Relationship between intracerebral gamma oscillations and slow potentials in the human sensorimotor cortex
- 14 August 2006
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 24 (3) , 947-954
- https://doi.org/10.1111/j.1460-9568.2006.04876.x
Abstract
International audienceChanges in sensorimotor rhythms (mu, beta and gamma) and movement-related cortical potentials (MRCPs) are both generated principally by the contralateral sensorimotor areas during the execution of self-paced movement. They appear to reflect movement control mechanisms, which remain partially unclear. With the aim of better understanding their sources and significance, we recorded MRCPs and sensorimotor rhythms during and after self-paced movement using intracerebral electrodes in eight epileptic subjects investigated by stereoelectroencephalography. The results showed that: (i) there is a strong spatial relationship between the late components of movement--the so-called motor potential (MP) and post-movement complex (PMc)--and gamma event-related synchronization (ERS) within the 40-60 Hz band, as the MP/PMc always occurred in contacts displaying gamma ERS (the primary sensorimotor areas), whereas mu and beta reactivities were more diffuse; and (ii) MPs and PMc are both generated by the primary motor and somatosensory areas, but with distinct sources. Hence, this could mean that kinesthesic sensory afferences project to neurons other than those firing during the pyramidal tract volley. The PMc and low gamma ERS represent two electrophysiological facets of kinesthesic feedback from the joints and muscles involved in the movement to the sensorimotor cortex. It could be suggested that gamma oscillations within the 40-60 Hz band could serve to synchronize the activities of the various neuronal populations involved in control of the ongoing movementKeywords
This publication has 36 references indexed in Scilit:
- Neuromagnetic gamma-band activity in the primary and secondary somatosensory areasNeuroReport, 2003
- Human Movement-Related Potentials vs Desynchronization of EEG Alpha Rhythm: A High-Resolution EEG StudyNeuroImage, 1999
- Functional mapping of human sensorimotor cortex with electrocorticographic spectral analysis. II. Event-related synchronization in the gamma bandBrain, 1998
- Two different areas within the primary motor cortex of manNature, 1996
- Spatiotemporal study of bereitschaftspotential and Event-Related Desynchronization during voluntary movement in Parkinson's diseaseBrain Topography, 1994
- Étude spatiotemporelle des désynchronisations liées à l'événement au cours d'une activité motrice autocommandéeNeurophysiologie Clinique, 1993
- Invasive Recording of Movement-Related Cortical Potentials in HumansJournal Of Clinical Neurophysiology, 1992
- MOVEMENT-RELATED POTENTIALS RECORDED FROM SUPPLEMENTARY MOTOR AREA AND PRIMARY MOTOR AREABrain, 1992
- Voluntary finger movement in man: Cerebral potentials and theoryBiological Cybernetics, 1976
- Distribution of readiness potential, pre-motion positivity, and motor potential of the human cerebral cortex preceding voluntary finger movementsExperimental Brain Research, 1969