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Analytical validation of COMSOL Multiphysics for theoretical models of Radiofrequency ablation including the Hyperbolic Bioheat transfer equation

机译:COMSOL Multiphysics对包括双曲线生物热传递方程在内的射频消融理论模型的分析验证

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In this paper we outline our main findings about the differences between the use of the Bioheat Equation and the Hyperbolic Bioheat Equation in theoretical models for Radiofrequency (RF) ablation. At the moment, we have been working on the analytical approach to solve both equations, but more recently, we have considered numerical models based on the Finite Element Method (FEM). As a first step to use FEM, we conducted a comparative study between the temperature profiles obtained from the analytical solutions and those obtained from FEM. Regarding the differences between both methods, we obtain agreement in less than 5% of relative differences. Then FEM is a good alternative to model heating of biological tissues using BE and HBE in, for example, more complex and realistic geometries.
机译:在本文中,我们概述了有关射频消融理论模型中生物热方程和双曲线生物热方程使用之间差异的主要发现。目前,我们一直在研究求解这两个方程的解析方法,但是最近,我们考虑了基于有限元方法(FEM)的数值模型。作为使用FEM的第一步,我们在从分析溶液获得的温度曲线和从FEM获得的温度曲线之间进行了比较研究。关于这两种方法之间的差异,我们获得的相对差异不到5%。然后,有限元法是在例如更复杂和更实际的几何形状中使用BE和HBE对生物组织进行加热模型化的一个很好的选择。

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