2024); 190-194 ; Сибирский журнал клинической и экспериментальной медицины; Том 39, № 2 (2024); 190-194 ; 2713-265X ; 2713-2927

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    Relation: https://www.sibjcem.ru/jour/article/view/2323/975; Hennessey B., Sabatovicz N.Jr., Del Trigo M. Acute ischaemic mitral valve regurgitation. J. Clin. Med. 2022;11(19):5526. DOI:10.3390/jcm11195526.; Báez-Ferrer N., Izquierdo-Gómez M.M., Marí-López B., Montoto-López J., Duque-Gómez A., García-Niebla J. et al. Clinical manifestations, diagnosis, and treatment of ischemic mitral regurgitation: a review. J. Thorac. Dis. 2018;10(12):6969–6986. DOI:10.21037/jtd.2018.10.64.; Сапельников О.В., Латыпов Р.С., Акчурин Р.С. Современный подход к лечению ишемической митральной недостаточности. Кардиология и сердечно-сосудистая хирургия. 2015;8(3):64–69. DOI:10.17116/kardio20158364-69.; Журавлева Л.В., Лопина Н.А., Кузнецов И.В., Лопин Д.А., Крамаренко И.А., Суманова И.А. Острый отрыв хорды задней створки митрального клапана у пациентки пожилого возраста с артериальной гипертензией и ишемической болезнью сердца. Сердце і судини. 2015;(4):16–21.; Estévez-Loureiro R., Tavares Da Silva M., Baz-Alonso J.A., Caneiro-Queija B., Barreiro-Pérez M., Calvo-Iglesias F. et al. Percutaneous mitral valve repair in patients developing severe mitral regurgitation early after an acute myocardial infarction: A review. Front. Cardiovasc. Med. 2022;9:987122. DOI:10.3389/fcvm.2022.987122.; Mentias A., Raza M.Q., Barakat A.F., Hill E., Youssef D., Krishnaswamy A. et al. Prognostic significance of ischemic mitral regurgitation on outcomes in acute ST-elevation myocardial infarction managed by primary percutaneous coronary intervention. Am. J. Cardiol. 2017;119(1):20–26. DOI:10.1016/j.amj-card.2016.09.00.; Otto C., Bonow R.; eds. Valvular heart disease: A Companion to Braunwald’s Heart Disease. 4th edition. Saunders Elsevier; 2014:494.; Акчурин Р.С., Комлев А.Е., Сапельников О.В., Латыпов Р.С. Приобретенные пороки сердца. Хирургическое лечение митральных пороков сердца. В кн.: Руководство по кардиологии; под ред. акад. Е.И. Чазова. Т. 4. Заболевания сердечно-сосудистой системы. М.: Практика; 2014;259–284.; Корней С.М. Сравнение методов хирургической коррекции функциональной митральной недостаточности ишемического генеза. Сердце. 2011;10:1(57):86–92.; Министерство здравоохранения Российской Федерации. Острый инфаркт миокарда с подъемом сегмента ST электрокардиограммы. Клинические рекомендации, 2020. URL: https://cr.minzdrav.gov.ru/schema/157_4 (02.05.2023); https://www.sibjcem.ru/jour/article/view/2323

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    Academic Journal

    Source: Transplantologiya. The Russian Journal of Transplantation; Том 15, № 1 (2023); 46-60 ; Трансплантология; Том 15, № 1 (2023); 46-60 ; 2542-0909 ; 2074-0506 ; undefined

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    Source: Complex Issues of Cardiovascular Diseases; Том 11, № 4 (2022); 62-71 ; Комплексные проблемы сердечно-сосудистых заболеваний; Том 11, № 4 (2022); 62-71 ; 2587-9537 ; 2306-1278

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