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Changes in interhemispheric inhibition from active to resting primary motor cortex during a fine-motor manipulation task

机译:在精细运动操作任务期间,半主动运动皮质到活动初级静止皮质的半球抑制作用变化

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The effect of performance of a sensorimotor task on the interhemispheric inhibition (IHI) induced from the active primary motor cortex (M1) to the resting M1 was examined in 10 right-handed subjects. Transcranial magnetic stimulation (TMS) was performed to produce motor evoked potentials (MEP) in the resting right (Rt)-first dorsal interosseous (FDI). For the paired-TMS paradigm, a conditioning stimulus (CS) was delivered to the Rt-M1, and its intensity was adjusted from 0.6 to 1.4 times the resting motor threshold of the MEP in the left (Lt)-FDI in 0.2 steps. The test stimulus was delivered to the Lt-M1, and its intensity was adjusted to evoke similar MEP amplitudes in the Rt-FDI among the task conditions. The interstimulus interval was fixed at 10 ms. As a sensorimotor task, a fine-motor manipulation (FM) task (using chopsticks to pick up, transport, and release glass balls) was adopted. In addition, an isometric abduction (IA) task was also performed as a control task. These tasks were carried out with the left hand. The IHI from the active to the resting M1 observed during the FM task was markedly increased compared with that induced during the IA task, and this effect was not dependent on the MEP amplitude evoked in the active Lt-FDI by the CS. The present findings suggest that the increased IHI from the active to the resting M1 observed during the FM task was linked to reductions in the activity of the ipsilateral intracortical inhibitory circuit, as we reported previously.
机译:在十个惯用右手的受试者中,研究了感觉运动任务的执行对从活动的初级运动皮层(M1)到静止的M1引起的半球间抑制(IHI)的影响。进行经颅磁刺激(TMS)以在静息右(Rt)-第一背骨间(FDI)产生运动诱发电位(MEP)。对于配对的TMS范例,向Rt-M1传递了条件刺激(CS),其强度以0.2步从左侧(Lt)-FDI的MEP静息运动阈值的0.6调整为1.4倍。将测试刺激传递到Lt-M1,并调整其强度以在任务条件之间引起Rt-FDI中类似的MEP振幅。刺激间隔固定为10 ms。作为感觉运动任务,采用了精细运动操纵(FM)任务(使用筷子拾取,运输和释放玻璃球)。此外,还执行了等距绑架(IA)任务作为控制任务。这些任务是用左手执行的。与在IA任务期间所诱发的相比,在FM任务期间所观察到的从活动M1到静止M1的IHI显着增加,并且这种效应不取决于CS在活动Lt-FDI中引起的MEP振幅。目前的发现表明,正如我们先前报道的那样,在FM任务期间观察到的从活动M1到静止M1的IHI增加与同侧皮层内抑制回路的活性降低有关。

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