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A simulation analysis of large multi-electrode needle arrays for efficient electrochemotherapy of cancer tissues

机译:大型多电极针阵列的仿真分析,用于癌组织高效电体疗法

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Effective Electrochemotherapy is possible with suitable multi-electrode needle array geometries, especially to treat larger areas, such as thigh and chest. This is critical to expedite the application of electrical pulses at the tumor area within a few minutes, after injection of the chemo drug, such as bleomycin, at the tumor, intratumorally or intravenously. To study the efficiency of larger electrode arrays, it is necessary to analyze their electric field distributions. This can be done by designing an effective model with electric needles so that an electric field of 1200 volts/cm could be generated at the point of tumor. To simulate these models with various configurations of electric needles, Maxwell 13 software was used. All the models were implemented in 2-D analysis. Several models with various number of electrodes were studied, including 2×2, 4×2, 4×4, and 12×2 configurations. The simulation results show uniform electric field over the desired area. The significance of this research is that using novel, multi-electrode needle arrays, a larger area of the cancer affected tissue can be treated faster than currently used 4mm needle arrays.
机译:具有合适的多电极针阵列几何形状可以实现有效的电化学疗法,尤其是治疗大腿和胸部的较大区域。在几分钟内,在注射肿瘤,如脑膜霉素,肿瘤,纵横物或静脉内,这是至关重要在肿瘤区域的施加在肿瘤区域的应用。为了研究较大电极阵列的效率,有必要分析它们的电场分布。这可以通过设计具有电针的有效模型来完成的,使得在肿瘤点可以产生1200伏/厘米的电场。为了模拟这些模型,使用各种电动针配置,使用Maxwell 13软件。所有模型都在2-D分析中实施。研究了具有各种电极数量的多种型号,包括2×2,4×2,4×4和12×2配置。仿真结果显示出在所需区域上的均匀电场。本研究的重要性是,使用新颖的多电极针阵列,癌症受影响组织的较大面积可以比目前使用的4mm针阵列更快地处理。

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