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Numerical simulation of laser-generated Ultrasonic waves in Human skin with Different epidermis thicknesses

机译:具有不同表皮厚度的人体皮肤激光产生超声波的数值模拟

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Laser-generated ultrasound is non-contact, broad band, and has multiple propagation modes, and so, has been studied widely in non-destructive testing of structural materials. In this paper, by taking into consideration the fundamental understanding of laser/material interface, and human skin optical properties, the transient temperature distributions in human skin with different thicknesses of the skin layers are simulated using finite element method (FEM). Surface waves received at different places can be used to obtain information about the material properties, such as tissue's elasticity, thickness, etc.
机译:激光产生的超声波是非接触式,宽带,并且具有多种传播模式等,因此已经广泛研究了结构材料的非破坏性测试。本文通过考虑到激光/材料界面的基本理解和人体皮肤光学性质,使用有限元法(FEM)模拟具有不同厚度的皮肤层的人体皮肤的瞬态温度分布。在不同位置接收的表面波可用于获得有关材料特性的信息,例如组织的弹性,厚度等。

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