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被动心脏组织的本构关系和有限变形II:左心室应力分析

Constitutive relations and finite deformations of passive cardiac tissue II: stress analysis in the left ventricle.

作者信息

Humphrey J D, Yin F C

机构信息

Department of Mechanical Engineering, University of Maryland, Baltimore, Maryland.

出版信息

Circ Res. 1989 Sep;65(3):805-17. doi: 10.1161/01.res.65.3.805.

Abstract

We present a new approach for estimation of transmural distributions of stress and strain in the equatorial region of a passive left ventricle. We employ a thick-walled cylindrical geometry, assume that myocardium is incompressible, and use a three-dimensional constitutive relation that yields a material symmetry consistent with observed transmural variations in muscle fiber orientations. Moreover, we consider finite deformations including inflation, extension, twist, and transmural shearing and suggest a new method for determination of the requisite deformation parameters directly from experimental strain data. We show representative transmural distributions of stress and strain, and perform a parametric study to illustrate differing predictions of stress induced by varying boundary conditions, muscle fiber orientations, or modes of deformation. Our analysis can be used to guide and check future predictions of cardiac stresses, and to guide experimentalists by suggesting the accuracy of measurements essential for stress analysis in the heart.

摘要

我们提出了一种新方法,用于估计被动左心室赤道区域应力和应变的跨壁分布。我们采用厚壁圆柱几何形状,假设心肌不可压缩,并使用三维本构关系,该关系产生的材料对称性与观察到的肌纤维方向跨壁变化一致。此外,我们考虑了包括膨胀、伸展、扭转和跨壁剪切在内的有限变形,并提出了一种直接从实验应变数据确定所需变形参数的新方法。我们展示了应力和应变的代表性跨壁分布,并进行了参数研究,以说明不同边界条件、肌纤维方向或变形模式引起的应力预测差异。我们的分析可用于指导和检验未来对心脏应力的预测,并通过表明心脏应力分析所需测量的准确性来指导实验人员。

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