A Competitive-Layer Model for Feature Binding and Sensory Segmentation
- 1 February 2001
- journal article
- Published by MIT Press in Neural Computation
- Vol. 13 (2) , 357-387
- https://doi.org/10.1162/089976601300014574
Abstract
We present a recurrent neural network for feature binding and sensory segmentation: the competitive-layer model (CLM). The CLM uses topo-graphically structured competitive and cooperative interactions in a layered network to partition a set of input features into salient groups. The dynamics is formulated within a standard additive recurrent network with linear threshold neurons. Contextual relations among features are coded by pairwise compatibilities, which define an energy function to be minimized by the neural dynamics. Due to the usage of dynamical winner-take-all circuits, the model gains more flexible response properties than spin models of segmentation by exploiting amplitude information in the grouping process. We prove analytic results on the convergence and stable attractors of the CLM, which generalize earlier results on winner-take-all networks, and incorporate deterministic annealing for robustness against local minima. The piecewise linear dynamics of the CLM allows a linear eigensubspace analysis, which we use to analyze the dynamics of binding in conjunction with annealing. For the example of contour detection, we show how the CLM can integrate figure-ground segmentation and grouping into a unified model.Keywords
This publication has 49 references indexed in Scilit:
- Contour Fragment Grouping and Shared, Simple OccludersComputer Vision and Image Understanding, 1999
- Modelling the perceptual segregation of double vowels with a network of neural oscillatorsNeural Networks, 1997
- Data Clustering Using a Model Granular MagnetNeural Computation, 1997
- Lyapunov Functions for Neural Nets with Nondifferentiable Input-Output CharacteristicsNeural Computation, 1997
- Recurrent Excitation in Neocortical CircuitsScience, 1995
- Theory of orientation tuning in visual cortex.Proceedings of the National Academy of Sciences, 1995
- Bayesian Computation and Stochastic SystemsStatistical Science, 1995
- Oscillatory and non-oscillatory synchronizations in the visual cortex and their possible roles in associations of visual featuresPublished by Elsevier ,1994
- Contour integration by the human visual system: Evidence for a local “association field”Vision Research, 1993
- Computing with Arrays of Coupled Oscillators: An Application to Preattentive Texture DiscriminationNeural Computation, 1990