Literature DB >> 26049365

Echocardiographically derived effective valve opening area in mitral prostheses: a comparative analysis of various calculations using continuity equation and pressure half time method.

Nikola Bogunovic1, Dieter Horstkotte2, Lothar Faber2, Lukas Bogunovic3, Frank van Buuren2.   

Abstract

Detection of dysfunctional mitral valve prostheses (MP) remains complex even though being optimized by considering echocardiographically derived prosthetic effective orifice area (VA). The purpose was to compare VA in MP, calculated by the continuity equation (CE) using peak velocities (CEVpeak), mean velocities (CEVmean), velocity-time integrals (CEVTI) and the pressure half time method using 220 ms as constant first (PHT220) as well as optimized constants. In 267 consecutive patients with normally functioning MP, we investigated VA within the first postoperative month. With increasing prosthetic sizes, mean VA values also increase in all calculations. The statistical curves demonstrate no significant difference in graphical steepness but show different levels. Comparison of mean VA showed the known systematic higher values of PHT220 and significantly decreased results when using CEVTI. This systematic difference between mean VA applying PHT220 versus CEVTI is approximately 1.0 cm(2) for all prosthetic sizes. Calculations via CEVpeak were close to the results of CEVTI. CEVmean produced values, which graphically correspond to the PHT220 curve. Only PHT220 detected the constructional equal prosthetic inner ring width between 29 and 31 mm. To compensate the systematic difference between CEVTI and PHT220, an optimized constant of 140 ms was calculated to be applied in PHT (PHT140). VA is a robust and, therefore, preferable parameter for investigating MP. If needed, both CE and PHT are applicable with a systematical difference between CEVTI and PHT220. An optimized constant of 140 ms (PHT140) should be applied when calculating VA of mitral valve prostheses via PHT.

Entities:  

Keywords:  Continuity equation; Echocardiography; Effective opening area; Hemodynamics; Pressure half time; Valve prosthesis

Mesh:

Year:  2015        PMID: 26049365     DOI: 10.1007/s00380-015-0690-0

Source DB:  PubMed          Journal:  Heart Vessels        ISSN: 0910-8327            Impact factor:   2.037


  45 in total

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Journal:  Echocardiography       Date:  1994-05       Impact factor: 1.724

3.  Mitral annular calcification in patients undergoing aortic valve replacement for aortic valve stenosis.

Authors:  Yoshiyuki Takami; Kazuyoshi Tajima
Journal:  Heart Vessels       Date:  2014-09-25       Impact factor: 2.037

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Authors:  J B Chambers
Journal:  J Heart Valve Dis       Date:  1993-09

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Authors:  Dieter Horstkotte; Maria Lengyel; Wilhelm P Mistiaen; Cornelia Piper; Heinz Völler
Journal:  J Heart Valve Dis       Date:  2005-01

7.  Doppler echocardiography of 119 normal-functioning St Jude Medical mitral valve prostheses: a comprehensive assessment including time-velocity integral ratio and prosthesis performance index.

Authors:  Joseph F Malouf; Manfredi Ballo; Heidi M Connolly; David O Hodge; Regina M Herges; Charles J Mullany; Fletcher A Miller
Journal:  J Am Soc Echocardiogr       Date:  2005-03       Impact factor: 5.251

8.  Mitral and aortic valve sclerosis/calcification and carotid atherosclerosis: results from 1065 patients.

Authors:  Andrea Rossi; Pompilio Faggiano; Alexandra E Amado; Mariantonietta Cicoira; Stefano Bonapace; Lorenzo Franceschini; Frank L Dini; Stefano Ghio; Eustachio Agricola; Pier Luigi Temporelli; Corrado Vassanelli
Journal:  Heart Vessels       Date:  2013-11-07       Impact factor: 2.037

9.  Left atrial longitudinal strain parameters predict postoperative persistent atrial fibrillation following mitral valve surgery: a speckle tracking echocardiography study.

Authors:  Ozkan Candan; Nihal Ozdemir; Soe Moe Aung; Cem Dogan; Can Yucel Karabay; Cetin Gecmen; Onur Omaygenç; Ahmet Güler
Journal:  Echocardiography       Date:  2013-04-19       Impact factor: 1.724

10.  Accuracy of a mitral valve segmentation method using J-splines for real-time 3D echocardiography data.

Authors:  Andrew W Siefert; David A Icenogle; Jean-Pierre M Rabbah; Neelakantan Saikrishnan; Jarek Rossignac; Stamatios Lerakis; Ajit P Yoganathan
Journal:  Ann Biomed Eng       Date:  2013-03-05       Impact factor: 3.934

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