Inghilleri M, Berardelli A, Cruccu G, Manfredi M, Priori A, Rothwell J C
Department of Neurosciences, University of Rome La Sapienza, Italy.
Electroencephalogr Clin Neurophysiol. 1995 Feb;97(1):63-8. doi: 10.1016/0924-980x(94)00225-v.
In active muscle, a supramaximal conditioning stimulus to peripheral nerve produces a classic silent period in the EMG. The present experiments examined the effect of this type of conditioning stimulus on motoneurone excitability in relaxed muscle. EMG responses evoked by transcranial magnetic stimulation of the brain were recorded from the first dorsal interosseus muscle (FDI) in 10 healthy subjects and 5 patients with sensory neuropathy. These responses (motor evoked potentials) were conditioned by supramaximal peripheral nerve stimuli given 0-150 msec beforehand. In the normal subjects, the classic silent period in the FDI lasted about 100 msec. The same conditioning stimulus only abolished motor evoked potentials when the conditioning-test interval was so short that the antidromic peripheral nerve volley collided with the orthodromic volley set up by magnetic brain stimulation. At longer conditioning-test intervals, although remarkably inhibited (65% mean suppression between 10 and 40 msec), the test motor potential was never completely abolished and gradually recovered by 100 msec. Inhibition of cortically evoked motor potentials did not depend upon activity set up by the conditioning stimulus in peripheral nerve sensory fibres. The patients with complete peripheral sensory neuropathy had the same extent and time-course of inhibition as the normal subjects. We conclude that in relaxed subjects the inhibitory effect of peripheral conditioning results almost exclusively from the motoneuronal inhibitory mechanisms consequent to antidromic invasion.
在活动的肌肉中,对周围神经施加超强阈上条件刺激会在肌电图中产生典型的静息期。本实验研究了这种类型的条件刺激对松弛肌肉中运动神经元兴奋性的影响。在10名健康受试者和5名感觉神经病变患者的第一背侧骨间肌(FDI)记录经颅磁刺激大脑诱发的肌电图反应。这些反应(运动诱发电位)由提前0 - 150毫秒给予的超强阈上周围神经刺激进行条件化。在正常受试者中,FDI中的典型静息期持续约100毫秒。当条件刺激与测试刺激的间隔非常短时,相同的条件刺激才会消除运动诱发电位,此时逆行性周围神经冲动与磁刺激大脑所引发的顺行性冲动相互碰撞。在更长的条件刺激与测试刺激间隔时,尽管测试运动电位受到显著抑制(在10至40毫秒之间平均抑制65%),但从未完全消除,并且在100毫秒时逐渐恢复。皮质诱发运动电位的抑制并不取决于条件刺激在周围神经感觉纤维中引发的活动。完全性周围感觉神经病变患者的抑制程度和时间进程与正常受试者相同。我们得出结论,在松弛的受试者中,周围条件刺激的抑制作用几乎完全源于逆行性冲动侵入后运动神经元的抑制机制。