首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >An in?vivo study of a custom-made high-frequency irreversible electroporation generator on different tissues for clinically relevant ablation zones
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An in?vivo study of a custom-made high-frequency irreversible electroporation generator on different tissues for clinically relevant ablation zones

机译:在临床相关消融区不同组织上的定制高频不可逆电穿孔发生器的定制高频不可逆电穿孔器的体内研究

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Purpose To examine the ablation zone, muscle contractions, and temperature increases in both rabbit liver and kidney models in?vivo for a custom-made high-frequency irreversible electroporation (H-FIRE) generator. Materials and Methods A total of 18 New Zealand white rabbits were used to investigate five H-FIRE protocols ( n =?3 for each protocol) and an IRE protocol ( n =?3) for the performance of the designed H-FIRE device in both liver and kidney tissues. The ablation zone was determined by using histological analysis 72?h after treatment. The extent of muscle contractions and temperature change during the application of pulse energy were measured by a commercial accelerometer attached to animals and fiber optic temperature probe inserted into organs with IRE electrodes, respectively. Results All H-FIRE protocols were able to generate visible ablation zones without muscle contractions, for both liver and kidney tissues. The area of ablation zone generated in H-FIRE pulse protocols (e.g., 0.3–1 μs, 2000?V, and 90–195 bursts) appears similar to that of IRE protocol (100 μs, 1000?V, and 90 pulses) in both liver and kidney tissues. No significant temperature increase was noticed except for the protocol with the highest pulse energy (e.g., 1 μs, 2000?V, and 180 bursts). Conclusion Our work serves to complement the current H-FIRE pulse waveforms, which can be optimized to significantly improve the quality of ablation zone in terms of precision for liver and kidney tumors in clinical setting.
机译:目的检查消融区,肌肉收缩和兔肝肾模型的温度升高,用于定制高频不可逆电穿孔(H火)发电机。材料和方法共18个新西兰白兔用于研究五个H火法(每个协议的N = 3 = 3),以及用于设计的H型火装置的IRE协议(n =Δ3)肝脏和肾脏组织。通过在处理后使用组织学分析72℃测定消融区。通过附着于动物的商业加速度计和纤维光学温度探针的应用在脉冲能中施加脉冲能期间的肌肉收缩和温度变化的程度。结果肝脏和肾组织均能够在没有肌肉收缩的情况下产生可见的消融区。在H-Fire脉冲协议(例如,0.3-1μs,2000ΔV和90-195突发)中产生的消融区区域类似于IRE协议(100μs,1000〜v和90脉冲)的相似肝脏和肾脏组织。注意到具有最高脉冲能量的方案(例如,1μs,2000?v和180次爆发)除外,没有明显升高。结论我们的作品有助于补充当前的H型脉冲波形,可以优化,以显着提高肝脏和肾脏肿瘤精度的消融区的质量。

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