Author
Listed:
- Jiawei Zhou
- Rong Liu
- Yifeng Zhou
- Robert F Hess
Abstract
Phase information is a fundamental aspect of visual stimuli. However, the nature of the binocular combination of stimuli defined by modulations in contrast, so-called second-order stimuli, is presently not clear. To address this issue, we measured binocular combination for first- (luminance modulated) and second-order (contrast modulated) stimuli using a binocular phase combination paradigm in seven normal adults. We found that the binocular perceived phase of second-order gratings depends on the interocular signal ratio as has been previously shown for their first order counterparts; the interocular signal ratios when the two eyes were balanced was close to 1 in both first- and second-order phase combinations. However, second-order combination is more linear than previously found for first-order combination. Furthermore, binocular combination of second-order stimuli was similar regardless of whether the carriers in the two eyes were correlated, anti-correlated, or uncorrelated. This suggests that, in normal adults, the binocular phase combination of second-order stimuli occurs after the monocular extracting of the second-order modulations. The sensory balance associated with this second-order combination can be obtained from binocular phase combination measurements.
Suggested Citation
Jiawei Zhou & Rong Liu & Yifeng Zhou & Robert F Hess, 2014.
"Binocular Combination of Second-Order Stimuli,"
PLOS ONE, Public Library of Science, vol. 9(1), pages 1-7, January.
Handle:
RePEc:plo:pone00:0084632
DOI: 10.1371/journal.pone.0084632
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