Microsaccadic eye movements and firing of single cells in the striate cortex of macaque monkeys
Top Cited Papers
- 1 March 2000
- journal article
- Published by Springer Nature in Nature Neuroscience
- Vol. 3 (3) , 251-258
- https://doi.org/10.1038/72961
Abstract
When viewing a stationary object, we unconsciously make small, involuntary eye movements or 'microsaccades'. If displacements of the retinal image are prevented, the image quickly fades from perception. To understand how microsaccades sustain perception, we studied their relationship to the firing of cells in primary visual cortex (V1). We tracked eye movements and recorded from V1 cells as macaque monkeys fixated. When an optimally oriented line was centered over a cell's receptive field, activity increased after microsaccades. Moreover, microsaccades were better correlated with bursts of spikes than with either single spikes or instantaneous firing rate. These findings may help explain maintenance of perception during normal visual fixation.Keywords
This publication has 25 references indexed in Scilit:
- Visual cortex neurons in monkey and cat: Effect of contrast on the spatial and temporal phase transfer functionsVisual Neuroscience, 1995
- Flicker distorts visual space constancyVision Research, 1991
- Short-Term Synaptic PlasticityAnnual Review of Neuroscience, 1989
- Implantation of magnetic search coils for measurement of eye position: An improved methodVision Research, 1980
- The influence of stimulus movements on perception in parafoveal stabilized visionVision Research, 1974
- Miniature Eye MovementScience, 1973
- Normal fixation of eccentric targets*Journal of the Optical Society of America, 1973
- Visual Cortex Neurons: Response to Stimuli during Rapid Eye MovementsScience, 1968
- Vision with a Stabilized Retinal ImageNature, 1952
- Visual perception during eye movement.Psychological Review, 1900