Microstimulation of Frontal Cortex Can Reorder a Remembered Spatial Sequence
Open Access
- 25 April 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Biology
- Vol. 4 (5) , e134
- https://doi.org/10.1371/journal.pbio.0040134
Abstract
Complex goal-directed behaviors extend over time and thus depend on the ability to serially order memories and assemble compound, temporally coordinated movements. Theories of sequential processing range from simple associative chaining to hierarchical models in which order is encoded explicitly and separately from sequence components. To examine how short-term memory and planning for sequences might be coded, we used microstimulation to perturb neural activity in the supplementary eye field (SEF) while animals held a sequence of two cued locations in memory over a short delay. We found that stimulation affected the order in which animals saccaded to the locations, but not the memory for which locations were cued. These results imply that memory for sequential order can be dissociated from that of its components. Furthermore, stimulation of the SEF appeared to bias sequence endpoints to converge toward a location in contralateral space, suggesting that this area encodes sequences in terms of their endpoints rather than their individual components.Keywords
This publication has 69 references indexed in Scilit:
- Decoding Continuous and Discrete Motor Behaviors Using Motor and Premotor Cortical EnsemblesJournal of Neurophysiology, 2004
- Supplementary Eye Field: Keeping an Eye on Eye MovementCurrent Biology, 2004
- Eye movement control by the cerebral cortexCurrent Opinion in Neurology, 2004
- Memory of Sequential Experience in the Hippocampus during Slow Wave SleepPublished by Elsevier ,2002
- Stimulating research on motor cortexNature Neuroscience, 2002
- Role of experience and oscillations in transforming a rate code into a temporal codeNature, 2002
- Eye fields in the frontal lobes of primatesBrain Research Reviews, 2000
- Role for supplementary motor area cells in planning several movements aheadNature, 1994
- Cortical microstimulation influences perceptual judgements of motion directionNature, 1990
- Computers, brains and the control of movementTrends in Neurosciences, 1982