Search Results - "Buzás, P."

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  1. 1

    Extrafoveally applied flashing light affects contrast thresholds of achromatic and S-cone isolating, but not L-M cone modulated stimuli by Őze, A., Puszta, A., Buzás, P., Kóbor, P., Braunitzer, G., Nagy, A.

    Published in Neuroscience letters (21-06-2018)
    “…•Calibrated isoluminant chromatic and achromatic stimuli were applied.•Light flashes influence both chromatic and achromatic color contrast…”
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  2. 2

    Functional Selectivity of Interhemispheric Connections in Cat Visual Cortex by Rochefort, N. L., Buzás, P., Quenech'du, N., Koza, A., Eysel, U. T., Milleret, C., Kisvárday, Z. F.

    Published in Cerebral cortex (New York, N.Y. 1991) (01-10-2009)
    “…The functional specificity of callosal connections was investigated in visual areas 17 and 18 of adult cats, by combining in vivo optical imaging of intrinsic…”
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  3. 3

    Layout of transcallosal activity in cat visual cortex revealed by optical imaging by Rochefort, N.L., Buzás, P., Kisvárday, Z.F., Eysel, U.T., Milleret, C.

    Published in NeuroImage (Orlando, Fla.) (01-07-2007)
    “…The contribution of interhemispheric connections to functional maps in cat visual cortex was investigated by using optical imaging of intrinsic signals. In…”
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  4. 4

    Transmission of blue (S) cone signals through the primate lateral geniculate nucleus by Tailby, C., Szmajda, B. A., Buzás, P., Lee, B. B., Martin, P. R.

    Published in The Journal of physiology (15-12-2008)
    “…This study concerns the transmission of short-wavelength-sensitive (S) cone signals through the primate dorsal lateral geniculate nucleus. The principal cell…”
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  5. 5

    Response variability of marmoset parvocellular neurons by Victor, J. D., Blessing, E. M., Forte, J. D., Buzás, P., Martin, P. R.

    Published in The Journal of physiology (15-02-2007)
    “…This study concerns the properties of neurons carrying signals for colour vision in primates. We investigated the variability of responses of individual…”
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    Axonal topography of cortical basket cells in relation to orientation, direction, and ocular dominance maps by Buzás, Péter, Eysel, Ulf T., Adorján, Péter, Kisvárday, Zoltán F.

    Published in Journal of comparative neurology (1911) (27-08-2001)
    “…The axonal (bouton) distributions of a layer 4 clutch cell (CC), two layer 3 medium‐sized basket cells (MBC), and a layer 3 large basket cell (LBC) to…”
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  8. 8

    Calculating Direction Maps from Intrinsic Signals revealed by Optical Imaging by Kisvárday, Zoltán F., Buzás, Péter, Eysel, Ulf T.

    Published in Cerebral cortex (New York, N.Y. 1991) (01-07-2001)
    “…Previous optical imaging studies used the vector-summation (VS) method for calculating direction and orientation preference maps. However, for direction maps…”
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  9. 9

    Calretinin in neurochemically well-defined cell populations of rabbit retina by Volgyi, B, Pollak, E, Buzas, P, Gabriel, R

    Published in Brain research (18-07-1997)
    “…In the rabbit retina, parvalbumin has been localized selectively to AII amacrine cells, while 28 kDa calbindin could be detected in horizontal cells, in one…”
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  10. 10

    Release from inhibition reveals the visual past by Vidyasagar, T. R, Buzás, P, Kisvárday, Z. F, Eysel, U. T

    Published in Nature (London) (03-06-1999)
    “…Prolonged viewing of a high-contrast repetitive pattern such as a grating leads to adaptation of the corresponding visual-processing channels. We have found…”
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  11. 11

    Combined physiological-anatomical approaches to study lateral inhibition by Kisvárday, Zoltán F, Crook, John M, Buzás, Péter, Eysel, Ulf T

    Published in Journal of neuroscience methods (15-11-2000)
    “…In the visual cortex, large basket cells form the cellular basis of long-range lateral inhibition. The present paper focuses on combinations of methods with…”
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    Depletion of calcitonin gene-related peptide from the caudal trigeminal nucleus of the rat after electrical stimulation of the Gasserian ganglion by KNYIHAR-CSILLIK, E, TAJTI, J, SAMSAM, M, SARY, G, BUZAS, P, VECSEI, L

    Published in Experimental brain research (01-01-1998)
    “…Electrical stimulation of the Gasserian ganglion resulted in partial depletion of calcitonin gene-related peptide (CGRP) from ipsilateral central terminals of…”
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  14. 14

    The number and distribution of bipolar to ganglion cell synapses in the inner plexiform layer of the anuran retina by Buzás, P, Jeges, S, Gábriel, R

    Published in Visual neuroscience (01-11-1996)
    “…The main route of information flow through the vertebrate retina is from the photoreceptors towards the ganglion cells whose axons form the optic nerve…”
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    Functional topography of single cortical cells: an intracellular approach combined with optical imaging by Buzás, Péter, Eysel, Ulf T, Kisvárday, Zoltán F

    Published in Brain research. Brain research protocols (01-11-1998)
    “…Pyramidal cells mediating long-range corticocortical connections have been assumed to play an important role in visual perceptual mechanisms [C.D. Gilbert,…”
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    Color signals in the primary visual cortex of marmosets by Buzás, Péter, Szmajda, Brett A, Hashemi-Nezhad, Maziar, Dreher, Bogdan, Martin, Paul R

    Published in Journal of vision (Charlottesville, Va.) (22-10-2008)
    “…This study concerns the input from short-wavelength sensitive (S) cone photoreceptors to the primary visual cortex (striate cortex, Brodmann area 17, area V1)…”
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  19. 19

    Independence of visuotopic representation and orientation map in the visual cortex of the cat by Buzás, Péter, Volgushev, Maxim, Eysel, Ulf T., Kisvárday, Zoltán F.

    Published in The European journal of neuroscience (01-08-2003)
    “…The representations of visual space and stimulus orientation were mapped in the cat primary visual cortex using electrophysiological recordings supplemented…”
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  20. 20

    Contribution of chromatic aberrations to color signals in the primate visual system by Forte, Jason D, Blessing, Esther M, Buzás, Peter, Martin, Paul R

    Published in Journal of vision (Charlottesville, Va.) (02-02-2006)
    “…We measured responses to red-green color variation in parvocellular (PC) neurons in the lateral geniculate nucleus of dichromatic ("red-green color blind")…”
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