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Relaxation from a voluntary contraction is preceded by increased excitability of motor cortical inhibitory circuits

机译:运动性皮层抑制回路的兴奋性增强之前先从自发性收缩放松

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摘要

Termination of a muscle contraction is as important a part of movement as muscle activation yet the mechanisms responsible are less well understood. In the present experiments we examined the possible role of intracortical inhibitory circuits in terminating a 20% maximum isometric contraction of the first dorsal interosseous muscle (FDI) in eight healthy subjects. Subjects performed the task simultaneously with both hands and received single or pairs (at an interstimulus interval of 3 ms to evaluate short interval intracortical inhibition, SICI) of transcranial magnetic stimuli (TMS) via a focal coil over the motor hand area of the left hemisphere at different times before and after the onset of relaxation. The amplitude of the motor-evoked potential (MEP) following a single or a pair of TMS pulses was measured in the right FDI and plotted relative to the onset of relaxation as estimated from the surface electromyogram (EMG) of the left FDI. MEPs were larger during contraction than after relaxation whereas SICI was absent during contraction and reappeared after relaxation. We found that in all subjects, the time course of MEP changes during relaxation was closely fitted by a Boltzmann sigmoidal curve which allowed us to estimate the mean MEP amplitudes as well as the ratio of the amplitudes after single or pairs of TMS pulses (i.e.%SICI) at any time in the task. The data showed that the amplitude of MEPs to single pulse TMS had started to decline at about the same time as the onset of EMG silence. Furthermore, the size of the MEPs evoked by paired pulses decreased up to 30 ms beforehand. The latter suggests that an increase in SICI occurs prior to the onset of MEP changes, and hence that increased cortical inhibition may play a role in suppressing corticospinal excitability during relaxation. A subsidiary experiment showed that the time relations of changes in SICI and MEP were unchanged by a period of 10 min training on the task.
机译:终止肌肉收缩与运动一样重要,是运动的一部分,但其作用机理尚未得到很好的了解。在本实验中,我们检查了八名健康受试者中皮质内抑制回路在终止第一背骨间骨肌(FDI)的20%最大等轴测收缩中的可能作用。受试者用双手同时执行任务,并通过聚焦线圈在左半球的运动手区域上接受单人或两人(3ms的刺激间隔以评估短间隔皮质内抑制,SICI)的经颅磁刺激(TMS)。在放松前后的不同时间。在右FDI中测量单个或一对TMS脉冲后的电机诱发电位(MEP)的幅度,并根据从左FDI的表面肌电图(EMG)估计的弛豫开始相对于其作图。收缩期间的MEP大于放松后的MEP,而收缩期间不存在SICI,而放松后又重新出现。我们发现,在所有受试者中,放松过程中MEP变化的时间过程都与玻耳兹曼S型曲线紧密拟合,这使我们能够估计平均MEP振幅以及单个或成对TMS脉冲后振幅的比率(即,% SICI)在任务中的任何时间。数据表明,与EMG沉默发作大约同时,MEP对单脉冲TMS的振幅开始下降。此外,由成对脉冲引起的MEP的大小事先减小了30 ms。后者提示SICI的增加是在MEP改变发生之前发生的,因此,皮质抑制作用的增强可能在放松过程中抑制皮质脊髓兴奋性发挥作用。一项辅助实验表明,经过10分钟的任务训练后,SICI和MEP变化的时间关系没有改变。

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