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Numerical and Experimental Characterization of Radiofrequency Ablation in Perfused Kidneys

机译:灌注肾脏射频消融的数值和实验性状

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We develop a three-dimensional finite element model in order to predict the resulting temperature distribution of a radiofrequency ablation (RFA) treatment in human kidneys. Here, a strong cooling effect results from a high degree of blood perfusion, which is modeled via two different approaches. The influence of big blood vessels for treatments close to renal hilus is modeled by including a cylindrical cooling tube based on the renal artery (or vein) in the kidney model. The influence of the perfusion of small arterioles and capillaries is represented by Pennes' approach in the bioheat equation. The experimental validation is performed by an in vivo RFA treatment on porcine kidney. Prior to the in vivo measurements several ex vivo experiments on fresh kidneys are carried out as a plausibility check for the model. During the treatments temperature profiles are measured using thermocouples which are radially arranged around the RFA applicator trocar. The evaluated data for each sensor show a deviation between 0.01 and 12 % from the simulation results. The approach serves for the design of a preplanning tool for RFA treatment in the future.
机译:我们开发了三维有限元模型,以预测人类肾脏中射频消融(RFA)治疗的所得温度分布。这里,强的冷却效果是由高度血液灌注产生的,这通过两种不同的方法进行建模。通过包括基于肾模型中的肾动脉(或静脉)的圆柱形冷却管,模拟肾脏Hilus近肾Hilus的治疗的影响。小动脉和毛细血管灌注的影响是由BioHeat方程中的Pennes的方法表示。实验验证是通过对猪肾的体内RFA治疗进行。在体内测量之前,将新鲜肾脏的几个前体内实验作为模型的合理性检查进行。在处理期间,使用热电偶测量温度曲线,该热电偶测量,该热电偶在RFA涂敷器套管围绕RFA涂抹器套管轨迹。每个传感器的评估数据显示出仿真结果的偏差0.01和12%。该方法为将来的RFA治疗进行了设计。

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