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Myocardial material parameter estimation: a comparison of invariant based orthotropic constitutive equations

机译:心肌材料参数估计:基于不变性的正交异性本构方程的比较

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This study investigated a number of invariant based orthotropic and transversely isotropic constitutive equations for their suitability to fit three-dimensional simple shear mechanics data of passive myocardial tissue.rnA number of orthotropic laws based on Green strain components and one microstructurally based law have previously been investigated to fit experimental measurements of stress-strain behaviour. Here we extend this investigation to include several recently proposed functional forms, i.e. invariant based orthotropic and transversely isotropic constitutive relations.rnThese laws were compared on the basis of (ⅰ) 'goodness of fit': how well they fit a set of six shear deformation tests, (ⅱ) 'variability': how well determined the material parameters are over the range of experiments. These criteria were utilised to discuss the advantages and disadvantages of the constitutive laws.rnIt was found that a specific form of the polyconvex type as well as the exponential Fung-type law from the previous study were most suitable for modelling the orthotropic behaviour of myocardium under simple shear.
机译:这项研究调查了一些基于不变性的正交各向异性和横向各向同性本构方程,以适应被动心肌组织的三维简单剪切力学数据.rn先前已经研究了基于格林应变分量和一种基于微结构定律的正交各向异性定律以适应应力应变行为的实验测量。在这里,我们将这项研究扩展到包括最近提出的几种功能形式,即基于不变性的正交各向异性和横向各向同性本构关系。rn这些定律是根据(good)“拟合优度”进行比较的:它们对一组六个剪切变形的拟合程度如何测试(ⅱ)“变异性”:在实验范围内确定材料参数的程度。这些标准被用来讨论本构定律的优缺点。rn发现,以前研究中的特定形式的多凸型以及指数型Fung型定律最适合于模拟心肌的正交各向异性行为。简单剪。

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