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微尺度剪切导致皮肤损伤的体外研究

In vitro investigation of skin damage due to microscale shearing.

作者信息

Jee Taekwon, Komvopoulos Kyriakos

机构信息

Department of Mechanical Engineering, University of California, Berkeley, California, 94720.

出版信息

J Biomed Mater Res A. 2014 Nov;102(11):4078-86. doi: 10.1002/jbm.a.35055. Epub 2014 Jan 28.

Abstract

Despite several studies dealing with the mechanical and tribological properties of skin, the majority of these investigations have been performed at macroscopic levels. However, because of the multilayer structure of skin, it is necessary to perform studies at microscopic scales to reveal the effect of individual layer constituents on the overall skin response to mechanical stimuli. To bridge the gap in knowledge of the micromechanical behavior of skin, a custom-made mechanical tester, optical microscopy, and cross-sectional histology were used to examine the deformation and tribological behavior of porcine skin subjected to various normal and shear loadings. Representative friction and wear results of skin tested under unidirectional and reciprocating (cyclic) shearing (scratching) conditions are interpreted in terms of the scratching speed, normal load, and number of scratch cycles to illustrate the effects of stratum corneum, cellular epidermis, and dermis on the friction and wear characteristics of skin. Depending on the normal load and scratch time (cycles), different friction mechanisms (i.e., adhesion, plowing, and squeeze-film lubrication) and wear mechanisms (i.e., surface plasticity/plowing, bulk shearing, cohesive failure, tearing, and delamination) were found to control shear-induced skin damage. The results of this study provide insight into microscale friction and wear processes influencing the mechanical response of skin subjected to normal and shear surface tractions.

摘要

尽管有多项研究涉及皮肤的力学和摩擦学特性,但这些研究大多是在宏观层面上进行的。然而,由于皮肤的多层结构,有必要在微观尺度上进行研究,以揭示各层成分对皮肤整体机械刺激响应的影响。为了填补皮肤微观力学行为知识的空白,使用了定制的机械测试仪、光学显微镜和横截面组织学来研究猪皮在各种法向和剪切载荷下的变形和摩擦学行为。在单向和往复(循环)剪切(刮擦)条件下测试皮肤的代表性摩擦和磨损结果,根据刮擦速度、法向载荷和刮擦循环次数进行解释,以说明角质层、细胞表皮和真皮对皮肤摩擦和磨损特性的影响。根据法向载荷和刮擦时间(循环次数),发现不同的摩擦机制(即粘附、犁削和挤压膜润滑)和磨损机制(即表面塑性/犁削、体剪切、内聚破坏、撕裂和分层)控制着剪切引起的皮肤损伤。本研究结果深入了解了影响皮肤在法向和剪切表面牵引力作用下机械响应的微观尺度摩擦和磨损过程。

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