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Numerical Modeling to Calculate Thermal Lesion Formation Using Internally-Cooled Electrodes during Radiofrequency Ablation of Liver Tumors

机译:数值模拟在肝脏肿瘤的射频消融期间使用内部冷却电极计算热病变形成

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Radio-frequency ablation (RFA) heat treatment is a popular "minimally invasive" treatment method for both primary and metastatic liver tumors, and the heat treatment is studied by numerical calculation. Most of numerical modeling in radio-frequency ablation use commercial finite element methods package. The present paper describes the model used finite difference methods to simulate RFA with internally-cooled electrode, and large blood vessels cooling simultaneously. A finite difference model is used to solve all partial differential equations (PDEs) for a simple three dimensional (3-D) cubic geometry model. Maximum tissue temperature is used as a critical index for reaching thermal lesion during RFA. Cylindrical RF cool-tip electrode is internally cooled at constant water temperature. The use of series and parallel thermal resistances of composite materials are presented in the model. Results show consistency with experimental results.
机译:射频消融(RFA)热处理是一种普遍的“微创”治疗方法,用于初级和转移性肝肿瘤,通过数值计算研究热处理。无线电频率消融中的大多数数值建模使用商业有限元方法包。本文介绍了模型使用有限差异方法,以模拟内部冷却电极的RFA,以及同时冷却大型血管。有限差分模型用于解决简单的三维(3-D)立方几何模型的所有部分微分方程(PDE)。最大组织温度被用作RFA期间达到热病变的关键指数。圆柱形RF冷尖电极在恒定水温下内部冷却。在模型中介绍了复合材料系列和并联热阻的使用。结果显示了实验结果的一致性。

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