Deletis V, Schild J H, Berić A, Dimitrijević M R
Department of Anesthesiology, New York University, Medical Center, New York.
Electroencephalogr Clin Neurophysiol. 1992 Oct;85(5):302-10. doi: 10.1016/0168-5597(92)90106-l.
The effect of an electrically induced peripheral afferent volley upon electrical and magnetic motor evoked potentials (MEPs) from muscles of the upper and lower extremities was studied in 16 healthy volunteers. A standard conditioning-test (C-T) paradigm was employed whereby the test stimulus (transcranial electric or magnetic) was applied at random time intervals, from 10 msec prior to 90 msec after the conditioning stimulus (peripheral nerve stimulus). MEP amplitude facilitation was observed for the majority of the upper extremity muscles tested at two distinct periods, one occurring at short, and the other at long C-T intervals. This bimodal trend of MEP facilitation was found to be equally as prominent in the lower extremity muscles tested. The period of short C-T interval facilitation is consistent with modifications in the spinal excitability of the segmental motoneuron pool. On the other hand, the period of long C-T interval facilitation is suggested to be due to alterations in excitability of the motor cortex as a result of the arrival of the orthodromic sensory volley. Although most pronounced in muscles innervated by the nerve to which the conditioning stimulus was applied, this bimodal facilitatory effect was also observed in adjacent muscles not innervated by the stimulated nerve. Qualitatively, the conditioned MEPs from the upper and lower extremities responded similarly to both electrical and magnetic trans-cranial stimulation. In addition, our study demonstrates that the C-T paradigm has potential for use in the assessment of spinal and cortical sensorimotor integration by providing quantitative information which cannot be obtained through isolated assessment of sensory and/or motor pathways.(ABSTRACT TRUNCATED AT 250 WORDS)
在16名健康志愿者中研究了电诱导的外周传入冲动对上下肢肌肉的电运动诱发电位(MEP)和磁运动诱发电位的影响。采用标准的条件-测试(C-T)模式,其中测试刺激(经颅电刺激或磁刺激)在条件刺激(外周神经刺激)前10毫秒至后90毫秒的随机时间间隔施加。在大多数测试的上肢肌肉中,在两个不同时期观察到MEP幅度易化,一个发生在短C-T间隔,另一个发生在长C-T间隔。在测试的下肢肌肉中也发现这种MEP易化的双峰趋势同样显著。短C-T间隔易化期与节段性运动神经元池的脊髓兴奋性改变一致。另一方面,长C-T间隔易化期被认为是由于顺行感觉冲动的到达导致运动皮层兴奋性改变所致。尽管在施加条件刺激的神经所支配的肌肉中最为明显,但在未受刺激神经支配的相邻肌肉中也观察到这种双峰易化效应。定性地说,来自上下肢的条件MEP对电和磁经颅刺激的反应相似。此外,我们的研究表明,C-T模式通过提供通过单独评估感觉和/或运动通路无法获得的定量信息,具有用于评估脊髓和皮层感觉运动整合的潜力。(摘要截断于250字)