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In vivo characterization and numerical simulation of prostate properties for non-thermal irreversible electroporation ablation

机译:非热不可逆电穿孔消融术前列腺特性的体内表征和数值模拟

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Irreversible electroporation (IRE) delivers brief electric pulses to attain non-thermal focal ablation that spares vasculature and other sensitive systems. It is a promising prostate cancer treatment due to sparing of the tissues associated with morbidity risk from conventional therapies. IRE effects depend on electric field strength and tissue properties. These characteristics are organ-dependent, affecting IRE treatment outcomes. This study characterizes the relevant properties to improve treatment planning and outcome predictions for IRE prostate cancer treatment. METHODS Clinically relevant IRE pulse protocols were delivered to a healthy canine and two human cancerous prostates while measuring electrical parameters to determine tissue characteristics for predictive treatment simulations. Prostates were resected 5 hr, 3 weeks, and 4 weeks post-IRE. Lesions were correlated with numerical simulations to determine an effective prostate lethal IRE electric field threshold. RESULTS Lesions were produced in all subjects. Tissue electrical conductivity increased from 0.284 to 0.927 S/m due to IRE pulses. Numerical simulations show an average effective prostate electric field threshold of 1072 ± 119 V/cm, significantly higher than previously characterized tissues. Histological findings in the human cases show instances of complete tissue necrosis centrally with variable tissue effects beyond the margin. CONCLUSIONS Preliminary experimental IRE trials safely ablated healthy canine and cancerous human prostates, as examined in the short- and medium-term. IRE-relevant prostate properties are now experimentally and numerically defined. Importantly, the electric field required to kill healthy prostate tissue is substantially higher than previously characterized tissues. These findings can be applied to optimize IRE prostate cancer treatment protocols. Prostate 74:458-468, 2014.
机译:不可逆电穿孔(IRE)提供短暂的电脉冲,以实现非热聚焦消融,从而节省脉管系统和其他敏感系统。由于保留了与常规疗法的发病风险相关的组织,因此它是一种有前途的前列腺癌治疗方法。 IRE效应取决于电场强度和组织特性。这些特征是器官依赖性的,影响IRE治疗的结果。这项研究表征了相关属性,以改善IRE前列腺癌治疗的治疗计划和结果预测。方法将临床相关的IRE脉冲方案传送到健康的犬和两个人类癌性前列腺,同时测量电参数以确定组织特征以进行预测性治疗模拟。 IRE后5小时,3周和4周切除前列腺。将病变与数值模拟相关联以确定有效的前列腺致死IRE电场阈值。结果所有受试者均产生病变。由于IRE脉冲,组织电导率从0.284增加到0.927 S / m。数值模拟显示平均有效前列腺电场阈值为1072±119 V / cm,明显高于先前表征的组织。在人类病例中的组织学发现显示,中心组织完全坏死,组织影响超出边缘。结论初步实验性IRE试验可安全消融健康的犬类和癌性人类前列腺,如短期和中期检查的那样。现在通过实验和数值定义了与IRE相关的前列腺特性。重要的是,杀死健康的前列腺组织所需的电场明显高于先前表征的组织。这些发现可用于优化IRE前列腺癌治疗方案。前列腺74:458-468,2014年。

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