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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Parametric study of irreversible electroporation with different needle electrodes: Electrical and thermal analysis
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Parametric study of irreversible electroporation with different needle electrodes: Electrical and thermal analysis

机译:不同针状电极不可逆电穿孔的参数研究:电学和热学分析

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Purpose: Irreversible electroporation (IRE) is a new tumour ablation method used in cancer treatment procedures. In a successful IRE treatment it is crucial to impose minimum thermal damage to the tumour and its surrounding healthy tissue, while subjecting the entire tumour to a strong electric field. Method: Here we present a 3D model of a subcutaneous tumour in a four-layer skin using a geometry-based finite element approach. Four common needle electrode configurations were studied in this paper. The study evaluated six essential factors which are important in the electrical and thermal distributions in tumour and normal tissue. Results: The results revealed that a hexagonal 3?×?3 geometry provides the maximum electrical coverage of the tumour, compared to other electrode configurations. However, in some cases the hexagonal 2?×?2 geometry can ablate the entire tumour with less damage to normal tissue. We found that the deeper insertion of 2- and 4-electrode geometries can lead to more damage to healthy tissue. The results also indicate that the insertion of the electrodes into tumour tissue can increase thermal damage dramatically due to existing large electrical conductivity. Conclusion: These findings suggest that needle electrodes should not be placed within the tumour tissue if the goal is to prevent thermal damage. This method can be used as a trade-off between electric field coverage in tumour tissue and thermal damage to both tumour and normal tissue.
机译:目的:不可逆电穿孔(IRE)是一种用于癌症治疗程序的新型肿瘤消融方法。在成功的IRE治疗中,至关重要的是对肿瘤及其周围的健康组织施加最小的热损伤,同时使整个肿瘤经受强电场。方法:在这里,我们使用基于几何的有限元方法介绍了四层皮肤中皮下肿瘤的3D模型。本文研究了四种常见的针电极配置。该研究评估了对肿瘤和正常组织的电和热分布很重要的六个基本因素。结果:结果表明,与其他电极结构相比,六角形的3××3几何形状提供了最大的肿瘤电覆盖率。但是,在某些情况下,六角形的2××2几何形状可以消融整个肿瘤,而对正常组织的损害较小。我们发现2电极和4电极几何形状的更深插入会导致对健康组织的更多损害。结果还表明,由于现有的大电导率,将电极插入肿瘤组织可以显着增加热损伤。结论:这些发现表明,如果目标是防止热损伤,则不应将针电极放置在肿瘤组织内。该方法可以用作在肿瘤组织中的电场覆盖与对肿瘤和正常组织的热损伤之间的折衷。

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