Spatiotemporal mapping of cortical activity accompanying voluntary movements using an event‐related beamforming approach
- 21 July 2005
- journal article
- Published by Wiley in Human Brain Mapping
- Vol. 27 (3) , 213-229
- https://doi.org/10.1002/hbm.20178
Abstract
We describe a novel spatial filtering approach to the localization of cortical activity accompanying voluntary movements. The synthetic aperture magnetometry (SAM) minimum-variance beamformer algorithm was used to compute spatial filters three-dimensionally over the entire brain from single trial neuromagnetic recordings of subjects performing self-paced index finger movements. Images of instantaneous source power ("event-related SAM") computed at selected latencies revealed activation of multiple cortical motor areas prior to and following left and right index finger movements in individual subjects, even in the presence of low-frequency noise (e.g., eye movements). A slow premovement motor field (MF) reaching maximal amplitude approximately 50 ms prior to movement onset was localized to the hand area of contralateral precentral gyrus, followed by activity in the contralateral postcentral gyrus at 40 ms, corresponding to the first movement-evoked field (MEFI). A novel finding was a second activation of the precentral gyrus at a latency of approximately 150 ms, corresponding to the second movement-evoked field (MEFII). Group averaging of spatially normalized images indicated additional premovement activity in the ipsilateral precentral gyrus and the left inferior parietal cortex for both left and right finger movements. Weaker activations were also observed in bilateral premotor areas and the supplementary motor area. These results show that event-related beamforming provides a robust method for studying complex patterns of time-locked cortical activity accompanying voluntary movements, and offers a new approach for the localization of multiple cortical sources derived from neuromagnetic recordings in single subject and group data.Keywords
This publication has 71 references indexed in Scilit:
- Task-dependent oscillations during unimanual and bimanual movements in the human primary motor cortex and SMA studied with magnetoencephalographyNeuroImage, 2005
- Improving permutation test power for group analysis of spatially filtered MEG dataNeuroImage, 2004
- Movement preparation in self-initiated versus externally triggered movements: an event-related fMRI-studyNeuroscience Letters, 2004
- Temporal dynamics of ipsilateral and contralateral motor activity during voluntary finger movementHuman Brain Mapping, 2004
- An integrative MEG–fMRI study of the primary somatosensory cortex using cross-modal correspondence analysisNeuroImage, 2004
- Magnetoencephalography: the art of finding a needle in a haystackPhysica C: Superconductivity and its Applications, 2002
- Functional anatomy of execution, mental simulation, observation, and verb generation of actions: A meta-analysisHuman Brain Mapping, 2000
- FMRI and PET of Self-Paced Finger Movement: Comparison of Intersubject Stereotaxic Averaged DataNeuroImage, 1999
- Localization of the motor hand area to a knob on the precentral gyrus. A new landmarkBrain, 1997
- Motor cortex activity and predicting side of movement: neural network and dipole analysis of pre-movement magnetic fieldsNeuroscience Letters, 1995