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Human Skin Micro-Mechanics Measured in Vivo Using Atomic Force Microscopy(AFM)

机译:人体皮肤微型机械使用原子力显微镜(AFM)在体内测量

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Detecting mechanical properties of the intact skin in vivo can lead to a quantitative method that can diagnose skin diseases and can monitor skin conditions in long period of time in clinical setting. Current methods either measure human skin mechanics in-vitro in non-physiological conditions or measure the human skin mechanics in larger scale where mechanics of the underneath tissues are also captured. This study demonstrates the feasibility of measuring the human skin mechanics in vivo in micro scale for the first time in which only mechanics of the surface layer of the skin (stratum corneum) is captured. In this study, atomic force microscope (AFM) micro-scale indentation was used for detecting the skin elastic modulus of the finger of four human subjects as well as a fixed/dried skin samples in vitro. The measured elastic moduli (mean value of 23 MPa and standard error of 3 MPa) are in the same range as those reported in literature. As expected the moduli of the fixed/dried skin was more than one order of magnitude harder with elastic moduli at mean value of 703 MPa and standard error of 13 MPa. More works is needed to improve the measurement technique and extend its use for testing skin of other body locations such as face.
机译:检测体内完整皮肤的机械性能可以导致可以诊断皮肤病的定量方法,可以在临床环境中长时间监测皮肤病。目前的方法在非生理条件下测量体外的人体皮肤力学或测量大规模的人体皮肤力学,其中捕获了下部组织的机械机械。本研究展示了第一次在微尺度中测量体内人体皮肤力学的可行性,其中捕获了皮肤表面层(角质层)的表面层的力学。在该研究中,原子力显微镜(AFM)微观压痕用于检测四种人受试者的手指的皮肤弹性模量以及体外固定/干燥的皮肤样品。测得的弹性模量(平均值为23MPa和3MPa的标准误差)与文献中报告的范围相同。正如预期的那样,固定/干燥皮肤的模态在平均值为703MPa的平均值和13MPa的标准误差时,固定/干燥皮肤的模数越峰。需要更多作用来改进测量技术,并扩展其用于测试其他身体位置的皮肤,例如面部。

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