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Temperature considerations during irreversible electroporation

机译:不可逆电穿孔过程中的温度注意事项

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Certain electrical fields, when applied across a cell membrane, can have the sole effect of membrane per-meabilization, which is referred to as electroporation. When the permeabilization is irreversible, the effect leads to cell death, primarily due to loss of cell homeostasis, in a process known as irreversible electroporation (IRE). This is an unusual mode of cell death that is not yet fully understood. However, it is unique among tissue ablation techniques in affecting only the cell membrane while tissue molecules, everything encompassing collagen structures to proteins, remain intact. This facilitates a possible immune response and avoids scar tissue formation. Irreversible electroporation is, therefore, substantially different from any other tissue ablation technique and has many advantages over either heating or freezing thermal ablation. However, since IRE employs electrical fields, it can produce thermal effects which could cause thermal damage if parameters are not chosen correctly, therapy negating the advantages of IRE. This study evaluates the temperature distribution during typical IRE protocols as a means to establish the electrical parameters that produce IRE alone, without thermal effects.
机译:当跨过细胞膜施加某些电场时,其膜过平衡化的唯一作用就是膜的电穿孔。当通透性是不可逆的时,这种作用会导致细胞死亡,这主要是由于细胞稳态失衡所致,该过程称为不可逆电穿孔(IRE)。这是一种尚不完全了解的异常细胞死亡模式。然而,在组织消融技术中,它仅影响细胞膜而组织分子(包括蛋白质的胶原蛋白结构在内的一切分子)保持完好无损。这有助于可能的免疫反应,并避免形成疤痕组织。因此,不可逆的电穿孔与任何其他组织消融技术都大不相同,并且与加热消融或冷冻消融相比具有许多优势。但是,由于IRE使用电场,因此如果不正确选择参数,它会产生热效应,可能会造成热损坏,这种疗法会削弱IRE的优势。这项研究评估了典型IRE协议期间的温度分布,以此来建立仅产生IRE而不产生热效应的电气参数。

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