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利用抽吸实验研究体内不同皮肤层对人体皮肤力学行为的相对贡献。

The relative contributions of different skin layers to the mechanical behavior of human skin in vivo using suction experiments.

作者信息

Hendriks F M, Brokken D, Oomens C W J, Bader D L, Baaijens F P T

机构信息

Eindhoven University of Technology, Department of Biomedical Engineering, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Med Eng Phys. 2006 Apr;28(3):259-66. doi: 10.1016/j.medengphy.2005.07.001. Epub 2005 Aug 11.

Abstract

Although the mechanical behavior of the top layer of the skin, the epidermis, is an important consideration in several clinical and cosmetic applications, there are few reported studies on this layer. The in vivo mechanical behavior of the upper skin layer (here defined as epidermis and papillar dermis) was characterized using a combined experimental and modeling approach. The work was based on the hypothesis that experiments with different length scales represent the mechanical behavior of different skin layers. Suction measurements with aperture diameters of 1, 2 and 6 mm were combined with ultrasound and optical coherence tomography to study the deformation of the skin layers. The experiments were simulated for small displacements with a two-layered finite element model representing the upper layer and the reticular dermis. An identification method compared the experimental and numerical results to identify the material parameters of the model. For one subject the whole parameter estimation procedure was completed, leading to a stiffness of C(10,ul) = 0.11 kPa for the top-layer and C(10,rd) = 0.16 MPa for the reticular dermis. This unexpected, extreme stiffness ratio of the material parameters let to convergence problems of the finite element software for most of the individuals.

摘要

尽管皮肤顶层即表皮的力学行为在多种临床和美容应用中是一个重要的考量因素,但关于这一层的报道研究却很少。采用实验与建模相结合的方法对上层皮肤层(此处定义为表皮和乳头真皮)的体内力学行为进行了表征。这项工作基于这样一个假设,即不同长度尺度的实验代表了不同皮肤层的力学行为。将孔径为1毫米、2毫米和6毫米的吸力测量与超声和光学相干断层扫描相结合,以研究皮肤层的变形。使用代表上层和网状真皮的两层有限元模型对小位移实验进行了模拟。一种识别方法将实验结果和数值结果进行比较,以识别模型的材料参数。对于一名受试者,完成了整个参数估计过程,得出顶层的刚度为C(10,ul)=0.11千帕,网状真皮的刚度为C(10,rd)=0.16兆帕。材料参数这种出人意料的极端刚度比导致大多数个体的有限元软件出现收敛问题。

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