感觉门控
门控
体感系统
神经科学
运动前皮质
感觉系统
辅助电机区
心理学
运动皮层
运动表象
感觉皮层
体感诱发电位
电生理学
脑电图
医学
解剖
功能磁共振成像
脑-机接口
背
刺激
作者
Yosuke Fujiwara,Osamu Takahashi,Junichi Ushiba
出处
期刊:Neuroreport
[Ovid Technologies (Wolters Kluwer)]
日期:2022-11-14
卷期号:34 (1): 9-16
被引量:1
标识
DOI:10.1097/wnr.0000000000001850
摘要
To reveal that nonprimary motor-related areas located in the upper stream of the sensorimotor area are associated with self-regulated local electroencephalogram changes in the sensorimotor area during motor tasks.Among healthy participants, we measured the gating of somatosensory-evoked potentials (SEPs) in nonprimary motor-related areas and the sensorimotor area, and event-related desynchronisation, which reflects the excitability changes of the neurons localised in the sensorimotor area during motor execution and imagery.We confirmed significant correlations between beta-band event-related desynchronisation and the somatosensory-evoked potential gating of frontal N30 during motor imagery and execution (motor imagery: r = 0.723; P < 0.05; motor execution: r = 0.873; P < 0.05), and nonsignificant correlations between beta-band event-related desynchronisation and the somatosensory-evoked potential gating of N20 (motor imagery: r = 0.079; P > 0.05; motor execution: r = 0.449; P > 0.05).The N30 gating of SEPs, with which the beta-band event-related desynchronisation was associated, implies that they modulate sensory input to the supplementary motor area/premotor cortex during motor tasks, the beta-band self-regulated local electroencephalogram changes in the sensorimotor area related sensory input to the supplementary motor area/premotor cortex, and not to primary sensory area derived from N20 gating. This study suggests that some motor commands are derived from sensory gating in the supplementary motor area/premotor cortex.
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