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Low Frequency Surface Wave Propagation and the Viscoelastic Behavior of Porcine Skin

机译:低频表面波的传播与猪皮的粘弹性行为

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A physical model describing the propagation of low frequency surface waves in relation to the viscoelastic behavior of porcine skin is presented along with a series of empirical studies testing the performance of the model. The model assumes that the skin behaves as a semi-infinite, locally isotropic, viscoelastic half-space. While the assumption of a semi-infinite body is violated, this violation does not appear to have a significant impact on the performance of the model based upon the empirical studies. One Hertz surface waves in the skin propagate primarily as Rayleigh waves with a wavelength and velocity of approximately 3 m and 3.0 m/s, respectively. The amplitude of the acoustic wave as measured by tracking the acoustic stress wave - induced shift in a backscattered laser speckle pattern, decreased exponentially with lateral distance from the acoustic source. Using this model of surface wave propagation, the mechanical loss factor or tan δ of the skin was measured to be on the order of 0.14+-0.07. The results presented herein are consistent with earlier works on the propagation of low frequency acoustic waves in biological tissues and should serve as a theoretical and empirical basis for using the wave characteristics of propagating surface waves in combination with the mechanical behavior of the tissue for biomechanical studies and for potential diagnostic applications.
机译:提出了一个物理模型,该模型描述了与猪皮肤的粘弹性行为相关的低频表面波的传播以及一系列测试该模型性能的经验研究。该模型假定蒙皮表现为半无限,局部各向同性的粘弹性半空间。尽管违反了半无限体的假设,但根据经验研究,这种违反似乎对模型的性能没有重大影响。皮肤中的一个赫兹表面波主要以瑞利波传播,其波长和速度分别约为3 m和3.0 m / s。通过跟踪声应力波引起的后向散射激光散斑图样的位移,声波的幅度随距声源的横向距离呈指数下降。使用该表面波传播模型,测得的皮肤机械损耗因子或tanδ约为0.14 + -0.07。本文介绍的结果与早期关于低频声波在生物组织中传播的工作相一致,应作为结合传播的表面波的波特性结合组织的机械行为进行生物力学研究的理论和经验基础。以及潜在的诊断应用。

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