Salmelin R, Forss N, Knuutila J, Hari R
Low Temperature Laboratory, Helsinki University of Technology, Espoo, Finland.
Electroencephalogr Clin Neurophysiol. 1995 Dec;95(6):444-52. doi: 10.1016/0013-4694(95)00193-x.
We recorded cortical magnetic signals, simultaneously over the whole scalp, from 6 healthy subjects during 3 motor tasks to track the varying proportion of contra- vs. ipsilateral activation. The subjects performed self-paced index finger flexions, simultaneous flexion of 4 fingers, and a sequence of rapid digit movements in different sessions. Index finger and 4-finger movements were associated with phasic bilateral dampening of spontaneous 10 and 20 Hz rhythms along the central sulcus, starting approximately 1 sec before the movement in the contralateral hemisphere. A rebound occurred within 1 sec after the index finger and 4-finger flexions; the rapid finger movements resulted in a persistent blocking of the rhythms. Averaging with respect to movement onset showed a slow bilateral frontal readiness field starting about 0.5 sec prior to motion onset. It was followed, within 200 msec after movement onset, by phasic movement-evoked fields (MEFs) which were bilateral during the tasks involving several fingers. The contra- vs. ipsilateral MEF amplitude ratio C/I decreased from 4.0 during index finger movements to 0.6 during rapid finger flexions, reflecting the enhanced activation of the ipsilateral primary somatomotor cortex with increasing complexity of movement.
我们在6名健康受试者进行3项运动任务期间,同时在整个头皮上记录皮质磁信号,以追踪对侧与同侧激活的不同比例。受试者在不同时段进行了自主节奏的食指弯曲、4指同时弯曲以及一系列快速手指运动。食指和4指运动与中央沟沿线自发10Hz和20Hz节律的双侧阶段性抑制有关,在对侧半球运动开始前约1秒开始。食指和4指弯曲后1秒内出现反弹;快速手指运动导致节律持续受阻。相对于运动开始进行平均,显示出在运动开始前约0.5秒开始出现缓慢的双侧额叶准备场。在运动开始后200毫秒内,接着是阶段性运动诱发场(MEF),在涉及多个手指的任务中,MEF是双侧的。对侧与同侧MEF振幅比C/I从食指运动时的4.0降至快速手指弯曲时的0.6,反映出随着运动复杂性增加,同侧初级躯体运动皮层的激活增强。