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皮层脑电图(ECoG)和脑电图(EEG)上的事件相关去同步化和运动相关皮层电位。

Event-related desynchronization and movement-related cortical potentials on the ECoG and EEG.

作者信息

Toro C, Deuschl G, Thatcher R, Sato S, Kufta C, Hallett M

机构信息

Human Motor Control Section, Medical Neurology Branch, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892.

出版信息

Electroencephalogr Clin Neurophysiol. 1994 Oct;93(5):380-9. doi: 10.1016/0168-5597(94)90126-0.

Abstract

Event-related desynchronization (ERD) 2.0 sec before and 1.0 sec after movement in the frequency bands of 8-10, 10-12, 12-20 and 20-30 Hz and movement-related cortical potentials (MRCPs) to self-paced movements were studied from subdural recordings over the central region in 3 patients, and from scalp-recorded EEGs in 20 normal volunteers. In direct cortical recordings, the peak ERD response and peak MRCP amplitude to self-paced finger movements were maximal over recording sites in the contralateral hand motor representations. The topography and time of onset of the ERD response to finger and foot movements suggest that the ERD responses in the 8-10 Hz and 10-12 Hz bands are more somatotopically restricted than the responses in the higher frequency bands. The power recovery and subsequent overshoot in the different frequency bands occurred in an orderly fashion with the faster frequencies recovering earlier. The ERD responses on the scalp-recorded EEGs were of lower magnitude and more widely distributed than those occurring on the subdural recordings. Across the population, there was no relation between the magnitude of the ERD response in any of the frequency bands studied and the peak amplitude of the negative slope (pNS') and the frontal peak of the motor potential (fpMP) of the MRCPs. MRCPs and ERD responses originate in similar cortical regions and share some common timing features, but the magnitude and spatial distribution of the two responses appear to be independent of each other, which suggests that the physiological mechanisms governing these two events are different and may represent different aspects of motor cortex activation. Differences in the timing and topographical features of the ERD responses in the various frequency bands also suggest a distinct functional significance for the various spectral components of the electrical activity in the motor cortex.

摘要

在3例患者的中央区硬膜下记录以及20名正常志愿者的头皮脑电图记录中,研究了8 - 10Hz、10 - 12Hz、12 - 20Hz和20 - 30Hz频段在运动前2.0秒和运动后1.0秒的事件相关去同步化(ERD)以及自定节奏运动的运动相关皮层电位(MRCPs)。在直接皮层记录中,自定节奏手指运动的峰值ERD反应和峰值MRCP振幅在对侧手部运动代表区的记录部位最大。手指和足部运动的ERD反应的地形图和起始时间表明,8 - 10Hz和10 - 12Hz频段的ERD反应比高频段的反应在躯体定位上更受限制。不同频段的功率恢复和随后的过冲以有序的方式发生,频率越快恢复越早。头皮脑电图记录上的ERD反应幅度比硬膜下记录上的反应幅度小且分布更广。在整个人群中,所研究的任何频段的ERD反应幅度与MRCPs的负斜率峰值(pNS')和运动电位的额部峰值(fpMP)之间均无关联。MRCPs和ERD反应起源于相似的皮层区域并具有一些共同的时间特征,但这两种反应的幅度和空间分布似乎相互独立,这表明控制这两个事件的生理机制不同,可能代表了运动皮层激活的不同方面。不同频段ERD反应的时间和地形特征差异也表明运动皮层电活动的各种频谱成分具有独特的功能意义。

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