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首页> 外文期刊>The Journal of Physiology >Electrophysiology equipment for reliable study of kHz electrical stimulation
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Electrophysiology equipment for reliable study of kHz electrical stimulation

机译:KHz电刺激可靠研究的电生理设备

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Abstract Characterizing the cellular targets of kHz (1–10?kHz) electrical stimulation remains a pressing topic in neuromodulation because expanding interest in clinical application of kHz stimulation has surpassed mechanistic understanding. The presumed cellular targets of brain stimulation do not respond to kHz frequencies according to conventional electrophysiology theory. Specifically, the low‐pass characteristics of cell membranes are predicted to render kHz stimulation inert, especially given the use of limited‐duty‐cycle biphasic pulses. Precisely because kHz frequencies are considered supra‐physiological, conventional instruments designed for neurophysiological studies such as stimulators, amplifiers and recording microelectrodes do not operate reliably at these high rates. Moreover, for pulsed waveforms, the signal frequency content is well above the pulse repetition rate. Thus, the very tools used to characterize the effects of kHz electrical stimulation may themselves be confounding factors. We illustrate custom equipment design that supports reliable electrophysiological recording during kHz‐rate stimulation. Given the increased importance of kHz stimulation in clinical domains and compelling possibilities that mechanisms of actions may reflect yet undiscovered neurophysiological phenomena, attention to suitable performance of electrophysiological equipment is pivotal.
机译:摘要表征KHz的细胞靶标(1-10?KHz)电刺激仍然是神经调节中的压制题目,因为扩张KHz刺激的临床应用的兴趣已经超越机械理解。根据传统的电生理学理论,脑刺激的假定细胞靶标不会响应KHz频率。具体地,预测细胞膜的低通特性,以使KHz刺激惰性,特别是考虑到使用有限占空比的双相脉冲。正是因为KHz频率被认为是Supra-生理的,所以用于神经生理学研究的常规仪器,例如刺激器,放大器和记录微电极不能可靠地在这些高速率下操作。此外,对于脉冲波形,信号频率内容远高于脉冲重复率。因此,用于表征KHz电刺激效果的非常工具本身可能是混杂的因素。我们说明了在KHZ速率刺激期间支持可靠的电生理记录的定制设备设计。鉴于KHz刺激在临床领域的重要性增加和令人信服的可能性可能反映出未被发现的神经生理现象,关注电生理设备的关注是关键的。

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