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A microstructurally inspired constitutive model for skin mechanics

机译:皮肤力学的微结构激发本构模型

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This study investigates the link between the mechanical properties of skin and its microstructural characteristics. Rat back skin samples from different locations, orientations, and sexes were collected and subjected to quasi-static uniaxial tensile tests. Stress-stretch behavior at low stress ranges and rupture data at high stress ranges were collected. The influence of location, orientation, and sex on skin mechanical properties was examined by comparing the mechanical parameters (i.e., initial slope, maximum slope, ultimate tensile strength, rupture stretch, and toughness) evaluated from the tensile testing data. Location and orientation were both found to have a significant effect on the mechanical properties. Collagen structural data (i.e., fiber orientation distribution, relative content, and fiber straightness) were evaluated using histology images. It was found that the rat lower (caudal) back had higher relative collagen content when compared to the upper (cranial) back. A microstructurally based constitutive model was proposed to describe the mechanical behavior of preconditioned rat back skin. The constitutive model incorporated the distribution of collagen fiber bundle orientations and relative collagen content measured from histology, and showed good agreement with the tensile test data. The influence of location and orientation was also evident in the optimized constitutive parameters. This study was a comprehensive investigation that combines skin mechanical behavior, micro-structure, and constitutive modeling.
机译:本研究研究了皮肤力学性能与其微观结构特征之间的联系。收集来自不同地点,取向和性别的大鼠皮肤样品,并进行准静态单轴拉伸试验。收集低应力范围处的应力拉伸行为和高应力范围的破裂数据。通过比较从拉伸测试数据评价的机械参数(即初始斜坡,最大斜坡,最终拉伸强度,破裂伸展和韧性)来检查位置,取向和性别对皮肤机械性能的影响。发现位置和方向都发现对机械性能有显着影响。使用组织学图像评估胶原结构数据(即纤维取向分布,相对含量和纤维直线度)。发现与上部(颅骨)相比,较低的大鼠(尾)背部的相对胶原含量较高。提出了一种基于微观结构的本构模型,以描述预处理大鼠背皮肤的力学行为。本构模型掺入了从组织学测量的胶原纤维束取向和相对胶原含量的分布,并与拉伸试验数据显示出良好的一致性。位置和取向的影响在优化的本构参数中也显而易见。本研究是一种全面的调查,将皮肤机械行为,微结构和本构型建模结合在一起。

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