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Contrast dependency and prior expectations in human speed perception
- Source :
- Sotiropoulos, G, Seitz, A R & Series, P 2014, ' Contrast dependency and prior expectations in human speed perception ', Vision Research, vol. 97, no. 0, pp. 16-23 . https://doi.org/10.1016/j.visres.2014.01.012, Vision research
- Publication Year :
- 2014
- Publisher :
- Elsevier BV, 2014.
-
Abstract
- The perceived speed of moving objects has long been known to depend on image contrast. Lowering the contrast of first-order motion stimuli typically decreases perceived speed – the well-known “Thompson effect”. It has been suggested that contrast-dependent biases are the result of optimal inference by the visual system, whereby unreliable sensory information is combined with prior beliefs. The Thompson effect is thought to result from the prior belief that objects move slowly (in Bayesian terminology, a “slow speed prior”). However, there is some evidence that the Thompson effect is attenuated or even reversed at higher speeds. Does the effect of contrast on perceived speed depend on absolute speed and what does this imply for Bayesian models with a slow speed prior? We asked subjects to compare the speeds of simultaneously presented drifting gratings of different contrasts. At low contrasts (3–15%), we found that the Thompson effect was attenuated at high speeds: at 8 and 12deg/s, perceived speed increased less with contrast than at 1 and 4deg/s; however, at higher contrasts (15–95%), the situation was reversed. A semi-parametric Bayesian model was used to extract the subjects’ speed priors and was subsequently improved by combining it with a model of speed tuning. These novel findings regarding the dual, contrast-dependent effect of high speeds help reconcile existing conflicting literature and suggest that physiologically plausible mechanisms of representation of speed in the visual cortex may need to be incorporated into Bayesian models to account for certain subtleties of human speed perception.
- Subjects :
- Adult
Bayesian probability
Motion Perception
Motion perception
Visual psychophysics
Bayesian inference
Medical and Health Sciences
Article
Motion (physics)
Contrast Sensitivity
Models
Clinical Research
Speed prior
Prior probability
Psychophysics
Humans
Bayesian models
Analysis of Variance
Communication
Models, Statistical
business.industry
Psychology and Cognitive Sciences
Contrast (statistics)
Bayes Theorem
Experimental Psychology
Statistical
Contrast
Sensory Systems
Ophthalmology
Psychology
business
Photic Stimulation
Cognitive psychology
Subjects
Details
- ISSN :
- 00426989
- Volume :
- 97
- Database :
- OpenAIRE
- Journal :
- Vision Research
- Accession number :
- edsair.doi.dedup.....bfe86100f3737328b6a53a6c013fa3c3