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Finite element modeling of human skin using an isotropic, nonlinear elastic constitutive model.

机译:使用各向同性,非线性弹性本构模型对人体皮肤进行有限元建模。

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摘要

The collagen network in skin is largely responsible for the nonlinear mechanical stress-strain response of skin. We hypothesize that the force-stretch response of collagen is governed by the entropics of long-chain molecules. We show that a constitutive model derived from the statistical mechanics of long-chain molecules, corresponding to the fibrous collagen network in skin, captures the mechanical response of skin. A connection between the physiologically meaningful parameters of network molecular chain density and free length of collagen fibers and the constitutively significant parameters of initial modulus and limiting stretch is thus established. The relevant constitutive law is shown to have predictive capabilities related to skin histology by replicating in vivo and in vitro experimental results. From finite element simulations, this modeling approach predicts that the collagen network in hypertrophic scars is more dense and the constituent collagen fibers have shorter free lengths than in healthy skin. Additionally, the model is shown to predict that as rat skin ages, collagen network density increases and fiber free length decreases. The importance of knowledge of the in situ stress state for analyzing skin response and validating constitutive laws is also demonstrated.
机译:皮肤中的胶原蛋白网络在很大程度上负责皮肤的非线性机械应力-应变响应。我们假设胶原蛋白的力舒展反应受长链分子的熵控制。我们表明,从长链分子的统计力学中得出的本构模型,对应于皮肤中的纤维胶原蛋白网络,捕获了皮肤的机械反应。因此,建立了网络分子链密度的生理学有意义的参数和胶原纤维的自由长度与初始模量和极限拉伸的构成性重要参数之间的联系。通过复制体内和体外实验结果,相关的本构法具有与皮肤组织学相关的预测能力。通过有限元模拟,这种建模方法可以预测肥大性瘢痕中的胶原网络比健康皮肤中的胶原网络更致密,并且胶原纤维的自由长度更短。此外,该模型还可以预测随着大鼠皮肤年龄的增长,胶原网络密度增加而无纤维长度减少。还证明了就地应力状态知识对于分析皮肤反应和验证本构定律的重要性。

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