IEEE Trans Biomed Eng. 2017 Dec;64(12):2924-2937. doi: 10.1109/TBME.2017.2690624. Epub 2017 Apr 4.
To minimize the effect of muscle contractions during irreversible electroporation (IRE), this paper attempts to research the ablation effect and muscle contractions by applying high-frequency IRE (H-FIRE) ablation to liver tissue in vivo.
An insulated needle electrode was produced by painting an insulating coating on the outer surface of the needle electrode tip. A series of experiments were conducted using insulated needle electrodes and traditional needle electrodes to apply H-FIRE pulses and traditional monopolar IRE pulses to rabbit liver tissues. The finite element model of the rabbit liver tissue was established to determine the lethal thresholds of H-FIRE in liver tissues. Muscle contractions were measured by an accelerometer.
With increased constitutive pulse width and pulse voltage, the ablation area and muscle contraction strength are also increased, which can be used to optimize the ablation parameters of H-FIRE. Under the same pulse parameters, the ablation areas are similar for the two types of electrodes, and the ablation region has a clear boundary. H-FIRE and insulated needle electrodes can mitigate the extent of muscle contractions. The lethal thresholds of H-FIRE in rabbit liver tissues were determined.
This paper describes the relationships between the ablation area, muscle contractions, and pulse parameters; the designed insulated needle electrodes can be used in IRE for reducing muscle contraction.
The study provides guidance for treatment planning and reducing muscle contractions in the clinical application of H-FIRE.
为了最小化不可逆电穿孔(IRE)过程中的肌肉收缩效应,本文尝试通过在体应用高频IRE(H-FIRE)消融来研究消融效果和肌肉收缩。
通过在针尖外表面涂覆绝缘涂层来制作绝缘针电极。使用绝缘针电极和传统针电极对兔肝组织施加 H-FIRE 脉冲和传统单极 IRE 脉冲,进行了一系列实验。建立兔肝组织的有限元模型,以确定 H-FIRE 在肝组织中的致死阈值。通过加速度计测量肌肉收缩。
随着固有脉冲宽度和脉冲电压的增加,消融面积和肌肉收缩强度也增加,这可以用于优化 H-FIRE 的消融参数。在相同的脉冲参数下,两种类型的电极的消融面积相似,且消融区域有明显的边界。H-FIRE 和绝缘针电极均可减轻肌肉收缩的程度。确定了 H-FIRE 在兔肝组织中的致死阈值。
本文描述了消融面积、肌肉收缩和脉冲参数之间的关系;设计的绝缘针电极可用于 IRE 以减少肌肉收缩。
该研究为 H-FIRE 的临床应用中的治疗计划和减少肌肉收缩提供了指导。