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Biomechanical behavior of scar tissue and uninjured skin in a porcine model.

机译:疤痕组织的生物力学行为受伤的皮肤在猪模型。

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摘要

A new method to test axial and transverse tensile properties of skin was developed to improve our understanding of skin mechanical behavior, and how it changes following injury and formation of a scar. Skin tissue was evaluated at 70 days following full-thickness wounding in juvenile female pigs (N=14). Samples were taken in the axial (cranial-caudal) and transverse (dorsal-ventral) directions, for both scar tissue and uninjured skin, and were evaluated mechanically in vitro using a protocol of stress relaxation followed by tensile failure. Uninjured skin was more compliant, with a larger toe-in region, and faster load relaxation, in the axial direction than the transverse. Such directional differences were not present in high-load responses, such as linear stiffness or failure properties. When compared with uninjured skin, scars displayed a similar linear stiffness, with considerably reduced failure properties, and reduced low-load compliance. Scars showed no directional differences in low-load behavior, viscous response, or failure properties. These findings suggest morphological changes that may occur with injury that are consistent with the viscoelastic and directional changes observed experimentally. This improved understanding of how injury affects skin biomechanical function provides valuable information necessary for the design of successful grafting procedures and tissue-engineered skin replacements.
机译:一种新方法测试轴向和横向拉伸皮肤的性质是改善我们开发的了解皮肤的力学行为,损伤和形成后的变化会是什么样子的呢一个疤痕。全层后受伤的少年女猪(N = 14)。轴向(cranial-caudal)和横向(dorsal-ventral)方向,疤痕组织受伤的皮肤,进行评估机械在体外使用协议的压力放松拉伸断裂紧随其后。皮肤更兼容,与一个更大的前束地区,和更快的加载放松,在轴向比横向方向。没有出现在高负载的差异反应,比如线性刚度或失败属性。疤痕显示类似的线性刚度大大减少故障属性和减少低负荷遵从性。定向低负荷行为的差异,粘性响应,或失败的属性。结果表明形态学变化发生损伤,是一致的粘弹性和方向的变化实验。皮肤损伤是如何影响生物力学功能提供有价值的信息所必需的成功的移植过程和设计组织工程皮肤替代品。

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