Showing 1 - 20 results of 95 for search '"митральная регургитация"', query time: 0.77s Refine Results
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    Academic Journal

    Contributors: the study was carried out within the framework of the applied scientific topic of Cardiology Research Institute, Tomsk National Research Medical Center, Russian Academy of Sciences (Tomsk, Russia)., Исследование выполнено в рамках прикладной научной темы ОССХ НИИ кардиологии Томского НИМЦ

    Source: Siberian Journal of Clinical and Experimental Medicine; Том 40, № 1 (2025); 103-109 ; Сибирский журнал клинической и экспериментальной медицины; Том 40, № 1 (2025); 103-109 ; 2713-265X ; 2713-2927

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    Relation: https://www.sibjcem.ru/jour/article/view/2638/1053; Wu S., Chai A., Arimie S., Mehra A., Clavijo L., Matthews R.V. et al. Incidence and treatment of severe primary mitral regurgitation in contemporary clinical practice. Cardiovasc. Revasc. Med. 2018;19(8):960–963. https://doi.org/10.1016/j.carrev.2018.07.021; Pype L.L., Bertrand P.B., Debonnaire P., Dhont S., Hoekman B., Paelinck B.P. et al. Mitral valve surgery for mitral regurgitation results in reduced left ventricular ejection fraction in Barlow's disease as compared with fibro-elastic deficiency. J. Cardiovasc. Dev. Dis. 2024;11(3):71. https://doi.org/10.3390/jcdd11030071; Ronco D., Buttiglione G., Garatti A., Parolari A. Biology of mitral valve prolapse: from general mechanisms to advanced molecular patterns – a narrative review. Front. Cardiovasc. Med. 2023;10:1128195. https://doi.org/10.3389/fcvm.2023.1128195; Desai M.Y., Grigioni F., Di Eusanio M., Saccocci M., Taramasso M., Maisano F. et al. Outcomes in degenerative mitral regurgitation: Current state-of-the art and future directions. Prog. Cardiovasc. Dis. 2017;60(3):370–385. https://doi.org/10.1016/j.pcad.2017.10.005; Евтушенко В.В., Макогончук И.С., Евтушенко А.В. Правила и принципы отбора пациентов на хирургическое лечение приобретенных пороков сердца, осложненных фибрилляцией предсердий. Сибирский журнал клинической и экспериментальной медицины. 2017;32(3):29–34. https://doi.org/10.29001/2073-8552-2017-32-3-29-34; Meier S., Seeburger J., Borger M.A. Advances in mitral valve surgery. Curr. Treat Options Cardiovasc. Med. 2018;20(9):75. https://doi.org/10.1007/s11936-018-0666-3; De Bonis M., Alfieri O., Dalrymple-Hay M., Del Forno B., Dulguerov F., Dreyfus G. Mitral valve repair in degenerative mitral regurgitation: State of the art. Prog. Cardiovasc. Dis. 2017;60(3):386–393. https://doi.org/10.1016/j.pcad.2017.10.006; Di Mauro M., Bonalumi G., Giambuzzi I., Messi P., Cargoni M., Paparella D. et al. Mitral valve repair with artificial chords: Tips and tricks. J. Card. Surg. 2022;37(12):4081–4087. https://doi.org/10.1111/jocs.17076; Макогончук И.С., Евтушенко В.В., Евтушенко А.В. Клинические и фундаментальные аспекты протезирования и транслокации хорд митрального клапана. Сибирский журнал клинической и экспериментальной медицины. 2018;33(1):27–32. https://doi.org/10.29001/2073-8552-2018-33-1-27-32; Elde S., Woo Y.J. Neochords: How long, how many, too many? JTCVS Tech. 2023;22:59–64. https://doi.org/10.1016/j.xjtc.2023.10.018; Montanhesi P.K., Ghoneim A., Gelinas J., Chu M.W.A. Simplifying mitral valve repair: A guide to neochordae reconstruction. Innovations. 2022;17(4):343–351. https://doi.org/10.1177/15569845221115186; Loardi C., Zanobini M. Unsatisfying mitral valve repair? The “Loop method”: a lifebelt to grab. J. Cardiothorac. Surg. 2021;16(1):269. https://doi.org/10.1186/s13019-021-01649-x; Park M.H., Marin-Cuartas M., Imbrie-Moore A.M., Wilkerson R.J., Pandya P.K., Zhu Y. et al. Biomechanical analysis of neochordal repair error from diastolic phase inversion of static left ventricular pressurization. JTCVS Tech. 2022;12:54–64. https://doi.org/10.1016/j.xjtc.2022.01.009; Идов Э.М., Хубулава Г.Г., Шихвердиев Н.Н., Марченко С.П., Кальной П.C., Бодров Д.А. Экспериментальное исследование механических свойств митрального клапана при дегенеративной патологии. Клиническая и экспериментальная хирургия. 2015;3(9):18–24. EDN: UNAGWX; https://www.sibjcem.ru/jour/article/view/2638

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    Academic Journal

    Contributors: 1

    Source: Almanac of Clinical Medicine; Vol 52, No 2 (2024); 77-84 ; Альманах клинической медицины; Vol 52, No 2 (2024); 77-84 ; 2587-9294 ; 2072-0505

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    Academic Journal

    Source: International Journal of Scientific Pediatrics; Vol. 2 No. 2 (2023): February; 47-50 ; Международный журнал научной педиатрии; Том 2 № 2 (2023): Февраль; 47-50 ; Xalqaro ilmiy pediatriya jurnali; Nashr soni. 2 No. 2 (2023): Fevral; 47-50 ; 2181-2926

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    Academic Journal

    Source: Zaporozhye мedical journal; Vol. 23 No. 4 (2021); 492 - 502 ; Запорожский медицинский журнал; Том 23 № 4 (2021); 492 - 502 ; Запорізький медичний журнал; Том 23 № 4 (2021); 492 - 502 ; 2310-1210 ; 2306-4145

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    Academic Journal
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    Academic Journal

    Source: Russian Journal of Transplantology and Artificial Organs; Том 22, № 1 (2020); 72-78 ; Вестник трансплантологии и искусственных органов; Том 22, № 1 (2020); 72-78 ; 1995-1191 ; 10.15825/1995-1191-2020-1

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    Relation: https://journal.transpl.ru/vtio/article/view/1146/908; https://journal.transpl.ru/vtio/article/view/1146/955; Dayan V, Soca G, Cura L, Mestres CA. Similar survival after mitral valve replacement or repair for ischemic mitral regurgitation: a meta-analysis. Ann Thorac Surg. 2014; 97: 758–765. doi:10.1016/j.athoracsur.2013.10.044.; Бузиашвили ЮИ, Кокшенева ИВ, Бузиашвили ВЮ, Абуков СТ. Вопросы лечебной тактики при умеренной ишемической митральной регургитации (обзор литературы). Кардиология и сердечно-сосудистая хирургия. 2015; 8 (2): 69–76.; Lee LS, Kwon MH, Cevasco M, Schmitto JD, Mokashi SA, McGurk S et al. Postoperative recurrence of mitral regurgitation after annuloplasty for functional mitral regurgitation. Ann Thorac Surg. 2012; 94: 1211–1216; discussion 1216–1217. doi:10.1016/j.athoracsur.2012.05.005.; Назаров ВМ, Смолянинов КА, Железнев СИ, Богачев-Прокофьев АВ, Демин ИИ, Татаринцев ПБ. Различные типы коррекции вторичной митральной недостаточности при аортальных пороках (опорное кольцо vs шовная аннулопластика), 10-летние отдаленные результаты. Сибирский медицинский журнал (Иркутск). 2015; 136 (5): 27–31.; Acker MA, Parides MK, Perrault LP et al. Mitral-valve repair versus replacement for severe ischemic mitral regurgitation. N Engl J Med. 2013; 370 (1): 23–32. doi:10.1056/NEJMoa1312808.; Li B, Chen S, Sun H, Xu J, Song Y, Wang W et al. Mitral valve annuloplasty versus replacement for severe ischemic mitral regurgitation. Scientific reports. 2018; 8 (1): 1537. PubMed PMID: 29367688, doi:10.1038/s41598-018-19909-7.; Shang X, Lu R, Liu M, Xiao S, Dong N. Mitral valve repair versus replacement in elderly patients: a systematic review and meta-analysis. Journal of thoracic disease. 2017; 9 (9): 3045–3051. PubMed PMID: 29221278, doi:10.21037/jtd.2017.08.43.; Skov SN, Røpcke DM, Tjørnild MJ, Ilkjær C, Rasmussen J, Nygaard H et al. Remodeling Mitral Annuloplasty Ring Concept with Preserved Dynamics of Annular Height. J Heart Valve Dis. 2017; 26 (3): 295–303. Pub- Med PMID: 29092114.; Andreas M, Doll N, Livesey S, Castella M, Kocher A, Casselman F et al. Safety and feasibility of a novel adjustable mitral annuloplasty ring: a multicentre European experience. European journal of cardio-thoracic surgery: official journal of the European Association for Cardio- thoracic Surgery. 2016; 49 (1): 249–254. PubMed PMID: 25694471, doi:10.1093/ejcts/ezv015.; Сhan JL, Li M, Mazilu D, Miller JG, Diaconescu AC, Horvath KA. Novel Direct Annuloplasty Fastener System for Minimally Invasive Mitral Valve Repair. Cardiovascular engineering and technology. 2018; 9 (1): 53–59. PubMed PMID: 29168146, doi:10.1007/s13239-017-0337-7.; Choi A, Rim Y, Mun JS, Kim H. A novel finite elementbased patient-specific mitral valve repair: virtual ring annuloplasty. Bio-medical materials and engineering. 2014; 24 (1): 341–347. doi:10.3233/BME-130816.; Labrosse M, Mesana T, Baxter I, Chan V. Finite element analysis to model complex mitral valve repair. Asian Cardiovasc Thorac Ann. 2016; 24 (1): 60–62. PubMed PMID: 24211915, doi:10.1177/0218492314539334.; Бельский ВВ, Муратов РМ, Сачков АС. Современные тенденции выбора метода аннулопластики при коррекции митральной недостаточности. Грудная и сердечно-сосудистая хирургия. 2016; 58 (6): 328–335.; Shahin GM, van der Heijden GJ, Bots ML, Cramer MJ, Jaarsma W, Gadellaa JC et al. The Carpentier-Edwards Classic and Physio mitral annuloplasty rings: a randomized trial. The heart surgery forum. 2005; 8 (5): E389– 394; discussion E394–395. PubMed PMID: 16401533, doi:10.1532/HSF98.20051114.; Lange R, Guenther T, Kiefer B, Noebauer C, Goetz W, Busch R et al. Mitral valve repair with the new semirigid partial Colvin-Galloway Future annuloplasty band. The Journal of thoracic and cardiovascular surgery. 2008; 135 (5): 1087–1093, 1093.e1-4. PubMed PMID: 18455589, doi:10.1016/j.jtcvs.2007.11.037.; Wan S, Lee AP, Attaran S, Yu PS, Au SS, Kwok MW et al. Mitral valve repair using a semirigid ring: patient selection and early outcomes. Asian cardiovascular & thoracic annals. 2016; 24 (7): 647–652. PubMed PMID: 27448551, doi:10.1177/0218492316659970.; Hoh DJ, Hoh BL, Amar AP, Wang MY. Shape memory alloys: metallurgy, biocompatibility, and biomechanics for neurosurgical applications. Neurosurgery. 2009; 64 (5 Suppl 2): 199–214; discussion 214–215. PubMed PMID: 19404101, doi:10.1227/01.NEU.0000330392.09889.99.; Stoeckel D, Pelton A, Duerig T. Self-expanding nitinol stents: material and design considerations. European radiology. 2004; 14 (2): 292–301. PubMed PMID: 12955452, doi:10.1007/s00330-003-2022-5.; Chen W, Song B. Temperature dependence of a NiTi shape memory alloy’s superelastic behavior at a high strain rate. Journal of mechanics of materials and structures. Journal of Mechanics of Materials and Structures. 2006; 1 (2): 339–356. doi:10.2140/jomms.2006.1.339.; Yan W, Chun HW, Xin Ping Zhang, Mai Y-W. Effect of transformation volume contraction on the toughness of superelastic shape memory alloys. Smart Material and Structure. 2002; 11 (6): 947–955. doi:10.1088/0964-1726/11/6/316.; Moorleghem WV, Otte D. The Use of Shape Memory Alloys for Fire Protection. Engineering Aspects of Shape Memory Alloys. Butterworth-Heinemann Ltd., London, 1990.; Barras CD, Myers KA. Nitinol – its use in vascular surgery and other applications. European Journal of Vascular and Endovascular Surgery. 2000; 19 (6): 564–569. doi:10.1053/ejvs.2000.1111.; Pelton AR, Russell SM, DiCello J. The physical metallurgy of nitinol for medical applications. JOM: the journal of the Minerals, Metals & Materials Society. 2003; 55: 33–37. doi:10.1007/s11837-003-0243-3.; Chen W, Song B. Temperature dependence of a niti shape memory alloy’s superelastic behavior at a high strain rate. Journal of mechanics of materials and structures. 2006; 1 (2): 339–356.; Gil FJ, Planell JA. Shape memory alloys for medical applications. Proceedings of the Institution of Mechanical Engineers Part H. Journal of Engineering in Medicine. 1998; 212 (6): 473–488. PubMed PMID: 9852742.; Madamba DLL. The Effect of Surface Treatment on Nickel Leaching from Nitinol [Internet]. SJSU Scholar Works; 2013. [cited 2018 December 3] Available from: https://scholarworks.sjsu.edu/etd_theses/4287.; https://journal.transpl.ru/vtio/article/view/1146

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    Academic Journal

    Source: Buletinul Academiei de Ştiinţe a Moldovei. Ştiinţe Medicale 65 (1) 178-190

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    Relation: info:eu-repo/grantAgreement/EC/FP7/17185/EU/Alternative terapeutice noi de ameliorere a prognozei de lungă durată a pacienților cu insuficiență cardiacă cronică prin implementarea strategiilor chirurgicale, intervenționale și de recuperare peri/20.80009.8007.34; https://ibn.idsi.md/vizualizare_articol/115044; urn:issn:18570011

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    Academic Journal

    Source: Diagnostic radiology and radiotherapy; № 1 (2017); 64-68 ; Лучевая диагностика и терапия; № 1 (2017); 64-68 ; 2079-5343 ; 10.22328/2079-5343-2017-1

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    Relation: https://radiag.bmoc-spb.ru/jour/article/view/200/199; Grigoni F., Avierinos J. F., Ling L. H. et al. Atrial fibrillation complicating the course of degenerative mitral regurgitation. Determinants and long-term outcomes // J. Am. Coll Cardiol.— 2002.— Vol. 40.— Р. 84–92.; Grigioni F., Enriquez-Sarano M., Ling L. H. et al. Sudden death in mitral regurgitation due to flail leaflet // J. Am. Coll Cardiol.— 1999.— Vol. 34 (7).— Р. 2078–2085.; Apostolakis E. E., Baikoussis N. G. Methods of estimation of mitral valve regurgitation for the cardiac surgeon // J. of Cardiothoracic Surgery.— 2009.— Vol. 4 (1).— Р. 34–41.; Манфред Т., Раймунд Э., Крейтнер К. Ф., Баркхаузен Й. Лучевые методы диагностики болезней сердца.— М.: МЕДпресс-информ, 2011.; Bonow R., Carabello R., Chatterjee K. et al. ACC/AHA 2006 Guidelines for the Management of Patients With Valvular Heart Disease // Circulation.— 2006.— Vol. 114.— Р. 84–231.; Костин В. С. Статистика для сравнения классификаций. Информационные технологии в гуманитарных исследованиях.— 2003.— № 6.— С. 57–65.; Cohen J. Weighted kappa: Nominal scale agreement with provision for scaled disagreement or partial credit // Psychol. Bull.— 1968.— Vol. 70.— Р. 213–220.; Lang R., Bierig M., Devereux R. et al. Recommendations for Chamber Quantification: A Report from the American Society of Echocardiography’s Guidelines and Standards Committee and the Chamber Quantification Writing Group // J. Am. Soc. Echocardiogr.— 2005.— Vol. 18.— Р. 1440–1463.; Беленков Ю. Н., Терновой С. К., Синицын В. Е. Магнитно-резонансная томография сердца и сосудов.— М.: Видар, 1997.; Kreitne K. F., Sandstede J. Leitlinienfür den Einsatz der MR-Tomographi in der Herzdiagnostik // Fortschr Roentgenstr.— 2004.— Vol. 176.— Р. 1185–1193.; Bollache E., Redheuil A., Defrance C. et al. The clinical value of phase-contrast CMR mitral inflow diastolic parameters: comparison with echocardiography // J. of Cardiovascular Magnetic Resonance.— 2011.— Vol. 13.— Р. 32.; Heitner J., Bhumireddy G. P., Crowley A. L. et al. Clinical Application of Cine-MRI in the Visual Assessment of Mitral Regurgitation Compared to Echocardiography and Cardiac Catheterization // PLoS ONE.— 2012.— Vol. 7.— Р. 1–7.; Bellenger N., Burgess M. I., Ray S. G. Comparison of left ventricular ejection fraction and volumes in heart failure by echocardiography, radionucleide ventriculography and cardiovascular magnetic resonance. Are they interchangeable? // Eur. Heart J.— 2000.— Vol. 21.— Р. 1387–1396.; Gelfand E. V., Hughes S., Hauser T. H. et al. Severity of Mitral and Aortic Regurgitation as Assessed by Cardiovascular Magnetic Resonance: Optimizing Correlation with Doppler Echocardiography // J. of Cardiovascular Magnetic Resonance.— 2006.— Vol. 8.— Р. 503–507.; Kizilbash A., Handley W., Willett D. et al. Comparison of quantitative Doppler with magnetic resonance imaging for assessment of the severity of mitral regurgitation // Am. J. Cardiol.— 1998.— Vol. 81.— Р. 792–795.; Sandra H., Ertunc A., Michael F. et al. Comparison of Accuracy of Mitral Valve Regurgitation Volume Determined by Three-Dimensional Transesophageal Echocardiography Versus Cardiac Magnetic Resonance Imaging // Am. J. of Cardiol.— 2012.— Vol. 110 (7).— Р. 1015–1020.; Shanks M., Siebelink H., Delgado V. et al. Quantitative Assessment of Mitral Regurgitation Comparison Between Three-Dimensional Transesophageal Echocardiography and Magnetic Resonance Imaging // Circ. Cardiovasc. Imaging.— 2010.— Vol. 5 (11).— Р. 1161–1175.; Malm S., Frigstad S., Sagberg E. et al. Accurate and reproducible measurement of left ventricular volume and ejection fraction by contrast echocardiography a comparison with magnetic resonance imaging // J. Am. Coll Cardiol.— 2004.— Vol. 44 (5).— Р. 1030–1035.