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Simulations of the electrostatic field, temperature, and tissue damage generated by multiple electrodes for electrochemical treatment

机译:多电极电化学处理产生的静电场,温度和组织损伤的模拟

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Integrated analysis of the spatial distributions of the electric potential, electric field, temperature, and tissue damage generated by multiple arrays of straight needle electrodes inserted into tumors is highly significant for improving the effectiveness of electrochemical treatment. In this study, we simulated the spatial profiles generated by multiple electrodes inserted individually into a tumor and multiple pairs of straight needle electrodes inserted in a tumor surrounded by healthy tissue. Poisson nonlinear and Laplace equations were used to calculate the electric potential in the tumor and the surrounding healthy tissue, respectively. The stationary bioheat transfer equation of Pennes was used to calculate the temperature in both tissues. The percentage tissue damage was computed in each biological medium for each electrode array shape. Numerical simulations showed that the non-homogeneous spatial distributions of the temperature (above 40 degrees C) generated by different types of multiple pairs of straight needle electrodes covered the whole tumor volume. Spatial profiles of this physical magnitude were generated by multiple straight needle electrodes, which were individually inserted into the tumor and partially covered by its volume. In addition, the simulations showed that multiple pairs of electrodes led to tumor damage percentages above 80%. By contrast, multiple electrodes inserted individually in the tumor induced damage percentages below 25%. We conclude that multiple pairs of straight needle electrodes may be applied to deep-seated solid tumors in treatment with electrochemical therapy considering their theoretically calculated high tumor damage percentages. (C) 2019 Published by Elsevier Inc.
机译:对插入到肿瘤中的多个直针电极阵列产生的电势,电场,温度和组织损伤的空间分布进行综合分析,对于提高电化学治疗的有效性非常重要。在这项研究中,我们模拟了分别插入到肿瘤中的多个电极和插入健康组织所包围的肿瘤中的多对直针电极所产生的空间分布。泊松非线性方程和拉普拉斯方程分别用于计算肿瘤和周围健康组织的电势。 Pennes的固定生物热传递方程用于计算两个组织中的温度。计算每种电极阵列形状在每种生物介质中的组织损伤百分比。数值模拟表明,由不同类型的多对直针状电极对产生的温度(40摄氏度以上)的非均匀空间分布覆盖了整个肿瘤体积。这种物理大小的空间分布是由多个直针状电极产生的,这些电极分别插入到肿瘤中并被其体积部分覆盖。另外,模拟显示多对电极导致肿瘤损伤百分比高于80%。相反,在肿瘤中单独插入的多个电极引起的损伤百分比低于25%。我们得出的结论是,考虑到它们在理论上计算出的高肿瘤损伤率,可以将多对直针状电极应用于深层实体瘤的电化学治疗。 (C)2019由Elsevier Inc.发布

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