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通过小脑磁刺激抑制运动皮层

Suppression of the motor cortex by magnetic stimulation of the cerebellum.

作者信息

Pinto A D, Chen R

机构信息

Division of Neurology, Toronto Western Hospital and Toronto Western Research Institute, University Health Network, University of Toronto, Toronto, Ontario, Canada.

出版信息

Exp Brain Res. 2001 Oct;140(4):505-10. doi: 10.1007/s002210100862.

Abstract

Conditioning magnetic stimulation of the cerebellum suppresses the motor cortex 5-8 ms later, probably through activation of cerebellar Purkinje cells, which inhibit the dentatothalamocortical pathway. To further characterize this pathway, we examined several factors that may modulate its excitability. We tested the effects of different test motor evoked potential (MEP) amplitudes, voluntary activation of the target muscle, and arm extension that required activation of proximal arm muscles while maintaining relaxation of hand muscles. Surface electromyography was recorded from the right first dorsal interosseous (FDI) muscle. A double-cone coil centered 3 cm lateral to the inion was used for right cerebellar stimulation. The stimulus intensity was set at 5% below the threshold for activation of the corticospinal tract. A figure-of-eight coil was used for left motor cortex stimulation. Interstimulus intervals (ISIs) between 3 and 15 ms were studied. Small test MEPs of about 0.5 mV were markedly inhibited at ISIs of 5-8 ms, but there was much less inhibition for test MEPs of about 2 mV. There was no significant MEP suppression during voluntary activation of the FDI muscle or during right arm extension. Left arm extension did not affect inhibition. Our findings indicate that cerebellar stimulation has a much stronger effect on motor cortex neurons activated near threshold intensities than those activated at higher intensities. Activation of contralateral but not ipsilateral proximal arm muscles during arm extension reduced the excitability of the cerebellothalamocortical projections to the hand area of the motor cortex.

摘要

小脑的条件性磁刺激在5 - 8毫秒后抑制运动皮层,这可能是通过激活小脑浦肯野细胞实现的,浦肯野细胞会抑制齿状核 - 丘脑 - 皮质通路。为了进一步描述该通路的特征,我们研究了几个可能调节其兴奋性的因素。我们测试了不同测试运动诱发电位(MEP)幅度、目标肌肉的自主激活以及在保持手部肌肉放松的同时需要激活近端手臂肌肉的手臂伸展的影响。从右侧第一背侧骨间肌(FDI)记录表面肌电图。一个以枕外隆凸外侧3厘米为中心的双锥线圈用于右侧小脑刺激。刺激强度设定在激活皮质脊髓束阈值以下5%。一个8字形线圈用于左侧运动皮层刺激。研究了3至15毫秒之间的刺激间隔(ISI)。约0.5毫伏的小测试MEP在5 - 8毫秒的ISI时受到明显抑制,但约2毫伏的测试MEP受到的抑制要少得多。在FDI肌肉的自主激活期间或右臂伸展期间,MEP没有明显抑制。左臂伸展不影响抑制作用。我们的研究结果表明,小脑刺激对接近阈值强度激活的运动皮层神经元的影响比对更高强度激活的神经元的影响要强得多。在手臂伸展期间激活对侧而非同侧近端手臂肌肉会降低小脑 - 丘脑 - 皮质投射到运动皮层手部区域的兴奋性。

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