Search Results - "Buzás, Péter"

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  1. 1

    TRPM4 regulates hilar mossy cell loss in temporal lobe epilepsy by Mundrucz, Laura, Kecskés, Angéla, Henn-Mike, Nóra, Kóbor, Péter, Buzás, Péter, Vennekens, Rudi, Kecskés, Miklós

    Published in BMC biology (26-04-2023)
    “…Mossy cells comprise a large fraction of excitatory neurons in the hippocampal dentate gyrus, and their loss is one of the major hallmarks of temporal lobe…”
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  2. 2

    Projections of three subcortical visual centers to marmoset lateral geniculate nucleus by Zeater, Natalie, Buzás, Péter, Dreher, Bogdan, Grünert, Ulrike, Martin, Paul R.

    Published in Journal of comparative neurology (1911) (15-02-2019)
    “…The dorsal lateral geniculate nucleus receives projections from visuotopically organized subcortical nuclei, in addition to inputs from the retina, visual…”
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  3. 3

    Calibration of random dot stereograms and correlograms free of monocular cues by Radó, János, Sári, Zoltán, Buzás, Péter, Jandó, Gábor

    Published in Journal of vision (Charlottesville, Va.) (09-04-2020)
    “…Dynamic random dot stereograms (DRDSs) and correlograms (DRDCs) are cyclopean stimuli containing binocular depth cues that are ideally, invisible by one eye…”
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  4. 4

    Simple reaction times to cyclopean stimuli reveal that the binocular system is tuned to react faster to near than to far objects by Horváth, Gábor, Nemes, Vanda A, Radó, János, Czigler, András, Török, Béla, Buzás, Péter, Jandó, Gábor

    Published in PloS one (01-01-2018)
    “…Binocular depth perception is an important mechanism to segregate the visual scene for mapping relevant objects in our environment. Convergent evidence from…”
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  5. 5

    Temporal properties of colour opponent receptive fields in the cat lateral geniculate nucleus by Kóbor, Péter, Petykó, Zoltán, Telkes, Ildikó, Martin, Paul R., Buzás, Péter, Klausberger, Thomas

    Published in The European journal of neuroscience (01-06-2017)
    “…The primordial form of mammalian colour vision relies on opponent interactions between inputs from just two cone types, ‘blue’ (S‐) and ‘green’ (ML‐) cones. We…”
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  6. 6

    Identification of a pathway from the retina to koniocellular layer K1 in the lateral geniculate nucleus of marmoset by Percival, Kumiko A, Koizumi, Amane, Masri, Rania A, Buzás, Péter, Martin, Paul R, Grünert, Ulrike

    Published in The Journal of neuroscience (12-03-2014)
    “…Three well characterized pathways in primate vision (midget-parvocellular, parasol-magnocellular, bistratified-koniocellular) have been traced from the first…”
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  7. 7

    Connexin-36 distribution and layer-specific topography in the cat retina by Telkes, Ildikó, Kóbor, Péter, Orbán, József, Kovács-Öller, Tamás, Völgyi, Béla, Buzás, Péter

    Published in Brain Structure and Function (01-07-2019)
    “…Connexin-36 (Cx36) is the major constituent of mammalian retinal gap junctions positioned in key signal pathways. Here, we examined the laminar and large-scale…”
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  8. 8

    Geniculocortical relay of blue-off signals in the primate visual system by Szmajda, Brett A, Buzás, Péter, FitzGibbon, Thomas, Martin, Paul R

    “…A fundamental dichotomy in the subcortical visual system exists between on- and off-type neurons, which respectively signal increases and decreases of light…”
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    Transmission of colour and acuity signals by parvocellular cells in marmoset monkeys by Martin, Paul R., Blessing, Esther M., Buzás, Péter, Szmajda, Brett A., Forte, Jason D.

    Published in The Journal of physiology (01-06-2011)
    “…Non‐technical summary  Colour gets a free ride, according to our study of visual nerve cell responses in marmoset monkeys. All male marmosets are red–green…”
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  12. 12

    Regional Variation of Gap Junctional Connections in the Mammalian Inner Retina by Fusz, Katalin, Kovács-Öller, Tamás, Kóbor, Péter, Szabó-Meleg, Edina, Völgyi, Béla, Buzás, Péter, Telkes, Ildikó

    Published in Cells (Basel, Switzerland) (12-09-2021)
    “…The retinas of many species show regional specialisations that are evident in the differences in the processing of visual input from different parts of the…”
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  13. 13

    Neocortical axon arbors trade-off material and conduction delay conservation by Budd, Julian M L, Kovács, Krisztina, Ferecskó, Alex S, Buzás, Péter, Eysel, Ulf T, Kisvárday, Zoltán F

    Published in PLoS computational biology (01-03-2010)
    “…The brain contains a complex network of axons rapidly communicating information between billions of synaptically connected neurons. The morphology of…”
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  14. 14

    Effects of mental fatigue on the capacity limits of visual attention by Csathó, Árpád, van der Linden, Dimitri, Hernádi, István, Buzás, Péter, Kalmár, Gergely

    “…The literature indicates that mental fatigue, due to Time-on-Task (ToT), compromises the ability to ignore distractors. The present study elaborates on this…”
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  15. 15

    Model-based analysis of excitatory lateral connections in the visual cortex by Buzás, Péter, Kovács, Krisztina, Ferecskó, Alex S., Budd, Julian M.L., Eysel, Ulf T., Kisvárday, Zoltán F.

    Published in Journal of comparative neurology (1911) (20-12-2006)
    “…Excitatory lateral connections within the primary visual cortex are thought to link neurons with similar receptive field properties. Here we studied whether…”
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  16. 16

    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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  17. 17

    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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  18. 18

    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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  19. 19

    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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  20. 20

    Visual short-term memory for crossed and uncrossed binocular disparities by Nemes, Vanda Ágnes, Radó, János, Fülöp, Diána, Mikó-Baráth, Eszter, Hamvas, Imola, Jandó, Gábor, Buzás, Péter

    Published in PloS one (22-10-2024)
    “…Previous work on visual short-term memory (VSTM) has encompassed various stimulus attributes including spatial frequency, color, and contrast, revealing…”
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