Lalo Elodie, Gilbertson Thomas, Doyle Louise, Di Lazzaro Vincenzo, Cioni Beatrice, Brown Peter
Sobell Department of Motor Neuroscience and Movement Disorders, Institute of Neurology, Queen Square, London, WC1N 3BG, UK.
Exp Brain Res. 2007 Feb;177(1):137-45. doi: 10.1007/s00221-006-0655-8. Epub 2006 Sep 14.
Oscillatory activity in the beta (beta)-frequency band (13-35 Hz) can be recorded over the sensorimotor cortex in humans. It is coherent with electromyographic activity (EMG) during tonic contraction, but whether the cortical beta-oscillations are primarily motor or sensorimotor in function remains unclear. We tested the hypothesis that cortical beta-activity is associated with an up-regulation of sensory inputs that may be relevant to the organization of the motor response. We recorded cortical somatosensory potentials (SEPs) elicited by electrical stimuli to the median nerve at the wrist triggered by increases of electroencephalographic (EEG) beta-activity in the contralateral fronto-central EEG and compared these to SEPs presented at random intervals. The involvement of motor cortex in the triggering EEG activity was confirmed by a simultaneous elevation of cortico-spinal synchrony in the beta-band. The negative cortical evoked potential peaking at 20 ms and the positive evoked potential peaking at 30 ms after median nerve shocks were increased in size when elicited after phasic increases in beta-activity. The functional coupling of sensory and motor cortices in the beta-band was confirmed in recordings of electrocorticographic activity in two patients with chronic pain syndromes, suggesting a means by which beta-activity may simultaneously influence cortical sensory processing, motor output and promote sensory-motor interaction.
在人类的感觉运动皮层可记录到β(贝塔)频段(13 - 35赫兹)的振荡活动。在强直性收缩期间,它与肌电图活动(EMG)相关,但皮层β振荡在功能上主要是运动性的还是感觉运动性的仍不清楚。我们检验了这样一个假设,即皮层β活动与感觉输入的上调有关,而感觉输入可能与运动反应的组织有关。我们记录了由对腕部正中神经的电刺激所引发的皮层体感诱发电位(SEP),该电刺激由对侧额中央脑电图中脑电图(EEG)β活动的增加触发,并将其与随机间隔呈现的SEP进行比较。β频段中皮质脊髓同步性的同时升高证实了运动皮层参与触发脑电图活动。当在β活动的阶段性增加之后引发时,正中神经电击后20毫秒达到峰值的负性皮层诱发电位和30毫秒达到峰值的正性诱发电位的幅度增大。在两名患有慢性疼痛综合征患者的皮层电图活动记录中证实了β频段中感觉和运动皮层的功能耦合,这表明β活动可能同时影响皮层感觉处理、运动输出并促进感觉运动相互作用的一种方式。