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Fluid-Structure Interaction Simulation of Mitral Valve During Left Heart Filling

机译:左心填充期间二尖瓣流体结构相互作用模拟

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Numerical simulations of mitral valve (MV) have a significant impact on MV repair and replacement strategies. In this study a fluid-structure interaction (FSI) simulation using Arbitrary Lagrangian-Eulerian (ALE) method was conducted to investigate the effects of atrium and MV on the hemodynamics of diastolic flow. This approach to simulating MV function in interaction with left atrium and ventricle is considered novel. Image-based left heart geometry was used in addition to MV anatomical geometry in a fully coupled model. Results show that three consecutive vortex rings are formed during the simulation at the place of valve leaflets. A comparison of flow characteristics between a physiological and simplified atrium was also conducted to further investigate the effects of passive MV model on flow patterns.
机译:二尖瓣(MV)的数值模拟对MV修复和更换策略产生了重大影响。在这项研究中,进行了使用任意拉格朗日 - 欧拉(ALE)方法的流体结构相互作用(FSI)模拟,以研究中庭和MV对舒张流流动血流动力学的影响。这种方法来模拟与左心房和心室的相互作用的方法是新颖的。除了完全耦合模型中的MV解剖学几何形状之外,使用基于图像的左心几何。结果表明,在阀门叶片仿真期间形成了三个连续的涡旋环。还进行了生理和简化庭之间的流动特性的比较,以进一步研究被动MV模型对流动模式的影响。

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