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Generalisations of the strain-energy function of linear elasticity to model biological soft tissue

机译:线性弹性的应变能函数对生物软组织建模的概论

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摘要

Strain measures consistent with the classical, infinitesimal form of the strain-energy function are obtained within the context of isotropic, homogeneous, compressible, non-linear elasticity. It will be shown that there are two distinct families of such measures. One family has already been much studied in the literature, the most important member being the strains whose principal values are a function only of the corresponding principal stretches. The second family of strains appears new. The motivation for studying such strains is the intuitive expectation that, for at least moderate deformations, a good fit with experimental data from material characterisation tests will be obtained with the corresponding strain-energy functions. In particular, there is the expectation that such models could prove useful for the modelling of biological soft tissue, whose physiological response is characterised by moderate strains. It will be shown that this is indeed the case for simple tension tests on porcine brain tissue.
机译:在各向同性,均质,可压缩,非线性弹性的背景下,获得了与应变能函数的经典,最小形式一致的应变度量。可以看出,有两种不同的此类措施。在文献中已经对一个家族进行了很多研究,最重要的成员是菌株,其主要值仅是相应主要片段的函数。菌株的第二家族似乎是新的。研究此类应变的动机是直观的期望,即对于至少中等程度的变形,将使用相应的应变能函数与材料表征测试的实验数据很好地拟合。特别地,期望这样的模型可以被证明对生物软组织的建模有用,该生物软组织的生理反应以中等应变为特征。可以证明,对猪脑组织进行简单的张力测试确实是这种情况。

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