Literature DB >> 7485564

Biaxial mechanical behavior of excised porcine mitral valve leaflets.

K May-Newman1, F C Yin.   

Abstract

Anterior and posterior leaflets from excised porcine mitral valves were mechanically tested under cyclic equibiaxial and strip biaxial stretch protocols at a strain rate of 4-12%/s after preconditioning. Cauchy stress and Lagrangian strain were calculated for both membrane and three-dimensional cases. The leaflets exhibited nonlinearly elastic, anisotropic behavior. Both anterior and posterior leaflets were less extensible in the circumferential than in the radial direction under equibiaxial stretch, with stress ratios of 5.7 and 4.3, respectively. The posterior leaflets exhibited greater extensibility in both directions and lower circumferential posttransitional moduli (ranges 690-820 vs. 2,500-3,200 N/m for anterior). This larger posterior extensibility may be due to the greater number of chordal attachments, which provide additional mechanical stability to this structure. Coupling of radial and circumferential mechanical behavior was evidenced by the response to different stretch protocols, indicating a complex microstructural coupling between individual collagen fibers or bundles. These are the first biaxial data for mitral valves and are a foundation for the development of a more detailed quantitative material description.

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Year:  1995        PMID: 7485564     DOI: 10.1152/ajpheart.1995.269.4.H1319

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  50 in total

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3.  Active stiffening of mitral valve leaflets in the beating heart.

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4.  Material properties of the ovine mitral valve anterior leaflet in vivo from inverse finite element analysis.

Authors:  Gaurav Krishnamurthy; Daniel B Ennis; Akinobu Itoh; Wolfgang Bothe; Julia C Swanson; Matts Karlsson; Ellen Kuhl; D Craig Miller; Neil B Ingels
Journal:  Am J Physiol Heart Circ Physiol       Date:  2008-07-11       Impact factor: 4.733

5.  Age-related changes in material behavior of porcine mitral and aortic valves and correlation to matrix composition.

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6.  The effect of patient-specific annular motion on dynamic simulation of mitral valve function.

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7.  Fast Simulation of Mitral Annuloplasty for Surgical Planning.

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Review 8.  Computational modeling of cardiac valve function and intervention.

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Journal:  Annu Rev Biomed Eng       Date:  2014-04-16       Impact factor: 9.590

9.  Mitral valve function following ischemic cardiomyopathy: a biomechanical perspective.

Authors:  Yonghoon Rim; David D McPherson; Hyunggun Kim
Journal:  Biomed Mater Eng       Date:  2014       Impact factor: 1.300

10.  In vivo biomechanical assessment of triglycidylamine crosslinked pericardium.

Authors:  Michael S Sacks; Hirotsugu Hamamoto; Jeanne M Connolly; Robert C Gorman; Joseph H Gorman; Robert J Levy
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