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Theoretical investigation on the thermo-mechanical responses of the human skin during thermal therapy

机译:热疗过程中人体皮肤热机械反应的理论研究

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摘要

Laser ablation is an efficient technique of thermal treatment for tumor, during which process, temperature of the tumor tissue will be elevated by the laser beam. Irreversible burn and thermal deformation appear in the tissue, which can induce the protein denaturation and cell membrane looseness to kill the cancer cells. In order to investigate the thermo-mechanical responses of the skin during therapy process, a mechanical model consisting of an elastic plate resting on viscoelastic foundation was proposed to describe the irradiated skin tissue which is subjected to a moving laser beam. The DPL bio-heat conduction model, Kirchhoff hypothesis and the Kelvin-Voigt model were employed in the present study. The governing equations were analytically solved with the usage of Green's function method and the closed-form solutions for the temperature, deformation and stress distribution in the tissue were obtained. A numerical example was given to illustrate the analytical solutions and representative results were shown in figures to make it more intuitive. The influences of laser moving speed and the phase lags of heat flux vector and temperature gradient were discussed in detail.
机译:激光消融是肿瘤热处理的有效技术,在此期间,肿瘤组织的温度将被激光束升高。在组织中出现不可逆的燃烧和热变形,可以诱导蛋白质变性和细胞膜松动以杀死癌细胞。为了研究治疗过程中皮肤的热机械响应,提出了一种由靠在粘弹性基础上的弹性板组成的机械模型,以描述经受移动激光束的辐照皮肤组织。本研究采用了DPL生物导热模型,Kirchhoff假设和Kelvin-Voigt模型。通过使用绿色的功能方法和用于组织中的温度,变形和应力分布的闭合溶液,对控制方程进行了分析解决。给出了数值例子来说明分析解决方案,并且在图中显示了代表性结果,以使其更直观。详细讨论了激光移动速度和热通量矢量的相滞和温度梯度的影响。

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