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Computational models for the determination of depth-dependent mechanical properties of skin with a soft flexible measurement device

机译:使用柔软灵活的测量设备确定皮肤深度相关机械性能的计算模型

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摘要

Conformal modulus sensors (CMS) incorporate PZT nanoribbons as mechanical actuators and sensors to achieve reversible conformal contact with the human skin for non-invasive, in vivo measurements of skin modulus. An analytic model presented in this paper yields expressions that connect the sensor output voltage to the Young moduli of the epidermis and dermis, the thickness of the epidermis, as well as the material and geometrical parameters of the CMS device itself and its encapsulation layer. Results from the model agree well with in vitro experiments on bilayer structures of poly(dimethylsiloxane). These results provide a means to determine the skin moduli (epidermis and dermis) and the thickness of the epidermis from in vivo measurements of human skin.
机译:适形模量传感器(CMS)结合了PZT纳米带作为机械致动器和传感器,以无创,体内测量皮肤模量的方式实现了与人体皮肤的可逆适形接触。本文提出的一种解析模型得出的表达式将传感器输出电压与表皮和真皮的杨氏模量,表皮的厚度以及CMS设备本身及其封装层的材料和几何参数联系起来。该模型的结果与聚二甲基硅氧烷双层结构的体外实验非常吻合。这些结果提供了一种从人体皮肤的体内测量中确定皮肤模量(表皮和真皮)和表皮厚度的方法。

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