Dynamical characteristics common to neuronal competition models.
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Nava Rubin | Rodica Curtu | Asya Shpiro | John Rinzel | J. Rinzel | N. Rubin | R. Curtu | Asya Shpiro | Rodica Curtu
[1] W. Levelt. On binocular rivalry , 1965 .
[2] P. Holmes,et al. Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields , 1983, Applied Mathematical Sciences.
[3] N. Logothetis,et al. Activity changes in early visual cortex reflect monkeys' percepts during binocular rivalry , 1996, Nature.
[4] Mathias Bode,et al. Lateral Neural Model of Binocular Rivalry , 2003, Neural Computation.
[5] Carson C. Chow,et al. A Spiking Neuron Model for Binocular Rivalry , 2004, Journal of Computational Neuroscience.
[6] M. Hollins,et al. The effect of contrast on the completeness of binocular rivalry suppression , 1980, Perception & psychophysics.
[7] N. Logothetis,et al. Grouping and segmentation in binocular rivalry , 2001, Vision Research.
[8] I. Kovács,et al. When the brain changes its mind: interocular grouping during binocular rivalry. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[9] I. Kaplan,et al. LIGHT INTENSITY AND BINOCULAR RIVALRY. , 1964, Journal of experimental psychology.
[10] Randolph Blake,et al. How Context Influences Predominance during Binocular Rivalry , 2002, Perception.
[11] R. Nicoll,et al. A Tale of Two Transmitters , 1998, Science.
[12] K. Naka,et al. S‐potentials from colour units in the retina of fish (Cyprinidae) , 1966, The Journal of physiology.
[13] D. Heeger,et al. Neuronal activity in human primary visual cortex correlates with perception during binocular rivalry , 2000, Nature Neuroscience.
[14] S. A. Robertson,et al. NONLINEAR OSCILLATIONS, DYNAMICAL SYSTEMS, AND BIFURCATIONS OF VECTOR FIELDS (Applied Mathematical Sciences, 42) , 1984 .
[15] N. Parga,et al. Role of synaptic filtering on the firing response of simple model neurons. , 2004, Physical review letters.
[16] Hugh R Wilson,et al. Computational evidence for a rivalry hierarchy in vision , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[17] Xiao-Jing Wang,et al. Alternating and Synchronous Rhythms in Reciprocally Inhibitory Model Neurons , 1992, Neural Computation.
[18] C. Clifford. Binocular rivalry , 2009, Current Biology.
[19] L. T. Alexander,et al. Figure-ground contrast and binocular rivalry. , 1952, Journal of experimental psychology.
[20] R. Blake,et al. A fresh look at the temporal dynamics of binocular rivalry , 1989, Biological Cybernetics.
[21] Joël Tabak,et al. Differential control of active and silent phases in relaxation models of neuronal rhythms , 2006, Journal of Computational Neuroscience.
[22] J M Wolfe,et al. Binocular Rivalry and Fusion under Scotopic Luminances , 1994, Perception.
[23] Garrison W. Cottrell,et al. Analysis of Oscillations in a Reciprocally Inhibitory Network with Synaptic Depression , 2002, Neural Computation.
[24] J. Cowan,et al. Excitatory and inhibitory interactions in localized populations of model neurons. , 1972, Biophysical journal.
[25] S Grossberg,et al. Cortical dynamics of three-dimensional form, color, and brightness perception: II. Binocular theory , 1988, Perception & psychophysics.
[26] Ronald L. Calabrese,et al. Half-center oscillators underlying rhythmic movements , 1998 .
[27] S. Rossignol,et al. Neural Control of Rhythmic Movements in Vertebrates , 1988 .
[28] P. Walker. Stochastic properties of binocular rivalry alternations , 1975 .
[29] L T ALEXANDER,et al. The influence of figure-ground relationships in binocular rivalry. , 1951, Journal of experimental psychology.
[30] Jonathan A. Marshall,et al. Neural model of temporal and stochastic properties of binocular rivalry , 2000, Neurocomputing.
[31] Eve Marder,et al. Mechanisms for oscillation and frequency control in reciprocally inhibitory model neural networks , 1994, Journal of Computational Neuroscience.
[32] A. Karni,et al. A transition between eye and object rivalry determined by stimulus coherence , 2001, Vision Research.
[33] David A. Leopold,et al. What is rivalling during binocular rivalry? , 1996, Nature.
[34] K. Matsuoka. The dynamic model of binocular rivalry , 2004, Biological Cybernetics.
[35] Alan W Freeman,et al. Multistage model for binocular rivalry. , 2005, Journal of neurophysiology.
[36] C. Tyler,et al. Failure of rivalry at low contrast: Evidence of a suprathreshold binocular summation process , 1992, Vision Research.
[37] S. R. Lehky. An Astable Multivibrator Model of Binocular Rivalry , 1988, Perception.
[38] Marcia Grabowecky,et al. Evidence for Perceptual “Trapping” and Adaptation in Multistable Binocular Rivalry , 2002, Neuron.
[39] Gustavo Deco,et al. A model of binocular rivalry based on competition in IT , 2002, Neurocomputing.
[40] E. Lumer. A neural model of binocular integration and rivalry based on the coordination of action-potential timing in primary visual cortex. , 1998, Cerebral cortex.
[41] Richard H. A. H. Jacobs,et al. The time course of binocular rivalry reveals a fundamental role of noise. , 2006, Journal of vision.
[42] R. Blake. A Neural Theory of Binocular Rivalry , 1989 .
[43] C. D. Weert,et al. A test of Levelt's second proposition for binocular rivalry , 1993, Vision Research.