Beyond the Classical Receptive Field : Surround Modulation in Primary Visual Cortex
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[1] Y Watanabe,et al. Properties of Horizontal and Vertical Inputs to Pyramidal Cells in the Superficial Layers of the Cat Visual Cortex , 2000, The Journal of Neuroscience.
[2] A. Borst. Seeing smells: imaging olfactory learning in bees , 1999, Nature Neuroscience.
[3] K. Svoboda,et al. Genetic Dissection of Neural Circuits , 2008, Neuron.
[4] L. Schwabe,et al. Response facilitation from the "suppressive" receptive field surround of macaque V1 neurons. , 2007, Journal of neurophysiology.
[5] J. B. Levitt,et al. Contrast dependence of contextual effects in primate visual cortex , 1997, nature.
[6] Paul R. Martin,et al. Extraclassical Receptive Field Properties of Parvocellular, Magnocellular, and Koniocellular Cells in the Primate Lateral Geniculate Nucleus , 2002, The Journal of Neuroscience.
[7] Tomoyuki Naito,et al. Contrast‐dependent, contextual response modulation in primary visual cortex and lateral geniculate nucleus of the cat , 2006, The European journal of neuroscience.
[8] A. M. Sillito,et al. Orientation sensitive elements in the corticofugal influence on centre-surround interactions in the dorsal lateral geniculate nucleus , 1993, Experimental Brain Research.
[9] Lawrence C. Sincich,et al. Oriented Axon Projections in Primary Visual Cortex of the Monkey , 2001, The Journal of Neuroscience.
[10] Edward M Callaway,et al. Visual spatial summation in macaque geniculocortical afferents. , 2006, Journal of neurophysiology.
[11] Alessandra Angelucci,et al. Strong Recurrent Networks Compute the Orientation Tuning of Surround Modulation in the Primate Primary Visual Cortex , 2012, The Journal of Neuroscience.
[12] A. Grinvald,et al. Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[13] J. B. Levitt,et al. The spatial extent over which neurons in macaque striate cortex pool visual signals , 2002, Visual Neuroscience.
[14] K. Rockland,et al. Laminar origins and terminations of cortical connections of the occipital lobe in the rhesus monkey , 1979, Brain Research.
[15] H. Sato,et al. Orientation tuning of surround suppression in lateral geniculate nucleus and primary visual cortex of cat , 2007, Neuroscience.
[16] J. B. Levitt,et al. Comparison of Spatial Summation Properties of Neurons in Macaque V1 and V2 , 2009, Journal of neurophysiology.
[17] H. Kennedy,et al. Topography of the afferent connectivity of area 17 in the macaque monkey: A double‐labelling study , 1986, The Journal of comparative neurology.
[18] H. Ozeki,et al. Relationship between Excitation and Inhibition Underlying Size Tuning and Contextual Response Modulation in the Cat Primary Visual Cortex , 2004, The Journal of Neuroscience.
[19] E. Todorov,et al. A local circuit approach to understanding integration of long-range inputs in primary visual cortex. , 1998, Cerebral cortex.
[20] Victor A. F. Lamme. The neurophysiology of figure-ground segregation in primary visual cortex , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[21] R. Shapley,et al. Visual spatial characterization of macaque V1 neurons. , 2001, Journal of neurophysiology.
[22] S. Maier,et al. Widespread Periodic Intrinsic Connections in the Tree Shrew Visual Cortex , 2005 .
[23] J. Lund,et al. Anatomical organization of macaque monkey striate visual cortex. , 1988, Annual review of neuroscience.
[24] J. Nelson,et al. Intracortical facilitation among co-oriented, co-axially aligned simple cells in cat striate cortex , 2004, Experimental Brain Research.
[25] John H. R. Maunsell,et al. The connections of the middle temporal visual area (MT) and their relationship to a cortical hierarchy in the macaque monkey , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[26] Klaus Obermayer,et al. The operating regime of local computations in primary visual cortex. , 2009, Cerebral cortex.
[27] J. Lund,et al. Anatomical substrates for functional columns in macaque monkey primary visual cortex. , 2003, Cerebral cortex.
[28] P. Lennie,et al. Early and Late Mechanisms of Surround Suppression in Striate Cortex of Macaque , 2005, The Journal of Neuroscience.
[29] A. Yuille,et al. Opinion TRENDS in Cognitive Sciences Vol.10 No.7 July 2006 Special Issue: Probabilistic models of cognition Vision as Bayesian inference: analysis by synthesis? , 2022 .
[30] T. Wiesel,et al. Targets of horizontal connections in macaque primary visual cortex , 1991, The Journal of comparative neurology.
[31] J. M. Hupé,et al. Cortical feedback improves discrimination between figure and background by V1, V2 and V3 neurons , 1998, Nature.
[32] U. Polat,et al. Collinear stimuli regulate visual responses depending on cell's contrast threshold , 1998, Nature.
[33] John H. R. Maunsell,et al. Hierarchical organization and functional streams in the visual cortex , 1983, Trends in Neurosciences.
[34] R. Shapley,et al. Contrast's effect on spatial summation by macaque V1 neurons , 1999, Nature Neuroscience.
[35] K. Rockland,et al. Intrinsic collaterals of layer 6 meynert cells and functional columns in primate v1 , 2003, Neuroscience.
[36] L. Maffei,et al. The unresponsive regions of visual cortical receptive fields , 1976, Vision Research.
[37] I. Ohzawa,et al. Suppression outside the classical cortical receptive field , 2000, Visual Neuroscience.
[38] C. Li,et al. Extensive integration field beyond the classical receptive field of cat's striate cortical neurons--classification and tuning properties. , 1994, Vision research.
[39] Zhaoping Li. A saliency map in primary visual cortex , 2002, Trends in Cognitive Sciences.
[40] C. Gilbert,et al. Spatial distribution of contextual interactions in primary visual cortex and in visual perception. , 2000, Journal of neurophysiology.
[41] J. B. Levitt,et al. Cells andcircuits contributing tofunctional properties in areaViofmacaque monkeycerebral cortex: bases for neuroanatomicall y realistic models , 1995 .
[42] R. Shapley,et al. Effect of stimulus size on the dynamics of orientation selectivity in Macaque V1. , 2005, Journal of neurophysiology.
[43] K. Obermayer,et al. The Role of Feedback in Shaping the Extra-Classical Receptive Field of Cortical Neurons: A Recurrent Network Model , 2006, The Journal of Neuroscience.
[44] D. V. van Essen,et al. Response profiles to texture border patterns in area V1 , 2000, Visual Neuroscience.
[45] Michael W. Spratling. Predictive Coding as a Model of Response Properties in Cortical Area V1 , 2010, The Journal of Neuroscience.
[46] G Westheimer,et al. Dynamics of spatial summation in primary visual cortex of alert monkeys. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[47] H. Jones,et al. Visual cortical mechanisms detecting focal orientation discontinuities , 1995, Nature.
[48] James H. Marshel,et al. New rabies virus variants for monitoring and manipulating activity and gene expression in defined neural circuits. , 2011, Neuron.
[49] M Stemmler,et al. Lateral interactions in primary visual cortex: a model bridging physiology and psychophysics. , 1995, Science.
[50] Victor A. F. Lamme,et al. Separate processing dynamics for texture elements, boundaries and surfaces in primary visual cortex of the macaque monkey. , 1999, Cerebral cortex.
[51] C. Gilbert,et al. Improvement in visual sensitivity by changes in local context: Parallel studies in human observers and in V1 of alert monkeys , 1995, Neuron.
[52] Leslie G. Ungerleider,et al. Cortical connections of visual area MT in the macaque , 1986, The Journal of comparative neurology.
[53] M. Mignard,et al. Paths of information flow through visual cortex. , 1991, Science.
[54] J L Gallant,et al. Sparse coding and decorrelation in primary visual cortex during natural vision. , 2000, Science.
[55] P. Schiller,et al. Effect of cooling area 18 on striate cortex cells in the squirrel monkey. , 1982, Journal of neurophysiology.
[56] Alessandra Angelucci,et al. Contrast-dependence of surround suppression in Macaque V1: Experimental testing of a recurrent network model , 2010, NeuroImage.
[57] John H. R. Maunsell,et al. The visual field representation in striate cortex of the macaque monkey: Asymmetries, anisotropies, and individual variability , 1984, Vision Research.
[58] J. Lund,et al. Intrinsic laminar lattice connections in primate visual cortex , 1983, The Journal of comparative neurology.
[59] C. Gilbert,et al. Contour Saliency in Primary Visual Cortex , 2006, Neuron.
[60] U Polat,et al. Facilitation and suppression of single striate-cell activity by spatially discrete pattern stimuli presented beyond the receptive field , 2001, Visual Neuroscience.
[61] P. Lennie,et al. The Impact of Suppressive Surrounds on Chromatic Properties of Cortical Neurons , 2004, The Journal of Neuroscience.
[62] M. Sur,et al. Invariant computations in local cortical networks with balanced excitation and inhibition , 2005, Nature Neuroscience.
[63] I. Ohzawa,et al. Asymmetric Suppression Outside the Classical Receptive Field of the Visual Cortex , 1999, The Journal of Neuroscience.
[64] P. Lennie,et al. Local signals from beyond the receptive fields of striate cortical neurons. , 2003, Journal of neurophysiology.
[65] W Singer,et al. The Perceptual Grouping Criterion of Colinearity is Reflected by Anisotropies of Connections in the Primary Visual Cortex , 1997, The European journal of neuroscience.
[66] D. V. van Essen,et al. Neuronal responses to static texture patterns in area V1 of the alert macaque monkey. , 1992, Journal of neurophysiology.
[67] Leslie G. Ungerleider,et al. Contextual Modulation in Primary Visual Cortex of Macaques , 2001, The Journal of Neuroscience.
[68] Alessandra Angelucci,et al. Different Orientation Tuning of Near- and Far-Surround Suppression in Macaque Primary Visual Cortex Mirrors Their Tuning in Human Perception , 2013, The Journal of Neuroscience.
[69] Jean Bennett,et al. Lateral Connectivity and Contextual Interactions in Macaque Primary Visual Cortex , 2002, Neuron.
[70] Victor A. F. Lamme,et al. Contextual Modulation in Primary Visual Cortex , 1996, The Journal of Neuroscience.
[71] T. Poggio,et al. How Visual Cortex Recognizes Objects: The Tale of the Standard Model , 2002 .
[72] W. Levick,et al. Lateral geniculate neurons of cat: retinal inputs and physiology. , 1972, Investigative ophthalmology.
[73] H. Sompolinsky,et al. Chaos in Neuronal Networks with Balanced Excitatory and Inhibitory Activity , 1996, Science.
[74] J. Gallant,et al. Natural Stimulation of the Nonclassical Receptive Field Increases Information Transmission Efficiency in V1 , 2002, The Journal of Neuroscience.
[75] J. Nelson,et al. Orientation-selective inhibition from beyond the classic visual receptive field , 1978, Brain Research.
[76] Eero P. Simoncelli,et al. Natural signal statistics and sensory gain control , 2001, Nature Neuroscience.
[77] A. Derrington,et al. Feedback from V 1 and inhibition from beyond the classical receptive field modulates the responses of neurons in the primate lateral geniculate nucleus , .
[78] S. Ullman,et al. Retinotopic Axis Specificity and Selective Clustering of Feedback Projections from V2 to V1 in the Owl Monkey , 2005, The Journal of Neuroscience.
[79] C. Blakemore,et al. Characteristics of surround inhibition in cat area 17 , 1997, Experimental Brain Research.
[80] Evan S. Schaffer,et al. Inhibitory Stabilization of the Cortical Network Underlies Visual Surround Suppression , 2009, Neuron.
[81] A. Grinvald,et al. Long-term voltage-sensitive dye imaging reveals cortical dynamics in behaving monkeys. , 2002, Journal of neurophysiology.
[82] Bruno A Olshausen,et al. Sparse coding of sensory inputs , 2004, Current Opinion in Neurobiology.
[83] Eero P. Simoncelli,et al. Natural image statistics and neural representation. , 2001, Annual review of neuroscience.
[84] D. V. van Essen,et al. Response modulation by texture surround in primate area V1: Correlates of “popout” under anesthesia , 1999, Visual Neuroscience.