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Journal Abstract Search


208 related items for PubMed ID: 38772362

  • 21. Binocular Disparity Selectivity Weakened after Monocular Deprivation in Mouse V1.
    Scholl B, Pattadkal JJ, Priebe NJ.
    J Neurosci; 2017 Jul 05; 37(27):6517-6526. PubMed ID: 28576937
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  • 23. Receptive-field properties of neurons in binocular and monocular segments of striate cortex in cats raised with binocular lid suture.
    Watkins DW, Wilson JR, Sherman SM.
    J Neurophysiol; 1978 Mar 05; 41(2):322-37. PubMed ID: 650270
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  • 27. Stereopsis and the random element in the organization of the striate cortex.
    Bishop PO.
    Proc R Soc Lond B Biol Sci; 1979 Jun 04; 204(1157):415-34. PubMed ID: 38456
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  • 30. Clustered organization of neurons with similar extra-receptive field properties in the primary visual cortex.
    Yao H, Li CY.
    Neuron; 2002 Aug 01; 35(3):547-53. PubMed ID: 12165475
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  • 31. Binocular integration and disparity selectivity in mouse primary visual cortex.
    Scholl B, Burge J, Priebe NJ.
    J Neurophysiol; 2013 Jun 01; 109(12):3013-24. PubMed ID: 23515794
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  • 32. Phase disparity in area 19 of the cat.
    Mimeault D, Lepore F, Guillemot JP.
    Neuroreport; 2002 Mar 04; 13(3):291-6. PubMed ID: 11930125
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  • 33. V1 partially solves the stereo aperture problem.
    Howe PD, Livingstone MS.
    Cereb Cortex; 2006 Sep 04; 16(9):1332-7. PubMed ID: 16306321
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  • 36. Functional micro-organization of primary visual cortex: receptive field analysis of nearby neurons.
    DeAngelis GC, Ghose GM, Ohzawa I, Freeman RD.
    J Neurosci; 1999 May 15; 19(10):4046-64. PubMed ID: 10234033
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  • 39. A preference for phase-based disparity in a neuromorphic implementation of the binocular energy model.
    Tsang EK, Shi BE.
    Neural Comput; 2004 Aug 15; 16(8):1579-600. PubMed ID: 15228746
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