首页> 外文期刊>Clinical neurophysiology >Unmasking of presynaptic and postsynaptic high-frequency oscillations in epidural cervical somatosensory evoked potentials during voluntary movement.
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Unmasking of presynaptic and postsynaptic high-frequency oscillations in epidural cervical somatosensory evoked potentials during voluntary movement.

机译:突触前和突触后高频振荡在硬膜外颈椎躯体感觉诱发电位中的自发运动。

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OBJECTIVE: To investigate the effect of the voluntary movement on the amplitude of the somatosensory evoked potentials (SEPs) recorded by an epidural electrode at level of the cervical spinal cord (CSC). METHODS: Fourteen patients underwent an epidural electrode implant at CSC level for pain relief. After the median nerve stimulation, SEPs were recorded from the epidural electrode and from 4 surface electrodes (in frontal and parietal regions contralateral to the stimulated side, over the 6th cervical vertebra, and on the Erb's point). SEPs were recorded at rest and during a voluntary flexo-extension movement of the stimulated wrist. Beyond the low-frequency SEPs, also the high-frequency oscillations (HFOs) were analysed. RESULTS: The epidural electrode contacts recorded a triphasic potential (P1-N1-P2), whose negative peak showed the same latency as the cervical N13 response. The epidural potential amplitude was significantly decreased during the voluntary movement, as compared to the rest. Two main HFOs were identifiable: (1) the 1200 Hz HFO which was significantly lower in amplitude during movement than at rest, and (2) the 500 Hz HFO which was not modified by the voluntary movement. CONCLUSIONS: The low-frequency cervical SEP component is subtended by HFOs probably generated by: (1) postsynaptic potentials in the dorsal horn neurones (1200 Hz), and (2) presynaptic ascending somatosensory inputs (500 Hz). SIGNIFICANCE: Our findings show that the voluntary movement may affect the somatosensory input processing also at CSC level.
机译:目的:研究自愿运动对硬膜外电极在颈脊髓(CSC)水平上记录的体感诱发电位(SEP)幅度的影响。方法:十四名患者接受了CSC水平的硬膜外电极植入术,以缓解疼痛。正中神经刺激后,从硬膜外电极和4个表面电极(在受刺激侧对侧的额叶和顶叶区域,第6颈椎和Erb点)记录SEP。记录SEP在休息时以及在受刺激的手腕自愿屈伸运动过程中。除了低频SEP之外,还分析了高频振荡(HFO)。结果:硬膜外电极触点记录了一个三相电位(P1-N1-P2),其负峰显示出与宫颈N13反应相同的潜伏期。与其余部分相比,在自愿运动过程中硬膜外电位幅度明显降低。可以识别出两个主要的HFO:(1)1200 Hz HFO,其幅度在运动中比在静止时低得多;(2)500 Hz HFO,其不受自愿运动的影响。结论:低频宫颈SEP成分受HFO的影响,其可能由以下因素产生:(1)背角神经元的突触后电位(1200 Hz),以及(2)突触前上升的体感输入(500 Hz)。意义:我们的发现表明,自愿运动也可能在CSC级别上影响体感输入过程。

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