Shang Xituan, Yen Michael R T, Gaber M Waleed
Department of Biomedical Engineering, The University of Memphis, Memphis, TN 38152, USA.
Mol Cell Biomech. 2010 Jun;7(2):93-104.
The objective of this research is to conduct mechanical property studies of skin from two individual but potentially connected aspects. One is to determine the mechanical properties of the skin experimentally by biaxial tests, and the other is to use the finite element method to model the skin properties. Dynamic biaxial tests were performed on 16 pieces of abdominal skin specimen from rats. Typical biaxial stress-strain responses show that skin possesses anisotropy, nonlinearity and hysteresis. To describe the stress-strain relationship in forms of strain energy function, the material constants of each specimen were obtained and the results show a high correlation between theory and experiments. Based on the experimental results, a finite element model of skin was built to model the skin's special properties including anisotropy and nonlinearity. This model was based on Arruda and Boyce's eight-chain model and Bischoff et al.'s finite element model of skin. The simulation results show that the isotropic, nonlinear eight-chain model could predict the skin's anisotropic and nonlinear responses to biaxial loading by the presence of an anisotropic prestress state.
本研究的目的是从两个独立但可能相关的方面对皮肤进行力学性能研究。一方面是通过双轴试验来确定皮肤的力学性能,另一方面是使用有限元方法对皮肤性能进行建模。对16块大鼠腹部皮肤标本进行了动态双轴试验。典型的双轴应力-应变响应表明,皮肤具有各向异性、非线性和滞后性。为了以应变能函数的形式描述应力-应变关系,获得了每个标本的材料常数,结果表明理论与实验之间具有高度相关性。基于实验结果,建立了皮肤的有限元模型,以模拟皮肤的特殊性能,包括各向异性和非线性。该模型基于阿鲁达和博伊斯的八链模型以及比肖夫等人的皮肤有限元模型。模拟结果表明,各向同性、非线性的八链模型可以通过存在各向异性预应力状态来预测皮肤对双轴加载的各向异性和非线性响应。