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Inclusion of memory effects in a dynamic model of electroporation in biological tissues

机译:在生物组织电穿孔动态模型中包含记忆效应

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Abstract This article presents experimental and computational results of electroporation in rat liver. The experiments were performed using different forms of electrodes and waveforms of applied electric pulses. For the numerical simulation, the electroporation model proposed by Ramos and Weinert in a previous publication was used. Dynamic adjustments were used for obtaining a good modeling of the electric current. A single set of model parameters was obtained to fit the simulated current response for different waveforms and electrodes. These parameters were obtained with the use of a genetic algorithm that minimized the error between the simulated and experimental currents. The electroporation model with dynamic adjustment proved to be an appropriate simulation tool to predict the tissue conductivity during stimulation by intense electrical fields.
机译:摘要本文介绍了大鼠肝脏电穿孔的实验和计算结果。 使用不同形式的电极和施加电脉冲的波形进行实验。 对于数值模拟,使用了Ramos和Weinert在以前出版物中提出的电穿孔模型。 动态调节用于获得电流的良好建模。 获得了一组模型参数以适合不同波形和电极的模拟电流响应。 通过使用遗传算法获得这些参数,其最小化模拟和实验电流之间的误差。 具有动态调节的电穿孔模型被证明是一种适当的模拟工具,用于通过强烈电场刺激期间预测组织电导率。

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