Figure—Ground Segregation in a Recurrent Network Architecture
- 15 May 2002
- journal article
- Published by MIT Press in Journal of Cognitive Neuroscience
- Vol. 14 (4) , 525-537
- https://doi.org/10.1162/08989290260045756
Abstract
Here we propose a model of how the visual brain segregates textured scenes into figures and background. During texture segregation, locations where the properties of texture elements change abruptly are assigned to boundaries, whereas image regions that are relatively homogeneous are grouped together. Boundary detection and grouping of image regions require different connection schemes, which are accommodated in a single network architecture by implementing them in different layers. As a result, all units carry signals related to boundary detection as well as grouping of image regions, in accordance with cortical physiology. Boundaries yield an early enhancement of network responses, but at a later point, an entire figural region is grouped together, because units that respond to it are labeled with enhanced activity. The model predicts which image regions are preferentially perceived as figure or as background and reproduces the spatio-temporal profile of neuronal activity in the visual cortex during texture segregation in intact animals, as well as in animals with cortical lesions.Keywords
This publication has 60 references indexed in Scilit:
- Figure-ground organization and object recognition processes: An interactive account.Journal of Experimental Psychology: Human Perception and Performance, 1998
- Cue-dependent deficits in grating orientation discrimination after V4 lesions in macaquesVisual Neuroscience, 1996
- Visual cortical mechanisms detecting focal orientation discontinuitiesNature, 1995
- Lateral Interactions in Primary Visual Cortex: A Model Bridging Physiology and PsychophysicsScience, 1995
- Visual latencies in areas V1 and V2 of the macaque monkeyVisual Neuroscience, 1995
- Visual attention and objects: One versus two or convex versus concave?Journal of Experimental Psychology: Human Perception and Performance, 1994
- Neural dynamics of motion perception: Direction fields, apertures, and resonant groupingPerception & Psychophysics, 1993
- Feature analysis and the role of similarity in preattentive visionPerception & Psychophysics, 1992
- Display organization and the detection of horizontal line segmentsPerception & Psychophysics, 1989
- Neural dynamics of brightness perception: Features, boundaries, diffusion, and resonancePerception & Psychophysics, 1984