Existing motor state is favored at the expense of new movement during 13-35 Hz oscillatory synchrony in the human corticospinal system.
Oscillations in local field potentials in the beta-frequency band (13-35 Hz) are a pervasive feature of human and nonhuman primate motor cortical areas. However, the function of such synchronous activity across populations of neurons remains unknown. Here, we test the hypothesis that beta activity m...
主要な著者: | Gilbertson, T, Lalo, E, Doyle, L, Di Lazzaro, V, Cioni, B, Brown, P |
---|---|
フォーマット: | Journal article |
言語: | English |
出版事項: |
2005
|
類似資料
-
Corrective movements in response to displacements in visual feedback are more effective during periods of 13-35 Hz oscillatory synchrony in the human corticospinal system.
著者:: Androulidakis, A, 等
出版事項: (2006) -
Anticipatory changes in beta synchrony in the human corticospinal system and associated improvements in task performance.
著者:: Androulidakis, A, 等
出版事項: (2007) -
Complexity of subthalamic 13-35 Hz oscillatory activity directly correlates with clinical impairment in patients with Parkinson's disease.
著者:: Chen, C, 等
出版事項: (2010) -
Phasic increases in cortical beta activity are associated with alterations in sensory processing in the human.
著者:: Lalo, E, 等
出版事項: (2007) -
Reduction in subthalamic 8-35 Hz oscillatory activity correlates with clinical improvement in Parkinson's disease.
著者:: Kühn, A, 等
出版事項: (2006)