首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Structural analysis of a stented pericardial heart valve with leaflets mounted externally
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Structural analysis of a stented pericardial heart valve with leaflets mounted externally

机译:带有小叶的支架式心包心脏瓣膜的结构分析

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Our aim was to understand the structural and functional behaviour of a pericardial heart valve with biological leaflets attached externally to a stent. To our knowledge, there is little if any literature concerning these kinds of bioprosthetic heart valves, while there is more concerning bioprosthetic heart valves with leaflets mounted internally. We studied the problem using a finite element approach considering leaflets and stent interaction, the influence of leaflet anisotropy and stent stiffness, by comparing quasi-static and dynamic loadings. Although we considered the problem to be symmetric and fluid-structure interaction was not implemented, we believe that our results could be a solid basis for valve optimization. We found regions of high stress concentration at the commissure near the stent tip and at the base of the leaflet cusp. The structural behaviour in the first region was complex, while the stress in the second region acted radially because of high bending. Although leaflet tissue anisotropy and stent stiffness exerted a significant influence on the structural and functional behaviours, they had a contrasting effect on leaflet stress state, coaptation and valve opening. Therefore, a good optimization should take into account both structural and functional requirements when tuning tissue properties and stent stiffness.
机译:我们的目的是了解在体外将生物瓣叶附着在支架上的心包心脏瓣膜的结构和功能行为。据我们所知,关于这类生物人工心脏瓣膜的文献很少,而有关内部安装有小叶的生物人工心脏瓣膜的文献较多。通过比较准静态和动态载荷,我们使用有限元方法研究了问题,其中考虑了小叶和支架之间的相互作用,小叶各向异性和支架刚度的影响。尽管我们认为该问题是对称的并且没有实现流固耦合,但是我们相信我们的结果可以为阀门优化打下坚实的基础。我们在支架尖端附近的连合处和小叶尖的底部发现了高​​应力集中区域。在第一区域中的结构行为很复杂,而在第二区域中的应力由于高弯曲而径向地起作用。尽管小叶组织的各向异性和支架的刚度对结构和功能行为产生了显着影响,但它们对小叶的应力状态,接合和瓣膜开度具有相反的影响。因此,在调整组织特性和支架刚度时,良好的优化应同时考虑结构和功能要求。

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