The activity in human areas V1/V2, V3, and V5 during the perception of coherent and incoherent motion.

Details

Serval ID
serval:BIB_BC95C7D63762
Type
Article: article from journal or magazin.
Collection
Publications
Title
The activity in human areas V1/V2, V3, and V5 during the perception of coherent and incoherent motion.
Journal
Neuroimage
Author(s)
McKeefry D.J., Watson J.D., Frackowiak R.S., Fong K., Zeki S.
ISSN
1053-8119 (Print)
ISSN-L
1053-8119
Publication state
Published
Issued date
1997
Volume
5
Number
1
Pages
1-12
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't Publication Status: ppublish
Abstract
We have used the technique of positron emission tomography to study and compare the cortical activity produced when humans view a pattern of small squares moving incoherently with respect to one another and when the same pattern moves coherently and unidirectionally. A stationary version of the stimulus acted as a control. Our choice of paradigm was inspired by psychophysical models and physiological studies in the macaque monkey which show that directionally selective cells in V5 respond optimally to unidirectional coherent motion, whereas those of V1 respond to motion within their receptive fields, regardless of the motion in surrounding parts. Our results show that human V1/V2, V3, and V5 are all activated by both types of motion stimuli. Incoherent motion, however, proved to be more effective than coherent motion in activating V1/V2 and V5. Thus the higher perceptual salience of unidirectional coherent motion in comparison to incoherent motion is not reflected by any increased activation of human area V5.
Keywords
Adult, Attention/physiology, Brain Mapping/instrumentation, Female, Humans, Image Processing, Computer-Assisted/instrumentation, Male, Motion Perception/physiology, Orientation/physiology, Pattern Recognition, Visual/physiology, Psychophysics, Regional Blood Flow/physiology, Tomography, Emission-Computed/instrumentation, Visual Cortex/blood supply, Visual Cortex/physiology, Visual Pathways/blood supply, Visual Pathways/physiology
Pubmed
Web of science
Create date
16/09/2011 17:59
Last modification date
20/08/2019 16:30
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