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一种用于识别活体人类皮肤力学参数的非线性弹性行为。

A nonlinear elastic behavior to identify the mechanical parameters of human skin in vivo.

作者信息

Delalleau A, Josse G, Lagarde J-M, Zahouani H, Bergheau J-M

机构信息

Laboratoire de Tribologie et Dynamique des Systèmes, UMR 5513, CNRS, ECL, ENISE, Saint Etienne, France.

出版信息

Skin Res Technol. 2008 May;14(2):152-64. doi: 10.1111/j.1600-0846.2007.00269.x.


DOI:10.1111/j.1600-0846.2007.00269.x
PMID:18412557
Abstract

BACKGROUND/PURPOSE: Various analyses have been performed to identify the mechanical properties of the human skin tissue in vivo. They generally use different approaches and hypotheses (behavior laws as well as mechanical tests) and the obtained results are consequently difficult to analyze and compare. In this paper, an inverse method that can be adapted to any kind of mechanical tests and behavior laws is presented. METHOD: A suction deformation performed on the volar aspect of the forearm of a subject is considered. This test is modeled with the finite element method to compare the experimental and simulated curves using an inverse method that allows the skin mechanical parameters identification. This process is based on two optimization algorithms, Kalman's filter and Gauss-Newton's methods. To account for the nonlinear behavior of the skin, a specific nonlinear elastic law, which is then compared with standard linear elastic and neo-Hookean's mechanical behaviors, was developed. RESULTS: The obtained results first prove that neither linear elasticity nor neo-Hookean's laws can be used to model the skin. On the contrary, the nonlinear elastic model presents a relevant fit of the experimental curves. The skin thickness is also proved to be another key point to be taken into consideration. CONCLUSIONS: The obtained results are successfully compared with literature and the reliability of the proposed method is underlined with the identification of 300 additional experimental curves. The different works we are currently focusing on are finally introduced.

摘要

背景/目的:已进行了各种分析以确定人体皮肤组织在体内的力学性能。它们通常采用不同的方法和假设(行为定律以及力学测试),因此所获得的结果难以分析和比较。本文提出了一种可适用于任何类型力学测试和行为定律的反演方法。 方法:考虑对一名受试者前臂掌侧进行的抽吸变形。使用有限元方法对该测试进行建模,以通过一种允许识别皮肤力学参数的反演方法比较实验曲线和模拟曲线。该过程基于两种优化算法,卡尔曼滤波器和高斯 - 牛顿法。为了考虑皮肤的非线性行为,开发了一种特定的非线性弹性定律,然后将其与标准线性弹性和新胡克力学行为进行比较。 结果:所获得的结果首先证明线性弹性定律和新胡克定律都不能用于对皮肤进行建模。相反,非线性弹性模型对实验曲线有较好的拟合。皮肤厚度也被证明是另一个需要考虑的关键点。 结论:所获得的结果成功地与文献进行了比较,并且通过识别另外300条实验曲线强调了所提出方法的可靠性。最后介绍了我们目前正在关注的不同工作。

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[1]
A nonlinear elastic behavior to identify the mechanical parameters of human skin in vivo.

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[2]
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[9]
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[10]
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