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人类腿部运动皮层中皮质回路的外周感觉激活。

Peripheral sensory activation of cortical circuits in the leg motor cortex of man.

作者信息

Roy François D, Gorassini Monica A

机构信息

Department of Biomedical Engineering and Centre for Neuroscience, University of Alberta, Edmonton, Canada.

出版信息

J Physiol. 2008 Sep 1;586(17):4091-105. doi: 10.1113/jphysiol.2008.153726. Epub 2008 Jul 3.

Abstract

Peripheral sensory afferents in the hand activate both excitatory and inhibitory intracortical circuits to potentially facilitate and prune descending motor commands. In this study, we characterized how afferent inputs modulate the excitability of cortical circuits in the leg area of the primary motor cortex by examining how stimulation of the tibial nerve (TN) at the ankle alters motor evoked potentials (MEPs) activated by transcranial magnetic stimulation (TMS). Resting MEPs in the tibialis anterior (TA) muscle were facilitated in response to heteronymous activation of the TN 45-50 ms earlier, whereas MEPs were inhibited at interstimulus intervals of 32.5-37.5 ms. Similar time-dependent modulation occurred in the soleus (SOL) muscle with stimulation of the homonymous posterior tibial nerve (PTN) at the knee. To determine the site of this afferent-evoked facilitation and inhibition (spinal or cortical), we compared the effects of afferent stimulation to responses evoked at subcortical sites. At interstimulus intervals where MEP facilitation was observed (near 50 ms), spinal H-reflexes and responses evoked from corticospinal tract stimulation at the brainstem were predominantly depressed by the sensory stimulus suggesting that the observed MEP facilitation was cortical in origin. At interstimulus intervals where MEP depression was observed (near 35 ms), brainstem evoked responses were depressed to a similar degree and, in contrast to the hand, this suggests that spinal rather than cortical circuits mediate short-latency afferent inhibition (SAI) of leg MEPs. When the MEP was facilitated by afferent inputs, short-interval intracortical inhibition (SICI) was reduced and intracortical facilitation (ICF) was increased, but long-interval intracortical inhibition (LICI) at a 100 ms interval was unchanged. In addition, sensory excitation increased the recruitment of early, middle and late descending corticospinal volleys as evidenced from increases in MEP facilitation at the corresponding I-wave periodicity. We propose that sensory activation from the leg has a diffuse and predominantly facilitatory effect on the leg primary motor cortex.

摘要

手部的外周感觉传入神经激活兴奋性和抑制性皮质内回路,以潜在地促进和优化下行运动指令。在本研究中,我们通过检查踝关节处胫神经(TN)刺激如何改变经颅磁刺激(TMS)激活的运动诱发电位(MEP),来表征传入输入如何调节初级运动皮质腿部区域皮质回路的兴奋性。胫前肌(TA)的静息MEP在TN提前45 - 50毫秒的异源激活时得到促进,而在刺激间隔为32.5 - 37.5毫秒时MEP受到抑制。在膝盖处刺激同名的胫后神经(PTN)时,比目鱼肌(SOL)也出现了类似的时间依赖性调制。为了确定这种传入诱发促进和抑制的部位(脊髓或皮质),我们将传入刺激的效果与皮质下部位诱发的反应进行了比较。在观察到MEP促进的刺激间隔(接近50毫秒)时,脊髓H反射和脑干皮质脊髓束刺激诱发的反应主要被感觉刺激抑制,这表明观察到的MEP促进起源于皮质。在观察到MEP抑制的刺激间隔(接近35毫秒)时,脑干诱发反应受到类似程度的抑制,与手部不同的是,这表明脊髓而非皮质回路介导了腿部MEP的短潜伏期传入抑制(SAI)。当MEP被传入输入促进时,短间隔皮质内抑制(SICI)减少,皮质内促进(ICF)增加,但100毫秒间隔的长间隔皮质内抑制(LICI)不变。此外,感觉兴奋增加了早期、中期和晚期下行皮质脊髓冲动的募集,这从相应I波周期时MEP促进的增加中得到证明。我们提出,来自腿部的感觉激活对腿部初级运动皮质具有广泛且主要是促进性的作用。

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