Factors governing the adaptation of cells in area-17 of the cat visual cortex
- 1 September 1988
- journal article
- research article
- Published by Springer Nature in Biological Cybernetics
- Vol. 59 (4-5) , 229-236
- https://doi.org/10.1007/bf00332911
Abstract
Neurons in area 17 of the cat visual cortex adapt when stimulated by drifting patterns of optimal orientation, spatial frequency and temporal frequency (Ohzawa et al. 1982; Albrecht et al. 1984; Ohzawa et al. 1985). A component of this adaptation has been attributed to a contrast gain-control mechanism, rather than to neural fatigue, and results in enhanced differential sensitivity around the adapting contrast level (Ohzawa et al. 1982; Albrecht et al. 1984; Ohzawa et al. 1985). Experiments described here suggest that neural response rate, the directional selectivity of the cell, and the temporal frequency of the stimulus, are the principal determinants of adaptation, irrespective of other stimulus parameters such as contrast, velocity, or spatial frequency. The present results can nevertheless accommodate the results of previous studies of adaptation, and additionally provide scope for the resolution of apparent contradictions between results from psychophysical and neurophysiological studies of adaptation.This publication has 35 references indexed in Scilit:
- Temporal modulation of luminance adapts time constant of fly movement detectorsBiological Cybernetics, 1987
- Spatial contrast adaptation characteristics of neurones recorded in the cat's visual cortex.The Journal of Physiology, 1984
- Introduction to Statistical ModellingPublished by Springer Nature ,1983
- Striate cortex of monkey and cat: contrast response function.Journal of Neurophysiology, 1982
- Ordinal position of neurons in cat striate cortexJournal of Neurophysiology, 1979
- Adaptation to gratings: No compensatory advantages foundVision Research, 1976
- Sustained and transient neurones in the cat's retina and lateral geniculate nucleusThe Journal of Physiology, 1971
- Simultaneous Recording of Input and Output of Lateral Geniculate NeuronesNature New Biology, 1971
- On the existence of neurones in the human visual system selectively sensitive to the orientation and size of retinal imagesThe Journal of Physiology, 1969
- Inter-ocular Transfer of Movement After-effects during Pressure Blinding of the Stimulated EyeNature, 1963