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Post-treatment analysis of irreversible electroporation waveforms delivered to human pancreatic cancer patients

机译:递送给人胰腺癌患者的不可逆电穿孔波形的后处理分析

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Irreversible electroporation (IRE) is a focal ablation therapy that uses high voltage, short electrical pulses to destroy tumor tissue. The success of treatment directly depends on exposure of the entire tumor to a lethal electric field magnitude. However, this exposure is difficult to predict ahead of time and it is challenging for clinicians to determine optimal treatment parameters. One method clinicians rely upon for the cessation of pulse delivery is to monitor the resistance value of the tissue, as the cells within the tissue will undergo changes during electroporation. This work presents a computational model which incorporates human pancreatic tumor conductivity, and compares predicted and measured output currents from IRE treatments of human patients. The measured currents vary widely from patient to patient, suggesting there may areas of high local conductivity in the treatment area.
机译:不可逆的电穿孔(IRE)是使用高电压,短电脉冲来破坏肿瘤组织的局灶性消融疗法。治疗的成功直接取决于整个肿瘤暴露于致命的电场幅度。然而,这种暴露难以提前预测,临床医生确定最佳治疗参数是挑战性的。一种方法临床医生依赖于脉冲输送的停止是监测组织的电阻值,因为组织内的细胞在电穿孔期间会发生变化。该工作介绍了一种含有人胰腺肿瘤导电性的计算模型,并比较人类患者的IRE治疗的预测和测量的输出电流。测量的电流从患者到患者的广泛变化,表明治疗区域中可能存在高局部电导率。

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