首页> 美国卫生研究院文献>The Journal of Physiology >Modulation of motor cortical excitability by electrical stimulation over the cerebellum in man.
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Modulation of motor cortical excitability by electrical stimulation over the cerebellum in man.

机译:通过对人小脑的电刺激来调节运动皮层兴奋性。

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摘要

1. We have stimulated over the cerebellum of intact human subjects by applying single electrical stimuli through electrodes placed on the back of the head, approximately at the level of the inion. The intensity of stimulation used was below that required to produce direct EMG responses in pre-activated muscles of the hand. 2. In ten subjects the effect of the stimulus over the cerebellum was to reduce the size of the EMG response in first dorsal interosseous muscle evoked by a magnetic stimulus to the cerebral cortex. In all subjects the onset of the period of suppression occurred when the test magnetic cortical shock followed the conditioning cerebellar shock by 5 ms. The duration of the suppression lasted from 3 to 7 ms. 3. The amount of suppression was related to the intensity of stimulation over the cerebellum. At 15% below the threshold for direct motor activation there was no effect; increasing suppression was evident at 10, 5 and 0% below motor threshold. 4. With a conditioning-test interval of 5-6 ms the suppression was the same whether the target muscle was relaxed or active. With longer conditioning-test intervals (12 and 15 ms) the amount of suppression was greater in active than relaxed muscles. 5. The short-latency suppression was greatest when the stimulating anode was ipsilateral to the target muscle and contralateral to the stimulated sensorimotor cortex. The later period of suppression was insensitive to the polarity of stimulation. When the stimulating electrodes were moved 2 cm caudally or cranially the short latency suppression disappeared whereas the longer latency suppression was still observed with the electrodes in the lower position. 6. Different results were obtained when the test EMG response was produced by an electrical (rather than magnetic) stimulus over the sensorimotor cortex. The short latency effect was no longer visible whereas the longer latency effect was the same as when testing with a magnetic cortical stimulus. 7. We suggest that a single electrical stimulus across the base of the skull (particularly with the anode over one cerebellar hemisphere) produces a short latency (5-6 ms) disfacilitation of the contralateral motor cortex through activation of cerebellar structures. A later (12 and 15 ms), less specific suppression which is present when testing in active muscles is thought to be mediated by a different mechanism and probably produces its effect at the level of the spinal cord.
机译:1.我们通过放置在头部后部的电极(大约在洋葱的水平)上施加单个电刺激,刺激了完整人类受试者的小脑。所使用的刺激强度低于在手的预激活肌肉中产生直接EMG反应所需的刺激强度。 2.在十名受试者中,对小脑的刺激作用是减小对大脑皮层的磁刺激诱发的第一背骨间肌的EMG反应大小。在所有受试者中,当测试磁性皮层电击在条件性小脑电击后持续5 ms时,就会出现抑制期。抑制持续时间为3到7毫秒。 3.抑制程度与小脑的刺激强度有关。低于直接启动电动机的阈值15%时,没有任何影响。在运动阈值以下10%,5%和0%处,抑制作用明显增强。 4.无论目标肌肉是放松还是活动状态,在5-6 ms的调节测试间隔中,抑制作用都是相同的。在较长的条件测试间隔(12和15 ms)下,活动肌肉的抑制作用大于松弛肌肉。 5.当刺激阳极与目标肌肉同侧,而对刺激的感觉运动皮层对侧时,短时延抑制最大。抑制的后期对刺激的极性不敏感。当将刺激电极尾部或颅骨移动2 cm时,短时延抑制消失,而在较低位置的电极上仍观察到更长时延抑制。 6.当通过感觉运动皮层的电(而不是磁)刺激产生测试EMG响应时,获得了不同的结果。短暂的等待时间效应不再可见,而较长的等待时间效应与使用磁皮质刺激进行测试时相同。 7.我们建议,通过颅骨底部的单个电刺激(特别是阳极在一个小脑半球上)会通过激活小脑结构而短暂延迟(5-6毫秒)对侧运动皮质的损害。在活动肌肉中进行测试时出现的较晚的抑制(12和15 ms)特异性较低,被认为是由不同的机制介导的,并且可能在脊髓水平产生作用。

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