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Tangential stress analysis of myocardial wall by finite element method
Authors:Guan Qiu  Jiang Cao  Wang Xiaoyan  Chen Shengyong  Guan Fang
Affiliation:Guan Qiu1,Jiang Cao1,Wang Xiaoyan1,Chen Shengyong1,Guan Fang2 (1.Zhejiang University of Technology,Hangzhou 310014,China,2.Affiliation Hospital of Zhejiang University,Hangzhou 310003,China)
Abstract:A novel method is presented to build the triangular surface model and calculate the tangential stress and strain of myocardial wall ,which can be further used to reflect the left ventricle twisting—a sensitive index to assess the systolic and diastolic function of heart. Firstly, a point distribution model is used to obtain the feature points of the ventricular surface in medical images. Secondly, the surface model is constructed by triangular mesh, and then the subdivision strategy is introduced to refine the model. Thirdly, plane projection and finite element method(FEM) are applied to calculate the tangential stress and strain.Finally, the distribution of tangential modulus of elasticity is discussed. The stimulation results show that the proposed method can be used to compute the tangential stress and strain of myocardial wall effectively and the computing result is consistent with the results mentioned in the literatures.
Keywords:FEM  stress and strain of myocardial wall  tangential modulus of elasticity  subdivision  
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