Existence and Implications of a Tilted Binocular Disparity Space
- 1 April 1977
- journal article
- Published by SAGE Publications in Perception
- Vol. 6 (2) , 161-164
- https://doi.org/10.1068/p060161
Abstract
The existence of a tilted binocular disparity space was experimentally established. The results of the experiment showed that a texture surface which under binocular viewing appears to be oriented vertically and perpendicular to the line of sight in fact is tilted such that the portions of the texture surface above and below fixation incline toward and away from the observer, respectively. Under monocular viewing such a discrepancy between apparent and objective vertical tilt is not observed. This suggests that under binocular viewing the cortical representations of the upper and lower visual hemifields are biased toward uncrossed and crossed disparities, respectively. The tilted binocular disparity space is explained in terms of an experientially induced disparity gradient effected during development of the binocular system.Keywords
This publication has 10 references indexed in Scilit:
- Binocular-Disparity-Dependent Upper—Lower Hemifield Anisotropy and Left—Right Hemifield Isotropy as Revealed by Dynamic Random-Dot StereogramsPerception, 1976
- Cortical Effect of Early Selective Exposure to Diagonal LinesScience, 1975
- Squint and the development of binocularity in humansNature, 1975
- Dynamic Random-Dot Stereograms Reveal Up-Down Anisotropy and Left-Right Isotropy Between Cortical HemifieldsScience, 1975
- The effect of visual experience on the development of stimulus specificity by kitten cortical neuronesThe Journal of Physiology, 1974
- Shift in Binocular Disparity Causes Compensatory Change in the Cortical Structure of KittensScience, 1971
- Development of the Brain depends on the Visual EnvironmentNature, 1970
- Visual Experience Modifies Distribution of Horizontally and Vertically Oriented Receptive Fields in CatsScience, 1970
- Stereoscopic Vision in Macaque Monkey: Cells sensitive to Binocular Depth in Area 18 of the Macaque Monkey CortexNature, 1970
- The neural mechanism of binocular depth discriminationThe Journal of Physiology, 1967