Contour statistics in natural images: Grouping across occlusions
- 1 January 2009
- journal article
- Published by Maximum Academic Press in Visual Neuroscience
- Vol. 26 (1) , 109-121
- https://doi.org/10.1017/s0952523808080875
Abstract
Correctly interpreting a natural image requires dealing properly with the effects of occlusion, and hence, contour grouping across occlusions is a major component of many natural visual tasks. To better understand the mechanisms of contour grouping across occlusions, we (a) measured the pair-wise statistics of edge elements from contours in natural images, as a function of edge element geometry and contrast polarity, (b) derived the ideal Bayesian observer for a contour occlusion task where the stimuli were extracted directly from natural images, and then (c) measured human performance in the same contour occlusion task. In addition to discovering new statistical properties of natural contours, we found that naïve human observers closely parallel ideal performance in our contour occlusion task. In fact, there was no region of the four-dimensional stimulus space (three geometry dimensions and one contrast dimension) where humans did not closely parallel the performance of the ideal observer (i.e., efficiency was approximately constant over the entire space). These results reject many other contour grouping hypotheses and strongly suggest that the neural mechanisms of contour grouping are tightly related to the statistical properties of contours in natural images.Keywords
This publication has 23 references indexed in Scilit:
- Visual Perception and the Statistical Properties of Natural ScenesAnnual Review of Psychology, 2008
- Bayesian contour extrapolation: Geometric determinants of good continuationVision Research, 2007
- Learning to detect natural image boundaries using local brightness, color, and texture cuesPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2004
- Interpolation processes in the visual perception of objectsNeural Networks, 2003
- Ecological statistics of Gestalt laws for the perceptual organization of contoursJournal of Vision, 2002
- Bayesian contour integrationPerception & Psychophysics, 2001
- A theory of visual interpolation in object perceptionCognitive Psychology, 1991
- Trace inference, curvature consistency, and curve detectionPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1989
- Neural dynamics of form perception: Boundary completion, illusory figures, and neon color spreading.Psychological Review, 1985
- Neural dynamics of form perception: Boundary completion, illusory figures, and neon color spreading.Psychological Review, 1985