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Fluid-structure interaction assessment of blood flow hemodynamics and leaflet stress during mitral regurgitation

机译:二尖瓣反流期间血流动力学和小叶应力的流固耦合评估

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The aim of this study is to simulate the Mitral Regurgitation (MR) disease progression from mild to severe intensity. A Fluid Structure Interaction (FSI) model was developed to extract the hemodynamic parameters of blood flow in mitral regurgitation (MR) during systole. A two-dimensional (2D) geometry of the mitral valve was built based on the data resulting from Magnetic Resonance Imaging (MRI) dimensional measurements. The leaflets were assumed to be elastic. Using COMSOL software, the hemodynamic parameters of blood flow including velocity, pressure, and Von Mises stress contours were obtained by moving arbitrary Lagrange-Euler mesh. The results were obtained for normal and MR cases. They showed the effects of the abnormal distance between the leaflets on the amount of returned flow. Furthermore, the deformation of the leaflets was measured during systole. The results were found to be consistent with the relevant literature.
机译:这项研究的目的是模拟二尖瓣反流(MR)疾病从轻度到重度的进展。建立了流体结构相互作用(FSI)模型以提取收缩期二尖瓣反流(MR)中血流的血液动力学参数。基于磁共振成像(MRI)尺寸测量得到的数据,建立了二尖瓣的二维(2D)几何形状。小叶被认为是有弹性的。使用COMSOL软件,通过移动任意Lagrange-Euler网格,可以获得血流的血液动力学参数,包括速度,压力和冯·米塞斯应力轮廓。获得了正常和MR病例的结果。他们显示了小叶之间的异常距离对回流流量的影响。此外,在收缩期测量小叶的变形。发现结果与相关文献一致。

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