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RADIOFREQUENCY ABLAT ION WITH A GAUSSIAN HEAT SOURCE IN A REALISTIC RECONSTRUCTED HEPATIC GEOMETRY

机译:现实重构肝几何中具有高斯热源的射频消融

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摘要

This study describes a detailed methodology for modeling a three-dimensional radiofrequency ablation procedure using reconstructed porous tissue geometries. In this study, MRI images of a sectioned liver tissue containing arterial vessels are converted into a finite element mesh. An rf heat source in the form of a spherically symmetric Gaussian distribution, fit from a previously computed profile, is employed. Computations of temperature rise were performed for transient rf procedures in the case where the tumor is located near the bifurcation point of a hepatic artery. Results demonstrate a significant effect due to convective cooling by the large vessels. Substantial asymmetries in the temperature profiles indicate ablation procedures that may achieve adequate tumor destruction in some regions, but that elevate the temperature only minimally in other regions, thereby permitting possible tumor recursion. These critical features of the temperature field are due to the directional nature of the arterial flow and are difficult to capture with models that treat perfusion with a scalar source term in the bioheat equation.
机译:这项研究描述了使用重建的多孔组织几何形状对三维射频消融程序建模的详细方法。在这项研究中,将包含动脉血管的肝脏组织切片的MRI图像转换为有限元网格。采用根据先前计算的轮廓拟合的球对称高斯分布形式的射频热源。在肿瘤位于肝动脉分叉点附近的情况下,对瞬时射频程序进行了温度升高的计算。结果表明,由于大容器的对流冷却,效果显着。温度曲线中的明显不对称表明消融程序可在某些区域实现足够的肿瘤破坏,但在其他区域仅将温度最低限度地升高,从而可能导致肿瘤复发。温度场的这些关键特征是由于动脉流动的方向性所致,很难用在生物热方程中用标量源项处理灌注的模型来捕获。

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