Functional classes of cells and their laminar distribution in monkey visual cortex.
1974; American Physiological Society; Volume: 37; Issue: 5 Linguagem: Inglês
10.1152/jn.1974.37.5.927
ISSN1522-1598
Autores Tópico(s)Neural dynamics and brain function
ResumoFunctional classes of cells and their laminar distribution in monkey visual cortex.B M DowB M DowPublished Online:01 Sep 1974https://doi.org/10.1152/jn.1974.37.5.927MoreSectionsPDF (3 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByBiophysical Support for Functionally Distinct Cell Types in the Frontal Eye FieldJeremiah Y. Cohen, Pierre Pouget, Richard P. Heitz, Geoffrey F. Woodman, and Jeffrey D. Schall1 February 2009 | Journal of Neurophysiology, Vol. 101, No. 2Contribution of Individual Retinal Ganglion Cell Responses to Velocity and Acceleration EncodingAndreas Thiel, Martin Greschner, Christian W. Eurich, Josef Ammermüller, and Jutta Kretzberg1 October 2007 | Journal of Neurophysiology, Vol. 98, No. 4Phosphene Induction and the Generation of Saccadic Eye Movements by Striate CortexE. J. Tehovnik, W. M. Slocum, C. E. Carvey, and P. H. Schiller1 January 2005 | Journal of Neurophysiology, Vol. 93, No. 1Self-organizing neural network model of motion processing in the visual cortex during smooth pursuitVision Research, Vol. 43, No. 20A laminar cortical model of stereopsis and three-dimensional surface perceptionVision Research, Vol. 43, No. 7How Does the Cerebral Cortex Work? Development, Learning, Attention, and 3-D Vision by Laminar Circuits of Visual Cortex18 May 2016 | Behavioral and Cognitive Neuroscience Reviews, Vol. 2, No. 1Spatial Organization of Receptive Fields of V1 Neurons of Alert Monkeys: Comparison With Responses to GratingsIgor Kagan, Moshe Gur, and D. Max Snodderly1 November 2002 | Journal of Neurophysiology, Vol. 88, No. 5The role of complex cells in object recognitionVision Research, Vol. 42, No. 22Ultra High-Resolution fMRI in Monkeys with Implanted RF CoilsNeuron, Vol. 35, No. 2Color Processing in Macaque Striate Cortex: Electrophysiological PropertiesCarole E. Landisman, and Daniel Y. Ts'O1 June 2002 | Journal of Neurophysiology, Vol. 87, No. 6Color Processing in Macaque Striate Cortex: Relationships to Ocular Dominance, Cytochrome Oxidase, and OrientationCarole E. Landisman, and Daniel Y. Ts'o1 June 2002 | Journal of Neurophysiology, Vol. 87, No. 6Visual Spatial Characterization of Macaque V1 NeuronsMichael P. Sceniak, Michael J. Hawken, and Robert Shapley1 May 2001 | Journal of Neurophysiology, Vol. 85, No. 5The cortical connections of area V6: an occipito-parietal network processing visual information20 December 2001 | European Journal of Neuroscience, Vol. 13, No. 8Measurement of the Texture-Coherence Limit for Bandpass Arrays25 June 2016 | Perception, Vol. 27, No. 6Organization of contour from motion processing in primate visual cortexVision Research, Vol. 34, No. 6On the time course and accuracy of spatial localization: Basic data and a two-process modelActa Psychologica, Vol. 84, No. 2Failure of rivalry at low contrast: Evidence of a suprathreshold binocular summation processVision Research, Vol. 32, No. 8The relationship between simple and double opponent cellsVision Research, Vol. 31, No. 1Laminar analysis of motion information processing in macaque V5Brain Research, Vol. 496, No. 1-2Timing and distribution of flash-evoked activity in the lateral geniculate nucleus of the alert monkeyBrain Research, Vol. 477, No. 1-2The interactions between chromatic aberration, defocus and stimulus chromaticity: Implications for visual physiology and colorimetryVision Research, Vol. 29, No. 3Motion components of VEPs to the waggon wheel effectVision Research, Vol. 29, No. 1Cytochrome oxidase patches and Meynert cells in monkey visual cortexNeuroscience, Vol. 28, No. 2Spatial and temporal frequency selectivity of neurons in visual cortical area V3A of the macaque monkeyVision Research, Vol. 28, No. 11Illusory contours induced by isoluminant chromatic patternsVision Research, Vol. 28, No. 12Concurrent processing streams in monkey visual cortexTrends in Neurosciences, Vol. 11, No. 5Time structure and stimulus dependence of precisely replicating patterns present in monkey cortical neuronal spike trainsBrain Research, Vol. 437, No. 2Retinal ganglion cell dendritic fields in old-world monkeys are oriented radiallyBrain Research, Vol. 368, No. 1The central visual systemVision Research, Vol. 26, No. 9Biological image motion processing: A reviewVision Research, Vol. 25, No. 5Direction- and Velocity-Specific Responses from beyond the Classical Receptive Field in the Middle Temporal Visual Area (MT)25 June 2016 | Perception, Vol. 14, No. 2Receptive field properties of neurones in visual area 1 and visual area 2 in the baboonNeuroscience, Vol. 14, No. 2Laminar segregation of color cells in the monkey's striate cortexVision Research, Vol. 25, No. 3Contour, color and shape analysis beyond the striate cortexVision Research, Vol. 25, No. 3Visual thresholds for shearing motion in monkey and manVision Research, Vol. 25, No. 6Independent Processing of Visual form and Motion25 June 2016 | Perception, Vol. 13, No. 5Subdurally recorded pattern and luminance EPs in the alert rhesus monkeyElectroencephalography and Clinical Neurophysiology, Vol. 57, No. 4Temporal and spatial characteristics of the upper displacement limit for motion in random dotsVision Research, Vol. 24, No. 4Spatial mapping of monkey VI cells with pure color and luminance stimuliVision Research, Vol. 24, No. 7Hierarchical organization and functional streams in the visual cortexTrends in Neurosciences, Vol. 6Interpolation during Apparent Motion25 June 2016 | Perception, Vol. 11, No. 4Multiplexing in single cells of the alert monkey's visual cortex during brightness discriminationNeuropsychologia, Vol. 20, No. 1Visual thresholds in dichromats and normals; the importance of Post-receptoral processesVision Research, Vol. 21, No. 4Temporal response characteristics of cells in monkey striate cortex measured with metacontrast masking and brightness discriminationBrain Research, Vol. 196, No. 2Parallel visual pathways: A reviewVision Research, Vol. 20, No. 7Thalamocortical synaptic relations: A review with emphasis on the projections of specific thalamic nuclei to the primary sensory areas of the neocortexBrain Research Reviews, Vol. 1, No. 3Hierarchical and parallel mechanisms in the organization of visual cortexBrain Research Reviews, Vol. 1, No. 3Decrease in Metacontrast Masking following Adaptation to Flicker25 June 2016 | Perception, Vol. 8, No. 5Figure-Ground Formation by Movement: Influences and Effects25 June 2016 | Perception, Vol. 8, No. 4Interaction between sustained and transient channels: Form inhibits motion in the human visual systemVision Research, Vol. 18, No. 2Disinhibition in metacontrast masking of vernier acuity targets: Sustained channels inhibit transient channelsVision Research, Vol. 18, No. 10Metacontrast with black and white stimuli: Evidence for inhibition of on- and off-sustained activity by either on- or off-transient activityVision Research, Vol. 18, No. 10Responses of macaque ganglion cells to far violet lightsVision Research, Vol. 17, No. 10Receptive field properties of single units in the opossum striate cortexBrain Research, Vol. 104, No. 2Spatial and chromatic properties of neurons subserving foveal and parafoveal vision in rhesus monkeyBrain Research, Vol. 100, No. 1Receptive fields of single cells in the visual cortex of the hooded ratBrain Research, Vol. 94, No. 3Computing optical flow in resistive networks and in the primate visual system More from this issue > Volume 37Issue 5September 1974Pages 927-46 https://doi.org/10.1152/jn.1974.37.5.927PubMed4370031History Published online 1 September 1974 Published in print 1 September 1974 Metrics
Referência(s)