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基于人体左心室三维有限元模型的流固耦合分析

[Fluid-structure interaction analysis based on a 3D finite element model of human left ventricular].

作者信息

Wu Bo, Zhang Kaijun, Wan Hao, Liu Qian

机构信息

Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2013 Feb;30(1):149-56.

Abstract

A 3D model of heart configurations and interior structures has been constructed using Visual C++ visualization toolkit based on the Dataset of Visible Chinese Human. The finite element model of left ventricular is obtained from the heart structure model. Both ventricular wall and blood in the cavity are modeled by finite element mesh. The fluid-structure coupling of the left ventricle and blood has been constructed using an arbitrary Lagrange-Euler algorithm. Based on these models, the fluid-structure interaction of the left ventricle and blood in the filling phase is simulated. The simulation result successfully reproduced the biphasic filling flow consisting of early rapid filling and atrial contraction, which is similar to the clinical observation. This study provides a feasible method with which we can use image-based fluid-structure simulation to analyse the structure and haemodynamics properties of heart. It could be applied in heart functional investigations and clinical applications.

摘要

基于可视中国人数据集,使用Visual C++可视化工具包构建了心脏形态和内部结构的三维模型。左心室的有限元模型从心脏结构模型中获取。心室壁和腔内血液均采用有限元网格建模。利用任意拉格朗日-欧拉算法构建了左心室与血液的流固耦合模型。基于这些模型,模拟了左心室与血液在充盈期的流固相互作用。模拟结果成功再现了由早期快速充盈和心房收缩组成的双相充盈血流,这与临床观察结果相似。本研究提供了一种可行的方法,可利用基于图像的流固模拟来分析心脏的结构和血流动力学特性。它可应用于心脏功能研究和临床应用。

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