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Characterization of the anisotropic mechanical properties of excised human skin

机译:人体皮肤各向异性力学特性的表征

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The mechanical properties of skin are important for a number of applications including surgery, dermatology, impact biomechanics and forensic science. In this study, we have investigated the influence of location and orientation on the deformation characteristics of 56 samples of excised human skin. Uniaxial tensile tests were carried out at a strain rate of 0.012 s-1 on skin from the back. Digital Image Correlation was used for 2D strain measurement and a histological examination of the dermis was also performed. The mean ultimate tensile strength (UTS) was 21.6±8.4 MPa, the mean failure strain 54%±17%, the mean initial slope 1.18±0.88 MPa, the mean elastic modulus 83.3±34.9 MPa and the mean strain energy was 3.6±1.6 MJ/m3. A multivariate analysis of variance has shown that these mechanical properties of skin are dependent upon the orientation of the Langer lines (P0.0001-P=0.046). The location of specimens on the back was also found to have a significant effect on the UTS (P=0.0002), the elastic modulus (P=0.001) and the strain energy (P=0.0052). The histological investigation concluded that there is a definite correlation between the orientation of the Langer lines and the preferred orientation of collagen fibres in the dermis (P0.001). The data obtained in this study will provide essential information for those wishing to model the skin using a structural constitutive model.
机译:皮肤的机械特性对于包括外科手术,皮肤病学,冲击生物力学和法医学在内的许多应用都很重要。在这项研究中,我们调查了位置和方向对56个切除的人皮肤样品的变形特性的影响。从背面在皮肤上以0.012 s-1的应变速率进行单轴拉伸测试。将数字图像相关性用于二维应变测量,还对真皮进行了组织学检查。平均极限抗拉强度(UTS)为21.6±8.4 MPa,平均破坏应变为54%±17%,平均初始斜率为1.18±0.88 MPa,平均弹性模量为83.3±34.9 MPa,平均应变能为3.6±1.6 MJ /立方米。方差的多变量分析表明,皮肤的这些机械特性取决于Langer线的方向(P <0.0001-P = 0.046)。还发现样品背面的位置对UTS(P = 0.0002),弹性模量(P = 0.001)和应变能(P = 0.0052)有显着影响。组织学研究得出结论,朗格线的方向与真皮中胶原纤维的首选方向之间存在明确的相关性(P <0.001)。这项研究中获得的数据将为那些希望使用结构本构模型对皮肤建模的人提供必要的信息。

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