Gaze Direction Modulates Finger Movement Activation Patterns in Human Cerebral Cortex
Open Access
- 15 November 1999
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 19 (22) , 10044-10052
- https://doi.org/10.1523/jneurosci.19-22-10044.1999
Abstract
We investigated whether gaze direction modified the pattern of finger movement activation in human cerebral cortex using functional magnetic resonance imaging (MRI). Participants performed a sequential finger-tapping task or made no finger movements while maintaining gaze in the direction of the moving hand (aligned conditions) or away from the location of the moving hand. Functional MR signals, measured in the hemisphere contralateral to the moving hand, revealed finger movement-related activation in primary motor cortex, lateral and medial premotor cortex, and a wide extent of the lateral superior and inferior parietal lobules. In each area, the extent of the finger movement activation increased when static gaze was more aligned with the moving hand compared to when gaze was directed away from the moving hand. These data suggest the existence of large-scale cortical networks related to finger actions and indicate that skeletomotor processing in the cerebral cortex is consistently modified by gaze direction signals.Keywords
This publication has 35 references indexed in Scilit:
- Reach Plans in Eye-Centered CoordinatesScience, 1999
- A Common Network of Functional Areas for Attention and Eye MovementsPublished by Elsevier ,1998
- Voluntary Attention Modulates fMRI Activity in Human MT–MSTNeuron, 1997
- Shared neural control of attentional shifts and eye movementsNature, 1996
- Cerebral activation covaries with movement rateNeuroReport, 1996
- Shared Neural Substrates Controlling Hand Movements in Human Motor CortexScience, 1995
- Coding of Visual Space by Premotor NeuronsScience, 1994
- Processing strategies for time‐course data sets in functional mri of the human brainMagnetic Resonance in Medicine, 1993
- Corticocortical connections of anatomically and physiologically defined subdivisions within the inferior parietal lobuleJournal of Comparative Neurology, 1990
- OPTIC ATAXIA: A SPECIFIC DISRUPTION IN VISUOMOTOR MECHANISMSBrain, 1988