首页> 外文期刊>JSME International Journal. Series C >Computer Simulation of Blood Flow, Left Ventricular Wall Motion and Their Interrelationship by Fluid-Structure Interaction Finite Element Method
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Computer Simulation of Blood Flow, Left Ventricular Wall Motion and Their Interrelationship by Fluid-Structure Interaction Finite Element Method

机译:流固耦合有限元法的血流,左心室壁运动及其相互关系的计算机模拟

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摘要

To simulate fluid-structure interaction involved in the contraction of a human left ventricle, a 3D finite element based simulation program incorporating the propagation of excitation and excitation-contraction coupling mechanisms was developed. An ALE finite element method with automatic mesh updating was formulated for large domain changes, and a strong coupling strategy was taken. Under the assumption that the inertias of both fluid and structure are negligible and fluid-structure interaction is restricted to the pressure on the interface, the fluid dynamics part was eliminated from the FSI program, and a static structural FEM code corresponding to the cardiac muscles was also developed. The simulations of the contraction of the left ventricle in normal excitation and arrhythmia demonstrated the capability of the proposed method. Also, the results obtained by the two methods are compared. These simulators can be powerful tools in the clinical practice of heart disease.
机译:为了模拟参与人体左心室收缩的流体-结构相互作用,开发了一种基于3D有限元的仿真程序,该程序结合了激励传播和激励-收缩耦合机制。针对大的区域变化制定了具有自动网格更新的ALE有限元方法,并采取了强耦合策略。在流体和结构的惯性都可以忽略不计且流体-结构相互作用被限制在界面压力的假设下,从FSI程序中删除了流体动力学部分,并且对应于心肌的静态结构FEM代码为也发展了。正常兴奋和心律不齐时左心室收缩的模拟证明了该方法的能力。另外,比较了通过两种方法获得的结果。这些模拟器可以成为心脏病临床实践中的强大工具。

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