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生物人工心脏瓣膜的功能分析

Functional analysis of bioprosthetic heart valves.

作者信息

Arcidiacono G, Corvi A, Severi T

机构信息

Dipartimento di Meccanica e Tecnologie Industriali, University of Florence, Italy.

出版信息

J Biomech. 2005 Jul;38(7):1483-90. doi: 10.1016/j.jbiomech.2004.07.007. Epub 2004 Nov 11.

Abstract

Glutaraldehyde-treated bovine pericardium is used successfully as bioprosthetic material in the manufacturing of heart valves leaflets. The mechanical properties of bovine pericardial aortic valve leaflets seem to influence its mechanical behaviour and the failure mechanisms. In this study the effect of orthotropy on tricuspid bioprosthetic aortic valve was analysed, using a three-dimensional finite element model, during the entire cardiac cycle. Multiaxial tensile tests were also performed to determine the anisotropy of pericardium. Seven different models of the same valve were analysed using different values of mechanical characteristics from one leaflet to another, considering pericardium as an orthotropic material. The results showed that even a small difference between values along the two axes of orthotropy can negatively influence leaflets performance as regard both displacement and stress distribution. Leaflets of bovine pericardium bioprostheses could be manufactured to be similar to natural human heart valves reproducing their well-known anisotropy. In this way it could be possible to improve the manufacturing process, durability and function of pericardial bioprosthetic valves.

摘要

戊二醛处理过的牛心包被成功用作制造心脏瓣膜小叶的生物假体材料。牛心包主动脉瓣膜小叶的机械性能似乎会影响其力学行为和失效机制。在本研究中,使用三维有限元模型分析了正交各向异性在整个心动周期对三尖瓣生物假体主动脉瓣膜的影响。还进行了多轴拉伸试验以确定心包的各向异性。考虑心包为正交各向异性材料,使用从一个小叶到另一个小叶的不同力学特性值,分析了同一瓣膜的七种不同模型。结果表明,即使正交各向异性的两个轴方向上的值存在微小差异,也会对小叶的位移和应力分布性能产生负面影响。可以制造出类似于天然人类心脏瓣膜的具有众所周知的各向异性的牛心包生物假体小叶。通过这种方式,有可能改进心包生物假体瓣膜的制造工艺、耐用性和功能。

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