Stereoscopic Vision in the Absence of the Lateral Occipital Cortex
Author(s) -
Jenny C. A. Read,
Graeme Phillipson,
Ignacio SerranoPedraza,
A. David Milner,
Andrew Parker
Publication year - 2010
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0012608
Subject(s) - visual cortex , stereopsis , vision for perception and vision for action , stereoscopy , visual field , occipital lobe , neuroscience , binocular disparity , depth perception , visual system , dorsum , binocular vision , cortex (anatomy) , visual agnosia , posterior parietal cortex , computer vision , binocular neurons , anatomy , biology , artificial intelligence , computer science , perception
Both dorsal and ventral cortical visual streams contain neurons sensitive to binocular disparities, but the two streams may underlie different aspects of stereoscopic vision. Here we investigate stereopsis in the neurological patient D.F., whose ventral stream, specifically lateral occipital cortex, has been damaged bilaterally, causing profound visual form agnosia. Despite her severe damage to cortical visual areas, we report that DF's stereo vision is strikingly unimpaired. She is better than many control observers at using binocular disparity to judge whether an isolated object appears near or far, and to resolve ambiguous structure-from-motion. DF is, however, poor at using relative disparity between features at different locations across the visual field. This may stem from a difficulty in identifying the surface boundaries where relative disparity is available. We suggest that the ventral processing stream may play a critical role in enabling healthy observers to extract fine depth information from relative disparities within one surface or between surfaces located in different parts of the visual field.
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