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Circuital modelling for electroporation

机译:电气穿孔电路建模

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摘要

The application of intense, short-duration pulsed electric fields to biological membranes induces an increase of their conductivity to external molecules, an effect termed electroporation (EP), which is currently exploited in several biomedical, industrial and environmental applications. The study of interaction mechanisms between pulsed electric fields and biological structures is addressed by experiments and modelling. In the latter case, analytical, circuital, numerical and molecular dynamics approaches have been proposed in the literature, providing complementary information on the EP phenomenon. In this paper, an overview on circuital modelling of EP is presented. In spite of the simplifications adopted from both a physical and electrical point of view, this approach is useful to perform rapid analysis on broad ranges of electrical parameters and provides aid to the optimization of the experimental design.
机译:将激烈的短持续时间脉冲电场应用于生物膜,诱导它们与外部分子的电导率增加,其效果称为电穿孔(EP),目前在几种生物医学,工业和环境应用中被利用。通过实验和建模解决了脉冲电场和生物结构之间的相互作用机制的研究。在后一种情况下,在文献中提出了分析,电路,数值和分子动力学方法,提供了关于EP现象的互补信息。本文介绍了EP电路建模的概述。尽管对物理和电气的观点来说采用简化,但这种方法对于对电气参数的广泛范围进行快速分析并提供了对实验设计的优化。

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