Humphrey J D, Strumpf R K, Yin F C
Department of Mechanical Engineering, University of Maryland, Baltimore 21228.
J Biomech Eng. 1990 Aug;112(3):340-6. doi: 10.1115/1.2891194.
In the first paper of this series, we proposed a new transversely isotropic pseudostrain-energy function W for describing the biomechanical behavior of excised noncontracting myocardium. The specific functional form of W was inferred directly from biaxial data to be a polynomial function of two coordinate invariant measures of the finite deformation and five material parameters. In this paper, best-fit values of the material parameters are determined from biaxial data using a nonlinear least-squares regression. These values of the parameters are shown to be well-determined, and the final constitutive relation is shown to have good predictive capabilities. Since the proposed constitutive relation describes much broader classes of in-vitro biaxial data than previously proposed relations, it may be better applicable to analyses of stress in the passive heart.
在本系列的第一篇论文中,我们提出了一种新的横观各向同性伪应变能函数W,用于描述离体非收缩心肌的生物力学行为。W的具体函数形式直接从双轴数据推断为有限变形的两个坐标不变量和五个材料参数的多项式函数。在本文中,使用非线性最小二乘回归从双轴数据确定材料参数的最佳拟合值。这些参数值显示为确定良好,并且最终本构关系显示具有良好的预测能力。由于所提出的本构关系比先前提出的关系描述了更广泛的体外双轴数据类别,因此它可能更适用于被动心脏中的应力分析。