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麻醉状态下人类运动诱发电位的神经生理机制。第1部分。经颅电刺激成对刺激诱发的皮质脊髓束直接波的恢复时间。

Neurophysiological mechanisms underlying motor evoked potentials in anesthetized humans. Part 1. Recovery time of corticospinal tract direct waves elicited by pairs of transcranial electrical stimuli.

作者信息

Deletis V, Isgum V, Amassian V E

机构信息

Institute for Neurology and Neurosurgery, Beth Israel Medical Center - Singer Division, 170 East End Avenue, Room 311, New York, NY 10128, USA.

出版信息

Clin Neurophysiol. 2001 Mar;112(3):438-44. doi: 10.1016/s1388-2457(01)00461-8.

Abstract

Direct (D) corticospinal tract discharges were recorded epidurally in patients at anesthetic depths suppressing indirect (I) activity and were elicited by two equal transcranial electrical stimuli. The recovery of amplitude of the second D wave (D2) was a function of the interstimulus interval (ISI) and the stimulus duration. For example, with a 100 micros pulse, there was no response at an ISI of 1.1 ms, but partial recovery occurred with a 500 micros pulse. This indicates a relative refractory component at this ISI. Both D2 amplitude and conduction time recovered completely using a 4 ms ISI, with evidence of increased amplitude and reduced conduction time (supernormality) at longer ISIs. These findings are relevant in explaining high frequency D and I discharges and facilitation of motor responses by two transcranial magnetic pulses. Furthermore, these data help to understand why an ISI of 4 ms would be optimal in eliciting limb muscle responses when a short train of transcranial stimuli elicits only D waves in anesthetized patients (Deletis et al., Clin Neurophysiol 112 (2001) 445).

摘要

在麻醉深度抑制间接(I)活动的患者中,通过硬膜外记录直接(D)皮质脊髓束放电,其由两个相等的经颅电刺激诱发。第二个D波(D2)的振幅恢复是刺激间隔(ISI)和刺激持续时间的函数。例如,使用100微秒脉冲时,在ISI为1.1毫秒时无反应,但使用500微秒脉冲时出现部分恢复。这表明在此ISI时存在相对不应期成分。使用4毫秒的ISI时,D2振幅和传导时间均完全恢复,在更长的ISI时出现振幅增加和传导时间缩短(超常期)的证据。这些发现对于解释高频D和I放电以及两个经颅磁脉冲对运动反应的易化作用具有重要意义。此外,这些数据有助于理解为什么当短串经颅刺激在麻醉患者中仅诱发D波时,4毫秒的ISI在诱发肢体肌肉反应方面是最佳的(Deletis等人,《临床神经生理学》112(2001)445)。

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