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Estimating material parameters of human skin in vivo

机译:体内估计人体皮肤的物质参数

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摘要

An accurate mathematical representation of the mechanical behaviour of human skin is essential when simulating deformations occurring in the skin during body movements or clinical procedures. In this study constitutive stress–strain relationships based on experimental data from human skin in vivo were obtained. A series of multiaxial loading experiments were performed on the forearms of four age- and gender matched subjects. The tissue geometry, together with recorded displacements and boundary forces, were combined in an analysis using finite element modelling. A non-linear optimization technique was developed to estimate values for the material parameters of a previously published constitutive law, describing the stress–strain relationship as a non-linear anisotropic membrane. Ten sets of material parameters where estimated from the experiments, showing considerable differences in mechanical behaviour both between individual subjects as well as mirrored body locations on a single subject. The accuracy of applications that simulate large deformations of human skin could be improved by using the parameters found from the in vivo experiments as described in this study.
机译:当模拟人体运动或临床过程中皮肤中发生的变形时,人体皮肤机械行为的准确数学表示必不可少。在这项研究中,基于人体皮肤在体内的实验数据获得了本构应力-应变关系。在四个年龄和性别相匹配的受试者的前臂上进行了一系列多轴负荷实验。使用有限元建模在分析中将组织的几何形状以及记录的位移和边界力结合在一起。开发了一种非线性优化技术来估计先前发布的本构定律的材料参数值,将应力-应变关系描述为非线性各向异性膜。从实验中估算出十组材料参数,显示出各个受试者之间以及单个受试者的镜像身体位置在机械行为上的巨大差异。如本研究所述,可以通过使用体内实验中发现的参数来提高模拟人类皮肤大变形的应用程序的准确性。

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