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Morphology and composition play distinct and complementary roles in the tolerance of plantar skin to mechanical load

机译:形态和成分在足底皮肤对机械负荷的耐受性中起独特和互补的作用

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摘要

Plantar skin on the soles of the feet has a distinct morphology and composition that is thought to enhance its tolerance to mechanical loads, although the individual contributions of morphology and composition have never been quantified. Here, we combine multiscale mechanical testing and computational models of load bearing to quantify the mechanical environment of both plantar and nonplantar skin under load. We find that morphology and composition play distinct and complementary roles in plantar skin’s load tolerance. More specifically, the thick stratum corneum provides protection from stress-based injuries such as skin tears and blisters, while epidermal and dermal compositions provide protection from deformation-based injuries such as pressure ulcers. This work provides insights into the roles of skin morphology and composition more generally and will inform the design of engineered skin substitutes as well as the etiology of skin injury.
机译:脚底的足底皮肤具有独特的形态和成分,尽管从未对形态和成分的个体贡献进行量化,但据认为可以增强其对机械负荷的耐受性。在这里,我们结合了多尺度机械测试和承重计算模型,以量化在负载下足底和非足底皮肤的机械环境。我们发现形态和成分在足底皮肤的承受力中起着独特而互补的作用。更具体地,厚的角质层提供保护以防止基于压力的损伤,例如皮肤撕裂和水泡,而表皮和真皮组合物提供保护以防止基于变形的损伤,例如压疮。这项工作可以更全面地了解皮肤形态和成分的作用,并将为工程皮肤替代品的设计以及皮肤损伤的病因提供参考。

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