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通过选择性本体感觉刺激对运动皮层内皮质抑制进行局部性减弱。

Focal reduction of intracortical inhibition in the motor cortex by selective proprioceptive stimulation.

作者信息

Rosenkranz Karin, Pesenti Alessandra, Paulus Walter, Tergau Frithjof

机构信息

Sobell Department of Motor Neuroscience and Movement Disorders, Institute of Neurology, Queen Square 8-11, London, WC1N 3BG, UK.

出版信息

Exp Brain Res. 2003 Mar;149(1):9-16. doi: 10.1007/s00221-002-1330-3. Epub 2003 Jan 15.

Abstract

The influence of proprioception on motorcortical excitability was assessed by muscle vibration (MV; 80 Hz, 0.5 mm amplitude) of the flexor carpi radialis muscle (FCR) and compared to voluntary contraction and relaxation conditions. Motor thresholds, motor-evoked potentials (MEPs) in response to single pulses of transcranial magnetic stimulation (TMS) and the intracortical inhibition (ICI) and facilitation (ICF) after paired magnetic stimuli were studied. A control experiment using TMS inducing posteriorly directed current was performed. MEPs were recorded simultaneously from the FCR, the extensor carpi radialis, the abductor pollicis brevis and the first dorsal interosseus. In the FCR, MV led to an increase of excitability shown by a decrease of motor threshold, a facilitation of MEPs in response to single-pulse TMS, a reduction of ICI and an increase of ICF. Since especially the ICI and ICF remain unchanged in other recorded muscles, this increase of excitability is specific for the vibrated muscle. With posteriorly directed current the ICI in the FCR was reduced as well, showing an involvement of later I-waves. We suggest that MV induces a focused motorcortical activation which relies on a reduced activity of intracortical inhibitory interneuronal circuits targeting selectively the motorcortical representation of the vibrated muscle.

摘要

通过对桡侧腕屈肌(FCR)进行肌肉振动(MV;80Hz,0.5mm振幅)来评估本体感觉对运动皮质兴奋性的影响,并将其与自主收缩和放松状态进行比较。研究了运动阈值、经颅磁刺激(TMS)单脉冲诱发的运动诱发电位(MEP)以及双脉冲磁刺激后的皮质内抑制(ICI)和皮质内易化(ICF)。进行了一项使用TMS诱发向后电流的对照实验。同时从FCR、桡侧腕伸肌、拇短展肌和第一背侧骨间肌记录MEP。在FCR中,MV导致兴奋性增加,表现为运动阈值降低、单脉冲TMS诱发的MEP易化、ICI降低和ICF增加。由于在其他记录的肌肉中尤其是ICI和ICF保持不变,这种兴奋性增加是振动肌肉特有的。在向后电流作用下,FCR中的ICI也降低,表明后期I波参与其中。我们认为,MV诱导了一种聚焦的运动皮质激活,这依赖于皮质内抑制性中间神经元回路活动的减少,该回路选择性地靶向振动肌肉的运动皮质代表区。

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