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Electrochemotherapy Effectiveness Loss due to Electric Field Indentation between Needle Electrodes: A Numerical Study

机译:针电极之间的电场压痕导致的电化学治疗效果损失:数值研究

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摘要

Electrochemotherapy is an anticancer treatment based on applying electric field pulses that reduce cell membrane selectivity, allowing chemotherapy drugs to enter the cells. In parallel to electrochemotherapy clinical tests, in silico experiments have helped scientists and clinicians to understand the electric field distribution through anatomically complex regions of the body. In particular, these in silico experiments allow clinicians to predict problems that may arise in treatment effectiveness. The current work presents a metastatic case of a mast cell tumor in a dog. In this specific treatment planning study, we show that using needle electrodes has a possible pitfall. The macroscopic consequence of the electroporation was assessed through a mathematical model of tissue electrical conductivity. Considering the electrical and geometrical characteristics of the case under study, we modeled an ellipsoidal tumor. Initial simulations were based on the European Standard Operating Procedures for electrochemotherapy suggestions, and then different electrodes' arrangements were evaluated. To avoid blind spots, multiple applications are usually required for large tumors, demanding electrode repositioning. An effective treatment electroporates all the tumor cells. Partially and slightly overlapping the areas increases the session's duration but also likely increases the treatment's effectiveness. It is worth noting that for a single application, the needles should not be placed close to the tumor's borders because effectiveness is highly likely to be lost.
机译:电化学疗法是基于施加电场脉冲的抗癌治疗,该脉冲降低细胞膜的选择性,从而使化疗药物能够进入细胞。与电化学疗法的临床测试并行,计算机模拟实验已帮助科学家和临床医生了解人体解剖学复杂区域的电场分布。特别地,这些计算机模拟实验使临床医生可以预测可能在治疗效果方面出现的问题。当前的工作提出了犬肥大细胞肿瘤的转移病例。在这项具体的治疗计划研究中,我们表明使用针状电极可能会遇到陷阱。通过组织电导率的数学模型评估了电穿孔的宏观结果。考虑到正在研究的病例的电学和几何学特征,我们对一个椭圆形肿瘤进行了建模。最初的模拟基于针对电化学疗法建议的欧洲标准操作规程,然后评估了不同的电极布置。为了避免盲点,大型肿瘤通常需要多次应用,要求电极重新定位。一种有效的治疗方法是电穿孔所有肿瘤细胞。部分和部分重叠的区域会增加疗程的持续时间,但也可能会增加治疗效果。值得注意的是,对于单个应用,不应将针放置在靠近肿瘤边界的地方,因为很可能会失去有效性。

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