Time course of corticospinal excitability in reaction time and self‐paced movements
- 1 September 1998
- journal article
- Published by Wiley in Annals of Neurology
- Vol. 44 (3) , 317-325
- https://doi.org/10.1002/ana.410440306
Abstract
We used transcranial magnetic stimulation (TMS) to study the time course of corticospinal excitability before and after brisk thumb abduction movements, either in a simple reaction time (RT) paradigm or self-paced. Premovement increase in corticospinal excitability began about 20 msec earlier for self-paced compared with simple RT movements. For both simple RT and self-paced movements after electromyographic (EMG) offset, there was a first period of increased excitability from 0 to 100 msec, followed by a second period from 100 to 160 msec. Corticospinal excitability was decreased from about 500 to 1,000 msec after EMG offset for both types of movements. Our results show that motor preparation that begins 1.5 to 2 seconds before self-paced movement is not associated with increased corticospinal excitability. The first phase of increased corticospinal excitability after EMG offset may be due to activity of motor cortex neuron subthreshold for activating spinal motor neurons, and the second phase may reflect a subthreshold second agonist burst. The period of decreased corticospinal excitability after movement corresponds to the onset of event-related synchronization (ERS) of electroencephalographic signals in the 20-Hz band, and supports the hypothesis that ERS may be related to an inactive, idling state of the motor cortex.Keywords
This publication has 41 references indexed in Scilit:
- Post-movement beta synchronization. A correlate of an idling motor area?Electroencephalography and Clinical Neurophysiology, 1996
- Functional Segregation of Movement-Related Rhythmic Activity in the Human BrainNeuroImage, 1995
- Cortical magnetic and electric fields associated with voluntary finger movementsBrain Topography, 1994
- EFFECTS OF FOCAL TRANSCRANIAL MAGNETIC STIMULATION ON SIMPLE REACTION TIME TO ACOUSTIC, VISUAL AND SOMATOSENSORY STIMULIBrain, 1992
- MOVEMENT-RELATED POTENTIALS RECORDED FROM SUPPLEMENTARY MOTOR AREA AND PRIMARY MOTOR AREABrain, 1992
- Topography of Scalp-Recorded Motor Potentials in Human Finger MovementsJournal Of Clinical Neurophysiology, 1991
- Recording of movement‐related potentials from the human cortexAnnals of Neurology, 1988
- Different sites of action of electrical and magnetic stimulation of the human brainNeuroscience Letters, 1987
- Amplitude et variabilité des réflexes monosynaptiques avant un mouvement volontairePhysiology & Behavior, 1971
- Response of Neurones in the Motor Cortex during Performance of a Simple Repetitive Arm MovementNature, 1968