Visual pattern analysis in machines and animals.

[1]  Max Wertheimer,et al.  Untersuchungen zur Lehre von der Gestalt , 2017 .

[2]  Marvin Minsky,et al.  Steps toward Artificial Intelligence , 1995, Proceedings of the IRE.

[3]  R. Narasimhan,et al.  A syntax-aided recognition scheme for handprinted english letters , 1971, Pattern Recognit..

[4]  R. Shlaer,et al.  Shift in Binocular Disparity Causes Compensatory Change in the Cortical Structure of Kittens , 1971, Science.

[5]  F. A. Miles Centrifugal Effects in the Avian Retina , 1970, Science.

[6]  J. Ganchrow,et al.  Neural correlates of gustatory intensity and quality. , 1970, Journal of neurophysiology.

[7]  G. F. Cooper,et al.  Development of the Brain depends on the Visual Environment , 1970, Nature.

[8]  D. N. Spinelli,et al.  Visual Experience Modifies Distribution of Horizontally and Vertically Oriented Receptive Fields in Cats , 1970, Science.

[9]  N. Daw,et al.  Opponent Color Cells in the Cat Lateral Geniculate Nucleus , 1970, Science.

[10]  D. B. Bender,et al.  Visual Receptive Fields of Neurons in Inferotemporal Cortex of the Monkey , 1969, Science.

[11]  C. W. Oyster,et al.  Rabbit Lateral Geniculate Nucleus: Sharpener of Directional Information , 1969, Science.

[12]  K. Fite,et al.  Single-unit analysis of binocular neurons in the frog optic tectum. , 1969, Experimental neurology.

[13]  N. Sutherland Outlines of a theory of visual pattern recognition in animals and man , 1968, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[14]  P. Marchiafava,et al.  Unit responses to visual stimuli in the superior colliculus of the unanesthetized, mid-pontine cat. , 1968, Archives italiennes de biologie.

[15]  C. R. Michael Receptive fields of single optic nerve fibers in a mammal with an all-cone retina. II: directionally selective units. , 1968, Journal of neurophysiology.

[16]  C. R. Michael Receptive fields of single optic nerve fibers in a mammal with an all-cone retina. I: contrast-sensitive units. , 1968, Journal of neurophysiology.

[17]  C. R. Michael Receptive fields of single optic nerve fibers in a mammal with an all-cone retina. 3. Opponent color units. , 1968, Journal of neurophysiology.

[18]  R W Rodieck,et al.  Receptive Fields in the Cat Retina: A New Type , 1967, Science.

[19]  H B Barlow,et al.  Direction-Selective Units in Rabbit Retina: Distribution of Preferred Directions , 1967, Science.

[20]  D. Hubel,et al.  Spatial and chromatic interactions in the lateral geniculate body of the rhesus monkey. , 1966, Journal of neurophysiology.

[21]  R. L. Valois,et al.  Analysis of response patterns of LGN cells. , 1966, Journal of the Optical Society of America.

[22]  J. Stone,et al.  Specialized Receptive Fields of the Cat's Retina , 1966, Science.

[23]  R. Hill,et al.  Responsiveness to sensory stimulation of units in the superior colliculus and subjacent tectotegmental regions of the rabbit. , 1966, Experimental neurology.

[24]  R. W. Rodieck Quantitative analysis of cat retinal ganglion cell response to visual stimuli. , 1965, Vision research.

[25]  D. Hubel,et al.  Comparison of the effects of unilateral and bilateral eye closure on cortical unit responses in kittens. , 1965, Journal of neurophysiology.

[26]  D. Hubel,et al.  Binocular interaction in striate cortex of kittens reared with artificial squint. , 1965, Journal of neurophysiology.

[27]  R. Held Plasticity in sensory-motor systems. , 1965, Scientific American.

[28]  V. Glezer The receptive fields of the retina. , 1965, Vision research.

[29]  D H HUBEL,et al.  RECEPTIVE FIELDS AND FUNCTIONAL ARCHITECTURE IN TWO NONSTRIATE VISUAL AREAS (18 AND 19) OF THE CAT. , 1965, Journal of neurophysiology.

[30]  J. Cronly-Dillon,et al.  Units Sensitive to Direction of Movement in Goldfish Optic Tectum , 1964, Nature.

[31]  R. Narasimhan,et al.  Labeling Schemata and Synctactic Descriptions of Pictures , 1964, Inf. Control..

[32]  H. Maturana,et al.  Directional Movement and Horizontal Edge Detectors in the Pigeon Retina , 1963, Science.

[33]  D. Hubel,et al.  RECEPTIVE FIELDS OF CELLS IN STRIATE CORTEX OF VERY YOUNG, VISUALLY INEXPERIENCED KITTENS. , 1963, Journal of neurophysiology.

[34]  R. D. de Valois,et al.  Color Vision Mechanisms in the Monkey , 1960, The Journal of general physiology.

[35]  W. Pitts,et al.  Anatomy and Physiology of Vision in the Frog (Rana pipiens) , 1960, The Journal of general physiology.

[36]  F. Attneave Some informational aspects of visual perception. , 1954, Psychological review.

[37]  P. Ratoosh,et al.  On Interposition as a Cue for the Perception of Distance. , 1949, Proceedings of the National Academy of Sciences of the United States of America.

[38]  H. K. Hartline,et al.  THE EFFECTS OF SPATIAL SUMMATION IN THE RETINA ON THE EXCITATION OF THE FIBERS OF THE OPTIC NERVE , 1940 .

[39]  H. K. Hartline,et al.  THE RECEPTIVE FIELDS OF OPTIC NERVE FIBERS , 1940 .

[40]  H. K. Hartline,et al.  THE RESPONSE OF SINGLE OPTIC NERVE FIBERS OF THE VERTEBRATE EYE TO ILLUMINATION OF THE RETINA , 1938 .

[41]  D. B. Bender,et al.  Visual properties of neurons in inferotemporal cortex of the Macaque. , 1972, Journal of neurophysiology.

[42]  P Sterling,et al.  Visual receptive fields in the superior colliculus of the cat. , 1969, Journal of neurophysiology.

[43]  D. Ingle Visual Releasers of Prey-Catching Behavior in Frogs and Toads , 1968 .

[44]  P. O. Bishop,et al.  RESPONSES OF SINGLE UNITS IN LATERAL GENICULATE NUCLEUS OF CAT TO MOVING VISUAL PATTERNS. , 1965, Journal of neurophysiology.

[45]  S. W. Kuffler Discharge patterns and functional organization of mammalian retina. , 1953, Journal of neurophysiology.