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异突触易化机械伤害性传入取决于条件刺激的频率。

Heterosynaptic facilitation of mechanical nociceptive input is dependent on the frequency of conditioning stimulation.

机构信息

Institute of Neuroscience, Université catholique de Louvain, Brussels, Belgium.

出版信息

J Neurophysiol. 2019 Sep 1;122(3):994-1001. doi: 10.1152/jn.00274.2019. Epub 2019 Jul 10.

Abstract

High-frequency burstlike electrical conditioning stimulation (HFS) applied to human skin induces an increase in mechanical pinprick sensitivity of the surrounding unconditioned skin (a phenomenon known as secondary hyperalgesia). The present study assessed the effect of frequency of conditioning stimulation on the development of this increased pinprick sensitivity in humans. In a first experiment, we compared the increase in pinprick sensitivity induced by HFS, using monophasic non-charge-compensated pulses and biphasic charge-compensated pulses. High-frequency stimulation, traditionally delivered with non-charge-compensated square-wave pulses, may induce a cumulative depolarization of primary afferents and/or changes in pH at the electrode-tissue interface due to the accumulation of a net residue charge after each pulse. Both could contribute to the development of the increased pinprick sensitivity in a frequency-dependent fashion. We found no significant difference in the increase in pinprick sensitivity between HFS delivered with charge-compensated and non-charge-compensated pulses, indicating that the possible contribution of charge accumulation when non-charge-compensated pulses are used is negligible. In a second experiment, we assessed the effect of different frequencies of conditioning stimulation (5, 20, 42, and 100 Hz) using charge-compensated pulses on the development of increased pinprick sensitivity. The maximal increase in pinprick sensitivity was observed at intermediate frequencies of stimulation (20 and 42 Hz). It is hypothesized that the stronger increase in pinprick sensitivity at intermediate frequencies may be related to the stronger release of substance P and/or neurokinin-1 receptor activation expressed at lamina I neurons after C-fiber stimulation. Burstlike electrical conditioning stimulation applied to human skin induces an increase in pinprick sensitivity in the surrounding unconditioned skin (a phenomenon referred to as secondary hyperalgesia). Here we show that the development of the increase in pinprick sensitivity is dependent on the frequency of the burstlike electrical conditioning stimulation.

摘要

高频爆发式电刺激(HFS)施加于人体皮肤会引起周围未受刺激皮肤的机械刺痛敏感性增加(称为继发性痛觉过敏)。本研究评估了刺激频率对人体这种刺痛敏感性增加的发展的影响。在第一个实验中,我们比较了使用单相非补偿性无电荷补偿脉冲和双相补偿性电荷脉冲的 HFS 诱导的刺痛敏感性增加。高频刺激传统上使用非补偿性方波脉冲传递,由于每个脉冲后净残留电荷的积累,可能会导致初级传入纤维的累积去极化和/或电极-组织界面 pH 值的变化。这两者都可能以频率依赖性方式导致刺痛敏感性增加。我们发现,使用补偿性和非补偿性脉冲的 HFS 引起的刺痛敏感性增加之间没有显著差异,这表明当使用非补偿性脉冲时,电荷积累的可能贡献可以忽略不计。在第二个实验中,我们使用补偿性电荷脉冲评估了不同频率(5、20、42 和 100 Hz)的刺激对刺痛敏感性增加的发展的影响。在刺激的中间频率(20 和 42 Hz)观察到刺痛敏感性的最大增加。假设中间频率下刺痛敏感性的更强增加可能与 C 纤维刺激后 I 层神经元中 P 物质和/或神经激肽-1 受体表达的更强释放有关。施加于人体皮肤的爆发式电刺激会引起周围未受刺激皮肤的刺痛敏感性增加(称为继发性痛觉过敏)。在这里,我们表明刺痛敏感性增加的发展取决于爆发式电刺激的频率。

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