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Effect of bending rigidity in a dynamic model of a polyurethane prosthetic mitral valve

机译:弯曲刚度对聚氨酯人工二尖瓣动态模型的影响

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We investigate the behaviour of a dynamic fluid- structure interaction model of a chorded polyurethane mitral valve prosthesis, focusing on the effects on valve dynamics of including descriptions of the bending stiffnesses of the valve leaflets and artificial chordae tendineae. Each of the chordae is attached at one end to the valve annulus and at the other to one of two chordal attachment points. These attachment points correspond to the positions where the chords of the real prosthesis would attach to the left-ventricular wall, although in the present study, these attachment points are kept fixed in space to facilitate comparison between our simulations and earlier results obtained from an experimental test rig. In our simulations, a time-dependent pressure difference derived from experimental measurements drives flow through the model valve during diastole and provides a realistic pressure load during systole. In previous modelling studies of this valve prosthesis, the valve presents an unrealistically large orifice at beginning of diastole and does not close completely at the end of diastole.We show that including a description of the chordal bending stiffness enables the model valve to close properly at the end of the diastolic phase of the cardiac cycle.Valve over-opening is eliminated only by incorporating a description of the bending stiffnesses of the valve leaflets into the model. Thus, bending stiffness plays a significant role in the dynamic behaviour of the polyurethane mitral valve prosthesis.
机译:我们研究了弦状聚氨酯二尖瓣假体的动态流固耦合模型的行为,重点是对瓣膜动力学的影响,包括瓣膜小叶和人工腱索的弯曲刚度的描述。每个腱索的一端都连接到瓣膜环上,而另一端则连接到两个和弦连接点之一上。这些附着点对应于真实假体的弦将附着到左心室壁的位置,尽管在本研究中,这些附着点保持固定在空间中,以便于我们的模拟与从实验获得的早期结果之间进行比较试验台在我们的模拟中,从实验测量得出的随时间变化的压差会在心脏舒张期驱动流过模型阀的流量,并在心脏收缩期提供实际的压力负荷。在以前对这种瓣膜假体的建模研究中,瓣膜在舒张期开始时出现了一个不切实际的大孔口,并且在舒张末期并未完全关闭。我们表明,包括对弦的弯曲刚度的描述可以使模型瓣膜在以下位置正确关闭仅在模型中纳入对瓣膜小叶弯曲刚度的描述,才能消除瓣膜过开现象。因此,弯曲刚度在聚氨酯二尖瓣假体的动态行为中起重要作用。

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