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Real-Time Impedance Monitoring During Electroporation Processes in Vegetal Tissue Using a High-Performance Generator

机译:使用高性能发生器在植物组织电穿孔过程中进行实时阻抗监测

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摘要

Classical application of electroporation is carried out by using fixed protocols that do not clearly assure the complete ablation of the desired tissue. Nowadays, new methods that pursue the control of the treatment by studying the change in impedance during the applied pulses as a function of the electric field are being developed. These types of control seek to carry out the treatment in the fastest way, decreasing undesired effects and treatment time while ensuring the proper tumour ablation. The objective of this research is to determine the state of the treatment by continuously monitoring the impedance by using a novel versatile high-voltage generator and sensor system. To study the impedance dynamics in real time, the use of pulses of reduced voltage, below the threshold of reversible electroporation, is tested to characterise the state-of-the-treatment without interfering with it. With this purpose, a generator that provides both low voltage for sense tissue changes and high voltage for irreversible electroporation (IRE) was developed. In conclusion, the characterisation of the effects of electroporation in vegetal tissue, combined with the real-time monitoring of the state-of-the-treatment, will enable the provision of safer and more effective treatments.
机译:电穿孔的经典应用是通过使用固定规程进行的,该规程不能明确确保所需组织的完全消融。如今,正在开发通过研究所施加的脉冲期间的阻抗随电场的变化来追求治疗控制的新方法。这些类型的控制试图以最快的方式进行治疗,以减少不良作用和治疗时间,同时确保适当的肿瘤消融。这项研究的目的是通过使用新型的多功能高压发生器和传感器系统连续监测阻抗来确定治疗状态。为了实时研究阻抗动态,测试了在可逆电穿孔阈值以下使用降低电压的脉冲,以表征治疗状态而不干扰治疗状态。为了这个目的,开发了一种发生器,其既提供用于感测组织变化的低电压又提供用于不可逆电穿孔(IRE)的高电压。总之,表征植物组织中电穿孔的作用,结合对治疗状态的实时监控,将能够提供更安全,更有效的治疗方法。

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