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首页> 外文期刊>Biomechanics and Modeling in Mechanobiology >Finite element analysis of the mitral apparatus: annulus shape effect and chordal force distribution
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Finite element analysis of the mitral apparatus: annulus shape effect and chordal force distribution

机译:二尖瓣装置的有限元分析:瓣环形状效应和弦力分布

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摘要

This study presents a three-dimensional finite element model of the mitral apparatus using a hyperelastic transversely isotropic material model for the leaflets. The objectives of this study are to illustrate the effects of the annulus shape on the chordal force distribution and on the mitral valve response during systole, to investigate the role of the anterior secondary (strut) chordae and to study the influence of thickness of the leaflets on the leaflets stresses. Hence, analyses are conducted with a moving and fixed saddle shaped annulus and with and without anterior secondary chordae. We found that the tension in the secondary chordae represents 31% of the load carried by the papillary muscles. When removing the anterior secondary chordae, the tension in the primary anterior chordae is almost doubled, the displacement of the anterior leaflet toward the left atrium is also increased. The moving annulus configuration with an increasing annulus saddle height does not give significant changes in the chordal force distribution and in the leaflet stress compared to the fixed annulus. The results also show that the maximum principle stresses in the anterior leaflet are carried by the collagen fibers. The stresses calculated in the leaflets are very sensitive to the thickness employed.
机译:这项研究提出了使用超弹性横向各向同性材料模型的小叶二尖瓣装置的三维有限元模型。这项研究的目的是说明瓣环形状对收缩期弦力分布和二尖瓣反应的影响,以研究前继发性(支撑)腱索的作用并研究小叶厚度的影响小叶上的压力。因此,分析是使用移动的和固定的鞍形瓣环,并伴有或不伴有前次级腱索。我们发现次级腱索中的张力代表了乳头肌所承受的负荷的31%。当去除前次级腱索时,初级前腱索中的张力几乎增加了一倍,前小叶向左心房的位移也增加了。与固定环相比,具有增加的环鞍高度的移动环结构不会在弦力分布和小叶应力方面产生重大变化。结果还表明,前小叶中的最大主应力由胶原纤维承担。传单中计算出的应力对所用厚度非常敏感。

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