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基于电生理-机械复合心脏模型的右心室三维运动分析

[Three-dimensional motion analysis of right ventricular based on an electrophysiologic-mechanical composite heart model].

作者信息

Xia Ling, Ye Xuesong, Huo Meimel, Zhang Yu, Don Jianhong

机构信息

Department of Biomedical Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2007 Feb;24(1):110-5.

Abstract

Based on our previous electrical heart model, an electromechanical biventricular model was constructed by means of composite material theory and the finite element method. And the 3-D motion of the right ventricular wall was simulated based on this model. The orientation of cardiac fibers and myocardial contractility were taken into consideration during simulation modeling. The propagation of electrical excitation was simulated using an electrical heart model, and the resulting active forces was used to calculate the ventricular wall motion. Regional deformation and Lagrangian strain tensors were calculated during systole. Displacements, minimum principal strains were used to describe the motion of the right ventricle. The simulation results are in good accordance with results obtained from MR tagging images reported in literatures. In addition, the results also show that although the maximum displacement occurs in the base of the heart, however, the maximum contraction occurs in the apex of the heart. Such result is very difficult to be obtained by means of animal experiment or human experiment. This study suggests that such electrophysiologic-mechanical biventricular models have the important significance to be used to assess the mechanical functions of the two ventricles.

摘要

基于我们之前的心脏电模型,利用复合材料理论和有限元方法构建了一个机电双心室模型。并基于该模型模拟了右心室壁的三维运动。在模拟建模过程中考虑了心肌纤维的方向和心肌收缩力。使用心脏电模型模拟电兴奋的传播,并将由此产生的作用力用于计算心室壁运动。在收缩期计算区域变形和拉格朗日应变张量。用位移、最小主应变来描述右心室的运动。模拟结果与文献报道的磁共振标记图像结果吻合良好。此外,结果还表明,虽然最大位移发生在心脏底部,但最大收缩发生在心脏尖部。这样的结果很难通过动物实验或人体实验获得。本研究表明,这种电生理-机械双心室模型对于评估两个心室的机械功能具有重要意义。

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