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Finite difference time domain modelling of hyperthermia applicators for cancer therapy

机译:热疗器用于癌症治疗的时域有限差分建模

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An enhanced version of the finite-difference-time-domain (FDTD) method is used to calculate the field penetration and specific absorption rate (SAR) pattern for a current sheet applicator used in hyperthermia treatment. The FDTD method uses modified equations to rigorously model three-dimensional dielectric boundaries and a nonuniform grid for computational efficiency. Results obtained using the FDTD method are compared with experimental measurements made on phantoms, and excellent agreement is obtained. It is found both experimentally and theoretically that at low phantom conductivities the penetration depth is almost independent of conductivity due to the presence of circulating currents. In addition, the SAR pattern (calculated and measured) shows two null spots whose positions are correctly predicted by the FDTD method and match experimental measurements.
机译:有限差分时域(FDTD)方法的增强版本用于计算用于热疗治疗的当前纸张涂敷器的场渗透和特定吸收率(SAR)图案。 FDTD方法使用改进的方程来严格地模拟三维介质边界和非均匀网格以进行计算效率。使用FDTD方法获得的结果与对幽灵的实验测量进行比较,并且获得了良好的一致性。在实验和理论上,在低幻影电导率下,由于存在循环电流,渗透深度几乎与导电性无关。另外,SAR图案(计算和测量)显示了两个空斑,其位置被FDTD方法正确预测并匹配实验测量。

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