Literature DB >> 23445052

Mechanics of healthy and functionally diseased mitral valves: a critical review.

Jean-Pierre M Rabbah1, Neelakantan Saikrishnan, Andrew W Siefert, Arvind Santhanakrishnan, Ajit P Yoganathan.   

Abstract

The mitral valve is a complex apparatus with multiple constituents that work cohesively to ensure unidirectional flow between the left atrium and ventricle. Disruption to any or all of the components-the annulus, leaflets, chordae, and papillary muscles-can lead to backflow of blood, or regurgitation, into the left atrium, which deleteriously effects patient health. Through the years, a myriad of surgical repairs have been proposed; however, a careful appreciation for the underlying structural mechanics can help optimize long-term repair durability and inform medical device design. In this review, we aim to present the experimental methods and significant results that have shaped the current understanding of mitral valve mechanics. Data will be presented for all components of the mitral valve apparatus in control, pathological, and repaired conditions from human, animal, and in vitro studies. Finally, current strategies of patient specific and noninvasive surgical planning will be critically outlined.

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Year:  2013        PMID: 23445052     DOI: 10.1115/1.4023238

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  11 in total

1.  On the mechanics of growing thin biological membranes.

Authors:  Manuel K Rausch; Ellen Kuhl
Journal:  J Mech Phys Solids       Date:  2014-02-01       Impact factor: 5.471

2.  Quantitative Evaluation of Annuloplasty on Mitral Valve Chordae Tendineae Forces to Supplement Surgical Planning Model Development.

Authors:  Andrew W Siefert; Jean-Pierre M Rabbah; Eric L Pierce; Karyn S Kunzelman; Ajit P Yoganathan
Journal:  Cardiovasc Eng Technol       Date:  2014-03-01       Impact factor: 2.495

3.  Tension to passively cinch the mitral annulus through coronary sinus access: an ex vivo study in ovine model.

Authors:  Shamik Bhattacharya; Thuy Pham; Zhaoming He; Wei Sun
Journal:  J Biomech       Date:  2014-02-06       Impact factor: 2.712

4.  Isolated effect of geometry on mitral valve function for in silico model development.

Authors:  Andrew William Siefert; Jean-Pierre Michel Rabbah; Neelakantan Saikrishnan; Karyn Susanne Kunzelman; Ajit Prithivaraj Yoganathan
Journal:  Comput Methods Biomech Biomed Engin       Date:  2013-09-24       Impact factor: 1.763

5.  Effects of annular contraction on anterior leaflet strain using an in vitro simulator with a dynamically contracting mitral annulus.

Authors:  Thomas F Easley; Charles H Bloodworth; Vinay Bhal; Ajit P Yoganathan
Journal:  J Biomech       Date:  2017-11-21       Impact factor: 2.712

Review 6.  Biomechanics of Cardiac Function.

Authors:  Andrew P Voorhees; Hai-Chao Han
Journal:  Compr Physiol       Date:  2015-09-20       Impact factor: 9.090

7.  Suture forces in undersized mitral annuloplasty: novel device and measurements.

Authors:  Andrew W Siefert; Eric L Pierce; Madonna Lee; Morten Ø Jensen; Chikashi Aoki; Satoshi Takebayashi; Joan Fernandez Esmerats; Robert C Gorman; Joseph H Gorman; Ajit P Yoganathan
Journal:  Ann Thorac Surg       Date:  2014-07       Impact factor: 4.330

Review 8.  A Technical Review of Minimally Invasive Mitral Valve Replacements.

Authors:  Georgia L Preston-Maher; Ryo Torii; Gaetano Burriesci
Journal:  Cardiovasc Eng Technol       Date:  2014-11-25       Impact factor: 2.495

9.  New insights into mitral heart valve prolapse after chordae rupture through fluid-structure interaction computational modeling.

Authors:  Andrés Caballero; Wenbin Mao; Raymond McKay; Charles Primiano; Sabet Hashim; Wei Sun
Journal:  Sci Rep       Date:  2018-11-23       Impact factor: 4.379

10.  Effect of glutaraldehyde based cross-linking on the viscoelasticity of mitral valve basal chordae tendineae.

Authors:  M Constable; H E Burton; B M Lawless; V Gramigna; K G Buchan; D M Espino
Journal:  Biomed Eng Online       Date:  2018-07-13       Impact factor: 2.819

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