The computation of lightness by the primate retina.

[1]  P. Gouras,et al.  Functional properties of ganglion cells of the rhesus monkey retina. , 1975, The Journal of physiology.

[2]  Helga Kolb,et al.  A bistratified amacrine cell and synaptic circuitry in the inner plexiform layer of the retina , 1975, Brain Research.

[3]  Berthold K. P. Horn,et al.  Determining lightness from an image , 1974, Comput. Graph. Image Process..

[4]  Helga Kolb,et al.  Rod and Cone Pathways in the Inner Plexiform Layer of Cat Retina , 1974, Science.

[5]  P Lennie,et al.  Background configuration and rod threshold , 1973, The Journal of physiology.

[6]  J. Stone,et al.  Projection of X- and Y-cells of the cat's lateral geniculate nucleus to areas 17 and 18 of visual cortex. , 1973, Journal of neurophysiology.

[7]  S. Zeki,et al.  Colour coding in rhesus monkey prestriate cortex. , 1973, Brain research.

[8]  H. Barlow,et al.  Doubts about scotopic interactions in stabilized vision. , 1973, Vision research.

[9]  J. Stone,et al.  Very slow-conducting ganglion cells in the cat's retina: a major, new functional type? , 1972, Brain research.

[10]  K. Naka,et al.  Identification of intracellular responses in the frog retina. , 1972, Brain research.

[11]  W. Rushton Review Lecture. Pigments and signals in colour vision , 1972 .

[12]  L Maffei,et al.  Retinogeniculate convergence and analysis of contrast. , 1972, Journal of neurophysiology.

[13]  W. Levick,et al.  Sustained and transient neurones in the cat's retina and lateral geniculate nucleus , 1971, The Journal of physiology.

[14]  Y. Fukada,et al.  The relationship between response characteristics to flicker stimulation and receptive field organization in the cat's optic nerve fibers. , 1971, Vision research.

[15]  Y. Fukada,et al.  Receptive field organization of cat optic nerve fibers with special reference to conduction velocity. , 1971, Vision research.

[16]  E. Land,et al.  Lightness and retinex theory. , 1971, Journal of the Optical Society of America.

[17]  H. Kolb,et al.  Organization of the outer plexiform layer of the primate retina: electron microscopy of Golgi-impregnated cells. , 1970, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[18]  W A Rushton,et al.  Signals from cones , 1970, The Journal of physiology.

[19]  M. Alpern,et al.  The attenuation of rod signals by bleachings , 1970, The Journal of physiology.

[20]  M. Alpern,et al.  The size of rod signals , 1970, The Journal of physiology.

[21]  M. Alpern,et al.  The attenuation of rod signals by backgrounds , 1970, The Journal of physiology.

[22]  G. Westheimer,et al.  Distance effects in human scotopic retinal interaction , 1970, The Journal of physiology.

[23]  S P McKee,et al.  Specificity of cone mechanisms in lateral interaction , 1970, The Journal of physiology.

[24]  G Westheimer,et al.  Rod‐cone independence for sensitizing interaction in the human retina , 1970, The Journal of physiology.

[25]  K. Naka Computer assisted analysis of S-potentials. , 1969, Biophysical journal.

[26]  J. Dowling,et al.  Organization of retina of the mudpuppy, Necturus maculosus. I. Synaptic structure. , 1969, Journal of neurophysiology.

[27]  J. Dowling,et al.  Organization of the retina of the mudpuppy, Necturus maculosus. II. Intracellular recording. , 1969, Journal of neurophysiology.

[28]  J. Toyoda,et al.  Light-induced resistance changes in single photoreceptors of Necturus and Gekko. , 1969, Vision research.

[29]  B. Boycott,et al.  Organization of the Primate Retina: Light Microscopy , 1969 .

[30]  R. Cone,et al.  Spontaneous Regeneration of Rhodopsin in the Isolated Rat Retina , 1969, Nature.

[31]  P. Gouras Identification of cone mechanisms in monkey ganglion cells , 1968, The Journal of physiology.

[32]  K I Naka,et al.  S‐potential and dark adaptation in fish , 1968, The Journal of physiology.

[33]  A Kaneko,et al.  Recording site of the single cone response determined by an electrode marking technique. , 1967, Vision research.

[34]  P Gouras,et al.  The effects of light‐adaptation on rod and cone receptive field organization of monkey ganglion cells , 1967, The Journal of physiology.

[35]  K. Naka,et al.  The generation and spread of S‐potentials in fish (Cyprinidae) , 1967, The Journal of physiology.

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

[37]  M. Alpern,et al.  The nature of rise in threshold produced by contrast‐flashes , 1967, The Journal of physiology.

[38]  C. Enroth-Cugell,et al.  The contrast sensitivity of retinal ganglion cells of the cat , 1966, The Journal of physiology.

[39]  B. Boycott,et al.  Organization of the primate retina: electron microscopy , 1966, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[40]  P. Gouras Rod and cone independence in the electroretinogram of the dark‐adapted monkey's perifovea , 1966, The Journal of physiology.

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

[42]  K. Naka,et al.  S‐potentials from colour units in the retina of fish (Cyprinidae) , 1966, The Journal of physiology.

[43]  P Gouras,et al.  Rod and cone interaction in dark‐adapted monkey ganglion cells , 1966, The Journal of physiology.

[44]  D. Jameson,et al.  Mach bands : quantitative studies on neural networks in the retina , 1966 .

[45]  R. Cone,et al.  Functional Independence of the Two Major Components of the Rod Electroretinogram , 1965, Nature.

[46]  M. Alpern Rod—cone independence in the after‐flash effects , 1965, The Journal of physiology.

[47]  R. L. Valois Analysis and coding of color vision in the primate visual system. , 1965 .

[48]  L. Missotten,et al.  The ultrastructure of the human retina , 1965 .

[49]  J. Mcilwain RECEPTIVE FIELDS OF OPTIC TRACT AXONS AND LATERAL GENICULATE CELLS: PERIPHERAL EXTENT AND BARBITURATE SENSITIVITY. , 1964, Journal of neurophysiology.

[50]  Hermann von Helmholtz,et al.  Treatise on Physiological Optics , 1962 .

[51]  G. Brindley Physiology of the Retina and the Visual Pathway , 1960 .

[52]  D. Hubel,et al.  Receptive fields of optic nerve fibres in the spider monkey , 1960, The Journal of physiology.

[53]  R. L. Valois Color Vision Mechanisms in the Monkey , 1960 .

[54]  H. Barlow Temporal and spatial summation in human vision at different background intensities , 1958, The Journal of physiology.

[55]  H. Barlow,et al.  Change of organization in the receptive fields of the cat's retina during dark adaptation , 1957, The Journal of physiology.

[56]  H B BARLOW,et al.  Increment thresholds at low intensities considered as signal/noise discriminations , 1957, The Journal of physiology.

[57]  H. Barlow Retinal noise and absolute threshold. , 1956, Journal of the Optical Society of America.

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