首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >Reversible Nerve Conduction Block Using Kilohertz Frequency Alternating Current
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Reversible Nerve Conduction Block Using Kilohertz Frequency Alternating Current

机译:使用千赫兹频率交流电的可逆神经传导阻滞

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Objectives: The features and clinical applications of balanced-charge kilohertz frequency alternating currents (KHFAC) are reviewed. Preclinical studies of KHFAC block have demonstrated that it can produce an extremely rapid and reversible block of nerve conduction. Recent systematic analysis and experimentation utilizing KHFAC block have resulted in a significant increase in interest in KHFAC block, both scientifically and clinically. Materials and Methods: We review the history and characteristics of KHFAC block, the methods used to investigate this type of block, the experimental evaluation of block, and the electrical parameters and electrode designs needed to achieve successful block. We then analyze the existing clinical applications of high-frequency currents, comparing the early results with the known features of KHFAC block. Results: Although many features of KHFAC block have been characterized, there is still much that is unknown regarding the response of neural structures to rapidly fluctuating electrical fields. The clinical reports to date do not provide sufficient information to properly evaluate the mechanisms that result in successful or unsuccessful treatment. Conclusions: KHFAC nerve block has significant potential as a means of controlling nerve activity for the purpose of treating disease. However, early clinical studies in the use of high-frequency currents for the treatment of pain have not been designed to elucidate mechanisms or allow direct comparisons to preclinical data. We strongly encourage the careful reporting of the parameters utilized in these clinical studies, as well as the development of outcome measures that could illuminate the mechanisms of this modality.
机译:目的:综述了平衡电荷千赫兹频率交流电(KHFAC)的特点和临床应用。 KHFAC阻滞剂的临床前研究表明,它可以产生极其快速和可逆的神经传导阻滞。最近利用KHFAC阻滞剂进行系统的分析和实验,无论是在科学上还是在临床上,都使人们对KHFAC阻滞剂的兴趣大大增加。材料和方法:我们回顾了KHFAC嵌段的历史和特征,研究这种类型嵌段的方法,嵌段的实验评估以及成功获得嵌段所需的电参数和电极设计。然后,我们分析了高频电流的现有临床应用,将早期结果与KHFAC块的已知功能进行了比较。结果:尽管已表征了KHFAC阻滞的许多特征,但关于神经结构对快速波动的电场的响应,仍有许多未知的地方。迄今为止的临床报告并未提供足够的信息来正确评估导致治疗成功或失败的机制。结论:KHFAC神经阻滞作为控制神经活动的一种重要手段,可用于治疗疾病。但是,尚未进行使用高频电流治疗疼痛的早期临床研究来阐明机理或允许直接与临床前数据进行比较。我们强烈鼓励仔细报告这些临床研究中使用的参数,以及开发可能阐明这种方法机制的结果指标。

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