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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Electrode Activation Sequencing Employing Conductivity Changes in Irreversible Electroporation Tissue Ablation
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Electrode Activation Sequencing Employing Conductivity Changes in Irreversible Electroporation Tissue Ablation

机译:在不可逆电穿孔组织消融中利用电导率变化的电极激活序列

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摘要

Irreversible electroporation (IRE) uses high-voltage pulses applied to tissue, which cause dielectric breakdown of cell membranes resulting in cell death. IRE is a promising technique for ablation of nonresectable tumors because it can be configured to spare critical structures such as blood vessels. A consequence of pulse application is an increase in tissue electrical conductivity due to current pathways being opened in cell membranes. We propose a novel IRE method introducing electrode switching and pulse sequencing in which tissue conductivity is first increased using preparatory pulses in order to form high-conductivity zones, which then helps provide higher electric field intensity within the targeted tissue as subsequent pulses are applied, and hence, enhances the efficiency and selectivity of the IRE treatment. We demonstrate the potential of this method using computational models on simple geometries.
机译:不可逆电穿孔(IRE)使用施加到组织的高压脉冲,这会导致细胞膜介电击穿,从而导致细胞死亡。 IRE是消融不可切除肿瘤的一种有前途的技术,因为它可以进行配置以保留重要的结构,例如血管。施加脉冲的结果是由于在细胞膜中打开了电流通路,导致组织电导率增加。我们提出了一种新的IRE方法,该方法引入了电极切换和脉冲测序功能,其中首先使用预备脉冲增加组织电导率以形成高电导率区域,然后在施加后续脉冲时帮助在目标组织内提供更高的电场强度,并且因此,提高了IRE处理的效率和选择性。我们使用简单几何上的计算模型证明了这种方法的潜力。

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