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FEM-based numerical simulation supporting experimentally tested Electrochemotherapy protocols

机译:基于FEM的数值模拟支持实验测试的电化学疗法方案

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Electrochemotherapy (ECT) is a clinical procedure for the local treatment of solid tumors, which combines the application of pulsed electric fields (PEFs) and chemotherapeutic drugs, by exploiting the PEF-induced membrane permeabilization (electroporation, EP). The ESOPE pulsing protocol (8 pulses with 100 μs duration and 1 kV/cm electric field strength, given at 1 Hz or 5 kHz as repetition rate) is the only protocol approved for application on human patients and is currently used in the clinical practice. Moving from an experimental study comparing the efficacy of ESOPE to that of modified PEF protocol with lower electric field intensity and higher pulse number, in this paper an electrophysiological model is used to provide theoretical support to the experimental results. The pore density and the transmembrane voltage time behavior at the upper pole of a single spherical cell are considered, in order to assess the EP effect of the applied pulse train, considered as boundary condition in the field based solution of the problem. The simulation results highlight that, 40 pulses 750 V/cm is a good candidate as ESOPE equivalent protocol.
机译:电化学疗法(ECT)是通过利用PEF诱导的膜透化(电穿孔,EP)来局部治疗固体瘤的临床程序,其结合了脉冲电场(PEFS)和化学治疗药物的应用。 ESOPE脉冲方案(具有100μs持续时间的8个脉冲和1 kV / cm电场强度,作为重复率为1 Hz或5 kHz)是批准用于人类患者申请的唯一协议,目前用于临床实践。从实验研究中移动比较eSope与较低电场强度和更高脉冲数的改性PEF协议的功效,在本文中,电生理模型用于为实验结果提供理论支持。考虑单个球形电池的上极处的孔密度和跨膜电压时间行为,以评估所应用的脉冲系的EP效应,被认为是基于领域的问题的边界条件。仿真结果突出显示,40个脉冲750 v / cm是eSope等效协议的良好候选者。

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