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Effect of applied voltage, duration and repetition frequency of RF pulses for pain relief on temperature spikes and electrical field: a computer modelling study

机译:RF脉冲施加电压,持续时间和重复频率对温度尖峰和电气场的疼痛缓解的影响:计算机建模研究

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摘要

Background: The thermal and electrical effects of pulsed radiofrequency (PRF) for pain relief can be controlled by modifying the characteristics of the RF pulses applied. Our goal was to evaluate the influence of such modifications on the thermal and electric performance in tissue.Methods: A computational model was developed to compare the temperature and electric field time courses in tissue between a standard clinical protocol (45 V pulses, 20 ms duration, 2 Hz repetition frequency) and a new protocol (55 V pulses, 5 ms duration, 5 Hz repetition frequency) with a higher applied electric field but a smaller impact on temperature alterations in tissue. The effect of including a temperature controller was assessed. Complementarily, an agar-based experimental model was developed to validate the methodology employed in the computer modeling.Results: The new protocol increased the electric field magnitude reached in the tissue by around +20%, without increasing the temperature. The temperature controller was found to be the fundamental factor in avoiding thermal damage to the tissue and reduced the total number of pulses delivered by around 67%. The experimental results matched moderately well with those obtained from a computer model built especially to mimic the experimental conditions.Conclusions: For the same delivered energy, the new protocol significantly increases the magnitude of the applied electric field, which may be the reason why it is clinically more effective in achieving pain relief.
机译:背景:可以通过改变施加的RF脉冲的特性来控制脉冲射频(PRF)的脉冲射频(PRF)的热电效应。我们的目标是评估这种修改对组织中热电性能和电力性能的影响。方法是开发了计算模型,以比较标准临床协议之间的组织中的温度和电场时间课程(45 V脉冲,20 ms持续时间2 Hz重复频率)和具有较高施加电场的新协议(55 V脉冲,5毫米持续时间,5 Hz重复频率),但对组织中的温度变化较小。评估包括温度控制器的效果。互补的是,开发了一种基于琼脂的实验模型来验证计算机造型中使用的方法。结果:新方案将在组织中达到的电场幅度提高约+ 20%,而不会增加温度。发现温度控制器是避免对组织热损坏并降低脉冲总数约67%的基本因素。实验结果适中匹配,与从计算机模型中获得的那些,特别是模拟实验条件。结论:对于相同的能量,新方案显着增加了应用的电场的大小,这可能是它的原因在临床上更有效地实现疼痛缓解。

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