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Results from the first multicenter global registry, JACC Cardiovasc Interv, 9, 1361, 10.1016\u002Fj.jcin.2016.04.022\nMuller, 2017, Transcatheter mitral valve replacement for patients with symptomatic mitral regurgitation: a global feasibility trial, J Am Coll Cardiol, 69, 381, 10.1016\u002Fj.jacc.2016.10.068\nEleid, 2016, Percutaneous transvenous transseptal transcatheter valve implantation in failed bioprosthetic mitral valves, ring annuloplasty, and severe mitral annular calcification, JACC Cardiovasc Interv, 9, 1161, 10.1016\u002Fj.jcin.2016.02.041\nEl Sabbagh, 2018, Direct transatrial implantation of balloon-expandable valve for mitral stenosis with severe annular calcifications: early experience and lessons learned, Eur J Cardiothorac Surg, 53, 162, 10.1093\u002Fejcts\u002Fezx262\nNishimura, 2014, 2014 AHA\u002FACC guideline for the management of patients with valvular disease: executive summary: a report of the American College of Cardiology\u002FAmerican Heart Association Task Force on Practice Guidelines, J Am Coll Cardiol, 63, 2438, 10.1016\u002Fj.jacc.2014.02.537\nNishimura, 2017, 2017 AHA\u002FACC focused update of the 2014 AHA\u002FACC guideline for the management of patients with valvular heart disease: a report of the American College of Cardiology\u002FAmerican Heart Association Task Force on Clinical Practice Guidelines, Circulation, 135, e1159, 10.1161\u002FCIR.0000000000000503\nLancellotti, 2013, Recommendations for the echocardiographic assessment of native valvular regurgitation: an executive summary from the European Association of Cardiovascular Imaging, Eur Hear J Cardiovasc Imaging, 14, 611, 10.1093\u002Fehjci\u002Fjet105\nZoghbi, 2017, 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, 30, 303, 10.1016\u002Fj.echo.2017.01.007\nO’Gara, 2017, 2017 ACC expert consensus decision pathway on the management of mitral regurgitation: a report of the American College of Cardiology Task Force on Expert Consensus Decision Pathways, J Am Coll Cardiol, 70, 2421\nMahmood, 2016, A practical approach to an intraoperative three-dimensional transesophageal echocardiography examination, J Cardiothorac Vasc Anesth, 30, 470, 10.1053\u002Fj.jvca.2015.10.014\nWang, 2016, Predicting LVOT obstruction after TMVR, JACC Cardiovasc Imaging, 9, 1349, 10.1016\u002Fj.jcmg.2016.01.017\nRankin, 2017, The Society of Thoracic Surgeons mitral valve repair\u002Freplacement plus coronary artery bypass grafting composite score: a report of the Society of Thoracic Surgeons Quality Measurement Task Force, Ann Thorac Surg, 103, 1475, 10.1016\u002Fj.athoracsur.2016.09.035\nBadhwar, 2016, The Society of Thoracic Surgeons mitral repair\u002Freplacement composite score: a report of the Society of Thoracic Surgeons Quality Measurement Task Force, Ann Thorac Surg, 101, 2265, 10.1016\u002Fj.athoracsur.2015.11.049\nOsnabrugge, 2014, Performance of EuroSCORE II in a large US database: implications for transcatheter aortic valve implantation, Eur J Cardiothorac Surg, 46, 400, 10.1093\u002Fejcts\u002Fezu033\nStrandberg, 2007, Frailty in elderly people, Lancet, 369, 1328, 10.1016\u002FS0140-6736(07)60613-8\nSundermann, 2011, Comprehensive assessment of frailty for elderly high-risk patients undergoing cardiac surgery, Eur J Cardiothorac Surg, 39, 33, 10.1016\u002Fj.ejcts.2010.04.013\nMetze, 2017, Impact of frailty on outcomes in patients undergoing percutaneous mitral valve repair, JACC Cardiovasc Interv, 10, 1920, 10.1016\u002Fj.jcin.2017.07.042\nCheung, 2013, 5-Year experience with transcatheter transapical mitral valve-in-valve implantation for bioprosthetic valve dysfunction, J Am Coll Cardiol, 61, 1759, 10.1016\u002Fj.jacc.2013.01.058\nGuerrero, 2014, First in human percutaneous implantation of a balloon expandable transcatheter heart valve in a severely stenosed native mitral valve, Catheter Cardiovasc Interv, 83, E287, 10.1002\u002Fccd.25441\nMaisano, 2015, The future of transcatheter mitral valve interventions: competitive or complementary role of repair vs. replacement?, Eur Heart J, 36, 1651, 10.1093\u002Feurheartj\u002Fehv123\nColli, 2015, Acute safety and efficacy of the NeoChord procedure, Interact Cardiovasc Thorac Surg, 20, 571, 10.1093\u002Ficvts\u002Fivv014\nGammie, 2016, Transapical beating-heart mitral valve repair with an expanded polytetrafluoroethylene cordal implantation device: initial clinical experience, Circulation, 134, 189, 10.1161\u002FCIRCULATIONAHA.116.022010\nBlanke, 2015, Multimodality imaging in the context of transcatheter mitral valve replacement establishing consensus among modalities and disciplines, JACC Cardiovasc Imaging, 8, 1192, 10.1016\u002Fj.jcmg.2015.08.004\nMahmood, 2012, En face view of the mitral valve: definition and acquisition, Anesth Analg, 115, 779, 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replacement with a transcatheter valve in the setting of severe mitral annular calcification, J Thorac Cardiovasc Surg, 151, e47, 10.1016\u002Fj.jtcvs.2015.10.040\nForcillo, 2016, A very elegant transcatheter strategy for complicated mitral valve replacement associated with severe mitral annular calcification, J Thorac Cardiovasc Surg, 151, e49, 10.1016\u002Fj.jtcvs.2015.11.005\nGuerrero, 2017, Percutaneous rescue of an embolized valve after transcatheter mitral valve replacement, JACC Cardiovasc Interv, 10, 627, 10.1016\u002Fj.jcin.2017.01.020\nNguyen, 2016, Late displacement after transcatheter mitral valve replacement for degenerative mitral valve disease with massive annular calcification, JACC Cardiovasc Interv, 9, 1633, 10.1016\u002Fj.jcin.2016.05.033\nObase, 2015, Visualization and measurement of mitral valve chordae tendineae using three-dimensional transesophageal echocardiography from the transgastric approach, J Am Soc Echocardiogr, 28, 449, 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In press.\nLang, 2015, 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, 28, 1, 10.1016\u002Fj.echo.2014.10.003\nZeng, 2011, Diagnostic value of vena contracta area in the quantification of mitral regurgitation severity by color Doppler 3D echocardiography, Circ Cardiovasc Imaging, 4, 506, 10.1161\u002FCIRCIMAGING.110.961649\nYosefy, 2009, Direct measurement of vena contracta area by real-time 3-dimensional echocardiography for assessing severity of mitral regurgitation, Am J Cardiol, 104, 978, 10.1016\u002Fj.amjcard.2009.05.043\nAltiok, 2014, Comparison of two- and three-dimensional transthoracic echocardiography to cardiac magnetic resonance imaging for assessment of paravalvular regurgitation after transcatheter aortic valve implantation, Am J Cardiol, 113, 1859, 10.1016\u002Fj.amjcard.2014.02.038\nHansson, 2016, Transcatheter aortic valve thrombosis: incidence, predisposing factors, and clinical implications, J Am Coll Cardiol, 68, 2059, 10.1016\u002Fj.jacc.2016.08.010\nMakkar, 2015, Possible subclinical leaflet thrombosis in bioprosthetic aortic valves, N Engl J Med, 373, 2015, 10.1056\u002FNEJMoa1509233\nRoosen, 2017, Low-dose and slow-infusion thrombolysis for prosthetic valve thrombosis after a transcatheter valve in the mitral position, JACC Cardiovasc Interv, 10, 738, 10.1016\u002Fj.jcin.2017.01.033\nEng, 2017, Thrombotic valvular dysfunction with transcatheter mitral interventions for postsurgical failures, Catheter Cardiovasc Interv, 90, 321, 10.1002\u002Fccd.26909\nCapretti, 2016, Valve thrombosis after transcatheter mitral valve replacement, J Am Coll Cardiol, 68, 1814, 10.1016\u002Fj.jacc.2016.07.757",{"EN":603},"Role of Echocardiography in Transcatheter Mitral Valve Replacement in Native Mitral Valves and Mitral Rings",{"VOID":605},"10.1016\u002Fj.echo.2018.01.011","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0894731718300117",[608,623,638,653,668,683,695],{"id":609,"sortIndex":141,"researcher":18,"roles":610,"affiliations":611,"properties":620},"781c9857-4f6a-4939-84f1-c1fafee055b7",[126],[612],{"id":18,"sortIndex":19,"affiliation":613,"properties":18},{"id":614,"createTime":615,"updateTime":615,"relativeEntities":616,"slug":18,"properties":617,"entityType":46,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"ce7736cd-650a-46cc-b3ef-18c0b3c78966","2023-12-14T15:41:48.057+00:00",[],{"title":618},{"VI":619},"Division of Cardiology, Department of Medicine, Center for Structural Heart Disease, Henry Ford Health System, Detroit, Michigan",{"title":621},{"VI":622},"James C. 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10.1093\u002Feurheartj\u002Fehw211\nLiu, 2018, Contemporary role of echocardiography for clinical decision making in patients during and after cancer therapy, JACC Cardiovasc Imaging, 11, 1122, 10.1016\u002Fj.jcmg.2018.03.025\nWang, 2003, Natural history of asymptomatic left ventricular systolic dysfunction in the community, Circulation, 108, 977, 10.1161\u002F01.CIR.0000085166.44904.79\nRedfield, 2003, Burden of systolic and diastolic ventricular dysfunction in the community: appreciating the scope of the heart failure epidemic, JAMA, 289, 194, 10.1001\u002Fjama.289.2.194\nYeboah, 2012, Prognosis of individuals with asymptomatic left ventricular systolic dysfunction in the Multi-Ethnic Study of Atherosclerosis (MESA), Circulation, 126, 2713, 10.1161\u002FCIRCULATIONAHA.112.112201\nCannesson, 2007, A novel two-dimensional echocardiographic image analysis system using artificial intelligence-learned pattern recognition for rapid automated ejection fraction, J Am Coll Cardiol, 49, 217, 10.1016\u002Fj.jacc.2006.08.045\nLiel-Cohen, 2010, A new tool for automatic assessment of segmental wall motion based on longitudinal 2D strain: a multicenter study by the Israeli Echocardiography Research Group, Circ Cardiovasc Imaging, 3, 47, 10.1161\u002FCIRCIMAGING.108.841874\nBlondheim, 2012, Use of an automatic application for wall motion classification based on longitudinal strain: is it affected by operator expertise in echocardiography? 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