Abstract

ArticlesVISUAL AREAS I AND II OF CEREBRAL CORTEX OF RABBITJ. M. Thompson, C. N. Woolsey, and S. A. TalbotJ. M. ThompsonSearch for more papers by this author, C. N. WoolseySearch for more papers by this author, and S. A. TalbotSearch for more papers by this authorPublished Online:01 Jul 1950https://doi.org/10.1152/jn.1950.13.4.277MoreSectionsPDF (2 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByQuantitative Characterization of the Human Retinotopic Map Based on Quasiconformal MappingMedical Image Analysis, Vol. 23A machine-learning algorithm correctly classifies cortical evoked potentials from both visual stimulation and electrical stimulation of the optic nerve26 April 2021 | Journal of Neural Engineering, Vol. 18, No. 4The rabbit as a behavioral model system for magnetic resonance imagingJournal of Neuroscience Methods, Vol. 300Penetrative Optic Nerve-Based Visual Prosthesis Research25 November 2016Spatial characteristics of evoked potentials elicited by a MEMS microelectrode array for suprachoroidal-transretinal stimulation in a rabbit16 May 2015 | Graefe's Archive for Clinical and Experimental Ophthalmology, Vol. 253, No. 9A novel perceptron architecture for simulating object constructionVisual cortical areas of the mouse: comparison of parcellation and network structure with primates7 January 2015 | Frontiers in Neural Circuits, Vol. 8Visual Interhemispheric and Striate-Extrastriate Cortical Connections in the Rabbit: A Multiple Tracer StudyNeurology Research International, Vol. 2015Functional MRI of the Visual System17 September 2015A model of the response of visual area V2 to combinations of orientations23 May 2012 | Network: Computation in Neural Systems, Vol. 23, No. 3Imaging of activated cortical areas after light and electrical stimulation of the rabbit retina: F-18 FDG PET-guided brain mapping11 July 2012 | Biomedical Engineering Letters, Vol. 2, No. 2Efficacy and reliability of long-term implantation of multi-channel microelectrode arrays in the optical nerve sheath of rabbit eyesVision Research, Vol. 51, No. 17Imaging retinotopic maps in the human brainVision Research, Vol. 51, No. 7Reconstructing the Areal Organization of the Neocortex of the First MammalsBrain, Behavior and Evolution, Vol. 78, No. 1Functional Magnetic Resonance Imaging of Delay and Trace Eyeblink Conditioning in the Primary Visual Cortex of the Rabbit7 May 2008 | The Journal of Neuroscience, Vol. 28, No. 19Implantation of episcleral electrodes via anterior orbitotomy for stimulation of the retina with induced photoreceptor degeneration: an in vivo feasibility study on a conceptual visual prosthesis3 April 2008 | Acta Neurochirurgica, Vol. 150, No. 5In vivo evaluation of an episcleral multielectrode array for stimulation of the retina with reduced retinal ganglion cell massJournal of Clinical Neuroscience, Vol. 15, No. 5Visual Field Maps in Human CortexNeuron, Vol. 56, No. 2High infusion pressure in conjunction with vitreous surgery alters the morphology and function of the retina of rabbits2 April 2007 | Acta Ophthalmologica Scandinavica, Vol. 85, No. 6The Concept of Cat Primary Visual CortexAnalysis of Spatial Patterns of Phase in Neocortical Gamma EEGs in RabbitWalter J. 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An experimental degeneration studyThe Journal of Comparative Neurology, Vol. 142, No. 3The effect of anaesthetics on the electroretinogram and the visually evoked response in the rabbit1 May 1971 | Documenta Ophthalmologica, Vol. 29, No. 2Comparative studies on cortical representation of visionVision Research, Vol. 11Interocular transfer in the rabbitExperimental Neurology, Vol. 26, No. 1Properties and Origins of Photically Evoked Potential Components in Rabbit Cortex7 July 2009 | International Journal of Neuroscience, Vol. 1, No. 1The primary optic projections in the rabbit. 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