Schnitzler A, Kessler K R, Benecke R
Department of Neurology, Heinrich-Heine-University, Duesseldorf, Germany.
Exp Brain Res. 1996 Dec;112(3):381-91. doi: 10.1007/BF00227944.
The objective of this study was to investigate interhemispheric transcallosal connections between primary motor cortices noninvasively in awake human subjects. For this purpose, focal transcranial magnetic stimulation was performed on eight healthy, right-handed subjects and one patient with congenital collosal agenesis. Using two magnetic stimulators, we investigated the effect of a conditioning magnetic stimulus applied to the motor cortex of one hemisphere on the duration of the silent period (SP) evoked in the first dorsal interosseus (FDI) muscle by a magnetic test stimulus given over the opposite motor cortex. It is well established that SP reflects activation of inhibitory interneurons within primary motor cortex. In all normal subjects, a conditioning stimulus to one hemisphere produced a significant shortening of SP evoked by the test stimulus when the conditioning-test-interval was 10-20 ms. The effect was also observed when an electrical test stimulus was used. The conditioning coil had to be placed over the hand motor area to obtain the maximal effect. The threshold for eliciting this decrease of SP duration was higher than the threshold for eliciting an early excitatory muscle response in the contralateral FDI. Increasing the intensity of the conditioning stimulus led to linear reduction of SP duration. In the patient with callosal agenesis, no such decreasing effect on SP duration was observed. These results suggest that inhibitory interneurons within primary hand motor cortex receive transcallosal inhibitory input from the opposite motor cortex. We propose that modulation of motor cortical interneurons via transcallosal pathways may provide a gain control for the motor cortical output system and subserve interhemispheric coordination in complex, nonsymmetrical bimanual movements.
本研究的目的是在清醒的人类受试者中,以非侵入性方式研究初级运动皮层之间的半球间胼胝体连接。为此,对8名健康的右利手受试者和1名先天性胼胝体发育不全患者进行了局灶性经颅磁刺激。使用两个磁刺激器,我们研究了施加于一个半球运动皮层的条件磁刺激,对通过在对侧运动皮层给予的磁测试刺激,在第一背侧骨间肌(FDI)诱发的静息期(SP)持续时间的影响。众所周知,SP反映了初级运动皮层内抑制性中间神经元的激活。在所有正常受试者中,当条件刺激-测试刺激间隔为10 - 20毫秒时,对一个半球的条件刺激会使测试刺激诱发的SP显著缩短。当使用电测试刺激时也观察到了这种效应。条件刺激线圈必须放置在手运动区上方才能获得最大效果。引发SP持续时间这种减少的阈值高于引发对侧FDI早期兴奋性肌肉反应的阈值。增加条件刺激的强度会导致SP持续时间呈线性减少。在胼胝体发育不全的患者中,未观察到对SP持续时间有这种减少效应。这些结果表明,初级手部运动皮层内的抑制性中间神经元接受来自对侧运动皮层的胼胝体抑制性输入。我们提出,通过胼胝体通路对运动皮层中间神经元的调制,可能为运动皮层输出系统提供增益控制,并在复杂的、非对称的双手运动中实现半球间协调。