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Irreversible electroporation ablation area enhanced by synergistic high- and low-voltage pulses

机译:高压和低压脉冲的协同作用增强了不可逆的电穿孔消融面积

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摘要

Irreversible electroporation (IRE) produced by a pulsed electric field can ablate tissue. In this study, we achieved an enhancement in ablation area by using a combination of short high-voltage pulses (HVPs) to create a large electroporated area and long low-voltage pulses (LVPs) to ablate the electroporated area. The experiments were conducted in potato tuber slices. Slices were ablated with an array of four pairs of parallel steel electrodes using one of the following four electric pulse protocols: HVP, LVP, synergistic HVP+LVP (SHLVP) or LVP+HVP. Our results showed that the SHLVPs more effectively necrotized tissue than either the HVPs or LVPs, even when the SHLVP dose was the same as or lower than the HVP or LVP doses. The HVP and LVP order mattered and only HVPs+LVPs (SHLVPs) treatments increased the size of the ablation zone because the HVPs created a large electroporated area that was more susceptible to the subsequent LVPs. Real-time temperature change monitoring confirmed that the tissue was non-thermally ablated by the electric pulses. Theoretical calculations of the synergistic effects of the SHLVPs on tissue ablation were performed. Our proposed SHLVP protocol provides options for tissue ablation and may be applied to optimize the current clinical IRE protocols.
机译:脉冲电场产生的不可逆电穿孔(IRE)可以消融组织。在这项研究中,我们通过结合使用短的高压脉冲(HVP)来创建大的电穿孔区域和使用长的低压脉冲(LVP)来消融电穿孔区域,从而增强了消融区域。实验在马铃薯块茎切片中进行。使用以下四个电脉冲方案之一,用四对平行钢电极的阵列烧蚀切片:HVP,LVP,协同HVP + LVP(SHLVP)或LVP + HVP。我们的结果表明,即使当SHLVP剂量等于或低于HVP或LVP剂量时,SHLVP仍比HVP或LVP更有效地坏死组织。 HVP和LVP顺序很重要,只有HVP + LVP(SHLVP)处理增加了消融区的大小,因为HVP产生了较大的电穿孔区域,该区域更容易受到后续LVP的影响。实时温度变化监测证实该组织未被电脉冲消融。进行了SHLVPs对组织消融的协同作用的理论计算。我们提出的SHLVP协议为组织消融提供了选择,并可用于优化当前的临床IRE协议。

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