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Mechanical approach to aging and wrinkling of human facial skin based on the multistage buckling theory

机译:基于多阶段屈曲理论的人体面部皮肤老化和皱纹的机械方法

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摘要

A wrinkle formation mechanism with cutaneous aging is addressed through a mechanical calculation of linear buckling. Skin is divided into five mechanically distinct layers in this study. In general, the outer layer is stiffer than the inner layer, so buckling occurs in the outer layer against the uniform compression caused by muscle contraction. This buckling damages the skin and affects the formation of permanent wrinkles. We propose a multistage buckling theory for evaluation of the wrinkle property, namely, the specific wrinkle size and critical strain in three stages. The specific wrinkle size is derived as the wavelength of the minimum-buckling mode for infinite-length skin. A sensitivity analysis is carried out to investigate the effect of age-related changes of the mechanical parameters on the wrinkle property. We employ some aging hypotheses and prepare two sets of mechanical parameters, one for young and one for aged skin. The numerical results show that the buckling mode switch from Stage I to Stage II is the main reason why pronounced wrinkles suddenly appear in aged skin.
机译:通过线性屈曲的机械计算解决了具有皮肤老化的皱纹形成机理。在这项研究中,皮肤被分为五个机械上不同的层。通常,外层比内层更硬,因此在外层中会发生屈曲,从而抵抗由肌肉收缩引起的均匀压缩。这种屈曲会损害皮肤并影响永久性皱纹的形成。我们提出了一种多阶段屈曲理论来评估皱纹特性,即三个阶段的特定皱纹尺寸和临界应变。特定的皱纹大小是无限长皮肤的最小屈曲模式的波长。进行敏感性分析以研究与年龄相关的机械参数变化对皱纹性质的影响。我们采用了一些衰老假设,并准备了两组机械参数,一组针对年轻,另一组针对老化的皮肤。数值结果表明,从第一阶段到第二阶段的屈曲模式转换是老化皮肤突然出现明显皱纹的主要原因。

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