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Numerical workflow of irreversible electroporation for deep-seated tumor

机译:深层肿瘤不可逆电穿孔的数值工作流程

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摘要

The paper provides a numerical workflow, based on the 'real-life' clinical workflow of irreversible electroporation (IRE) performed for the treatment of deep-seated liver tumors. Thanks to a combination of numerical modeling, image registration algorithm and clinical data, our numerical workflow enables to provide the distribution of the electric field as effectively delivered by the clinical IRE procedure. As a proof of concept, we show on a specific clinical case of IRE ablation of liver tumor that clinical data could be advantageously combined to numerical simulations in a near future, in order to give to the interventional radiologists information on the effective IRE ablation. We also corroborate the simulated treated region with the post-treatment MRI performed 3 d after the treatment.
机译:本文提供了一种数值工作流程,基于对患有深层肝肿瘤进行的不可逆电穿孔(IRE)的“现实生活”临床工作流程。 由于数值建模,图像登记算法和临床数据的组合,我们的数值工作流程使得能够提供临床IRE手术有效地提供的电场的分布。 作为概念证明,我们展示了肝脏肿瘤的特定临床情况,即临床数据可以有利地在不久的将来与数值模拟组合,以便给予介入放射科学家有关有效的感染的信息。 我们还通过治疗后的治疗后MRI对模拟处理区域进行证实。

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