Results for ' Visual Cortex'

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  1. Primary visual cortex and visual awareness.Frank Tong - 2003 - Nature Reviews Neuroscience 4 (3):219-229.
  2.  34
    Models of the Visual Cortex.David Rose & Vernon G. Dobson (eds.) - 1985 - New York: Wiley.
    A comprehensive and stimulating study which presents the views of 71 leading theorists on the underlying mechanisms and functions of the primary visual cortex.
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  3.  11
    Blindness, visual cortex, and visually evoked potentials.R. Spehlmann - 1983 - Behavioral and Brain Sciences 6 (3):461.
  4.  59
    Linking visual cortex to visual perception: An alternative to the gestalt bubble.Stephen Grossberg - 2003 - Behavioral and Brain Sciences 26 (4):412-413.
    Lehar's lively discussion builds on a critique of neural models of vision that is incorrect in its general and specific claims. He espouses a Gestalt perceptual approach rather than one consistent with the “objective neurophysiological state of the visual system” (target article, Abstract). Contemporary vision models realize his perceptual goals and also quantitatively explain neurophysiological and anatomical data.
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  5.  36
    Extrastriate visual cortex reorganizes despite sequential bilateral occipital stroke: implications for vision recovery.Amy Brodtmann, Aina Puce, David Darby & Geoffrey Donnan - 2015 - Frontiers in Human Neuroscience 9.
  6.  27
    Visualizing visual cortex in the mind's eye.Frank R. Freemon - 1978 - Behavioral and Brain Sciences 1 (3):353-353.
  7. Activity changes in early visual cortex reflect monkeys' percepts during binocular rivalry.David A. Leopold & Nikos K. Logothetis - 1996 - Nature 379 (6565):549-553.
  8.  50
    The role of primary visual cortex (v1) in visual awareness.Victor A. F. Lamme, H. Landman Super, P. R. R. Roelfsema & H. Spekreijse - 2000 - Vision Research 40 (10):1507-21.
  9.  55
    Unconscious activation of visual cortex in the damaged right hemisphere of a parietal patient with extinction.Geraint Rees, E. Wojciulik, Karen Clarke, Masud Husain, Christopher D. Frith & Julia Driver - 2000 - Brain 123 (8):1624-1633.
  10. Oscillatory responses in cat visual cortex exhibit inter-columnar synchronization which reflects global stimulus properties.Charles M. Gray, P. Kreiter Konig, Andreas K. Engel & Wolf Singer - 1992 - Nature 338:334-7.
  11.  26
    Sensitivity to syntax in visual cortex.Suzanne Dikker, Hugh Rabagliati & Liina Pylkkänen - 2009 - Cognition 110 (3):293-321.
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  12.  18
    Temporal coding in the visual cortex: New vistas on integration in the nervous system.Andreas K. Engel, P. Kreiter Konig & Schillen A. K. - 1992 - Trends in Neurosciences 15:218-26.
  13.  33
    Sensitivity to syntax in visual cortex.Liina Pylkkänen Suzanne Dikker, Hugh Rabagliati - 2009 - Cognition 110 (3):293.
  14.  32
    Category Selectivity of Human Visual Cortex in Perception of Rubin Face–Vase Illusion.Xiaogang Wang, Na Sang, Lei Hao, Yong Zhang, Taiyong Bi & Jiang Qiu - 2017 - Frontiers in Psychology 8.
  15.  8
    Spontaneous Activity in Primary Visual Cortex Relates to Visual Creativity.Yibo Wang, Junchao Li, Zengjian Wang, Bishan Liang, Bingqing Jiao, Peng Zhang, Yingying Huang, Hui Yang, Rengui Yu, Sifang Yu, Delong Zhang & Ming Liu - 2021 - Frontiers in Human Neuroscience 15.
    Cognitive and neural processes underlying visual creativity have attracted substantial attention. The current research uses a critical time point analysis to examine how spontaneous activity in the primary visual area is related to visual creativity. We acquired the functional magnetic resonance imaging data of 16 participants at the resting state and during performing a visual creative synthesis task. According to the CTPA, we then classified spontaneous activity in the PVA into critical time points, which reflect the (...)
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  16.  33
    Activation in visual cortex correlates with the awareness of stereoscopic depth.Gijs J. Brouwer, Raymond van Ee & Jens Schwarzbach - 2005 - Journal of Neuroscience 25 (45):10403-10413.
  17.  51
    Quantitative assessment of visual cortex function with fMRI at 7 Tesla—test–retest variability.Aini Ismafairus Abd Hamid, Oliver Speck & Michael B. Hoffmann - 2015 - Frontiers in Human Neuroscience 9.
  18.  46
    Can SSRIs enhance human visual cortex plasticity?Lagas Alice, Black Joanna, Stinear Cathy, Byblow Winston, Phillips Geraint, Russel Bruce, Kydd Robert & Thompson Benjamin - 2015 - Frontiers in Human Neuroscience 9.
  19.  15
    Intentionality in the visual cortex?Roland Puccetti - 1987 - Behavioral and Brain Sciences 10 (4):758.
  20.  9
    Flicker-Driven Responses in Visual Cortex Change during Matched-Frequency Transcranial Alternating Current Stimulation.Philipp Ruhnau, Christian Keitel, Chrysa Lithari, Nathan Weisz & Toralf Neuling - 2016 - Frontiers in Human Neuroscience 10.
  21. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.A. B. Bonds & E. J. DeBruyn - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 292.
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  22. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.Lamberto Maffei - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 334.
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  23. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.J. G. Daugman - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 96.
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  24. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.Leon N. Cooper - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 164.
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  25. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.P. Hammond - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 326.
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  26. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.Dan E. Nielsen - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 374.
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  27. Form analysis in visual cortex.Rudiger von der Heydt - 1995 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press.
  28. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.Yves Fregnac - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 172.
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  29. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.M. A. Georgeson - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 223.
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  30. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.N. V. Swindale - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 452.
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  31. Models of the Visual Cortex Edited by D. Rose and VG Dobson© 1985 John Wiley & Sons Ltd.Suzannah Bliss Tieman & Helmut Vb Hirsch - 1985 - In David Rose & Vernon Dobson (eds.), Models of the Visual Cortex. New York: Wiley.
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  32.  19
    Lateral Connections In The Visual Cortex Can Self-Organize Cooperatively With Multisize RFs Just As With Ocular Dominance and Orientation Columns.Joseph Sirosh & Risto Miikkulainen - 1996 - In Garrison W. Cottrell (ed.), Proceedings of the Eighteenth Annual Conference of the Cognitive Science Society. Lawrence Erlbaum. pp. 18--430.
  33.  95
    Are we aware of neural activity in primary visual cortex.Francis Crick & Christof Koch - 1995 - Nature 375:121-23.
  34.  62
    Mechanisms of Visual Perceptual Learning in Macaque Visual Cortex.Rufin Vogels - 2010 - Topics in Cognitive Science 2 (2):239-250.
    The neural mechanisms underlying behavioral improvement in the detection or discrimination of visual stimuli following learning are still ill understood. Studies in nonhuman primates have shown relatively small and, across studies, variable effects of fine discrimination learning in primary visual cortex when tested outside the context of the learned task. At later stages, such as extrastriate area V4, extensive practice in fine discrimination produces more consistent effects upon responses and neural tuning. In V1 and V4, the effects (...)
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  35.  45
    Transcranial magnetic stimulation of early visual cortex interferes with subjective visual awareness and objective forced-choice performance.Mika Koivisto, Henry Railo & Niina Salminen-Vaparanta - 2011 - Consciousness and Cognition 20 (2):288-298.
    In order to study whether there exist a period of activity in the human early visual cortex that contributes exclusively to visual awareness, we applied transcranial magnetic stimulation over the early visual cortex and measured subjective visual awareness during visual forced-choice symbol or orientation discrimination tasks. TMS produced one dip in awareness 60–120 ms after stimulus onset, while forced-choice orientation discrimination was suppressed between 60 and 90 ms and symbol discrimination between 60 and (...)
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  36.  66
    Visually Driven Activation in Macaque Areas V2 and V3 without Input from the Primary Visual Cortex.Michael C. Schmid & Mark A. Augath - unknown
    Creating focal lesions in primary visual cortex (V1) provides an opportunity to study the role of extra-geniculo-striate pathways for activating extrastriate visual cortex. Previous studies have shown that more than 95% of neurons in macaque area V2 and V3 stop firing after reversibly cooling V1 [1,2,3]. However, no studies on long term recovery in areas V2, V3 following permanent V1 lesions have been reported in the macaque. Here we use macaque fMRI to study area V2, V3 (...)
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  37.  33
    Low-level phenomenal vision despite unilateral destruction of primary visual cortex.Petra Stoerig & Erhardt Barth - 2001 - Consciousness and Cognition 10 (4):574-587.
    GY, an extensively studied human hemianope, is aware of salient visual events in his cortically blind field but does not call this ''vision.'' To learn whether he has low-level conscious visual sensations or whether instead he has gained conscious knowledge about, or access to, visual information that does not produce a conscious phenomenal sensation, we attempted to image process a stimulus s presented to the impaired field so that when the transformed stimulus T(s) was presented to the (...)
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  38. Synchronization of oscillatory responses in visual cortex correlates with perception in interocular rivalry.Pascal Fries, Pieter R. Roelfsema, Andreas K. Engel & Wolf Singer - 1997 - Proceedings of the National Academy of Sciences Usa 94:12699-12704.
  39.  3
    Repeated Application of Transcranial Diagnostic Ultrasound Towards the Visual Cortex Induced Illusory Visual Percepts in Healthy Participants.Nels Schimek, Zeb Burke-Conte, Justin Abernethy, Maren Schimek, Celeste Burke-Conte, Michael Bobola, Andrea Stocco & Pierre D. Mourad - 2020 - Frontiers in Human Neuroscience 14:500655.
    Transcranial magnetic stimulation (TMS) of the visual cortex can induce phosphenes as can non-diagnostic ultrasound, the latter while participants have closed their eyes during Stimulation. Here we sought to study potential alteration of a visual target (a white crosshair) due to application of diagnostic ultrasound to the visual cortex. We applied a randomized series of actual or sham diagnostic ultrasound to the visual cortex of healthy participants while they stared at a visual (...)
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  40.  54
    Neural mechanisms of spatial selective attention in areas v1, v2, and v4 of macaque visual cortex.Stephen Luck, Leonardo Chelazzi, Steven Hillyard & Robert Desimone - 1997 - Journal of Neurophysiology 77 (1):24-42.
  41. Predicting the stream of consciousness from activity in human visual cortex.John-Dylan Haynes & Geraint Rees - 2005 - Current Biology 15 (14):1301-7.
  42. Global effects of feature-based attention in human visual cortex.M. Saenz, G. T. Buracas & G. M. Boynton - 2002 - Nature Neuroscience 5 (7):631-632.
  43. High-Resolution 1H Chemical Shift Imaging in the Monkey Visual Cortex.Josef Pfeuffer - unknown
    Functionally distinct anatomic subdivisions of the brain can often be only a few millimeters in one or more dimensions. The study of metabolic differences in such structures by means of localized in vivo MR spectroscopy is therefore challenging, if not impossible. In fact, the spatial resolution of chemical shift imaging (CSI) in humans is typically in the range of centimeters. The aim of the present study was to optimize 1H CSI in monkeys and demonstrate the feasibility of high spatial resolutions (...)
     
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  44. Phase Locking of Single Neuron Activity to Theta Oscillations during Working Memory in Monkey Extrastriate Visual Cortex.Han Lee & Gregory V. Simpson - 2005 - Neuron 45:147-156.
    activity” has been considered to play a major role in the short-term maintenance of memories. Many studies since then have provided support for this view and greatly advanced our knowledge of the effects of stimulus type and modality on delay activity and its temporal dynamics. In humans, working memory has also been a subject of intense investigation using scalp and intracranial electroencephalography as well as magnetoencephalography, which provide estimates of local population activity. The published findings include reports of systematic changes (...)
     
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  45.  31
    Ignition’s glow: Ultra-fast spread of global cortical activity accompanying local “ignitions” in visual cortex during conscious visual perception.N. Noy, S. Bickel, E. Zion-Golumbic, M. Harel, T. Golan, I. Davidesco, C. A. Schevon, G. M. McKhann, R. R. Goodman, C. E. Schroeder, A. D. Mehta & R. Malach - 2015 - Consciousness and Cognition 35:206-224.
  46.  4
    Semantic Grounding of Novel Spoken Words in the Primary Visual Cortex.Max Garagnani, Evgeniya Kirilina & Friedemann Pulvermüller - 2021 - Frontiers in Human Neuroscience 15.
    Embodied theories of grounded semantics postulate that, when word meaning is first acquired, a link is established between symbol and corresponding semantic information present in modality-specific—including primary—sensorimotor cortices of the brain. Direct experimental evidence documenting the emergence of such a link, however, is still missing. Here, we present new neuroimaging results that provide such evidence. We taught participants aspects of the referential meaning of previously unknown, senseless novel spoken words by associating them with either a familiar action or a familiar (...)
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  47.  42
    Unconscious inference and conscious representation: Why primary visual cortex (v1) is directly involved in visual awareness.Zhicheng Lin - 2008 - Behavioral and Brain Sciences 31 (2):209-210.
    The extent to which visual processing can proceed in the visual hierarchy without awareness determines the magnitude of perceptual delay. Increasing data demonstrate that primary visual cortex (V1) is involved in consciousness, constraining the magnitude of visual delay. This makes it possible that visual delay is actually within the optimal lengths to allow sufficient computation; thus it might be unnecessary to compensate for visual delay.
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  48.  50
    Feature-linked synchronization of thalamic relay cell firing induced by feedback from the visual cortex.A. M. Sillito, H. E. Jones, G. L. Gerstein & D. C. West - 1994 - Nature 369:479-82.
  49.  35
    Figure–ground organization and the emergence of proto-objects in the visual cortex.Rüdiger von der Heydt - 2015 - Frontiers in Psychology 6.
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  50.  50
    On the relationship between interocular suppression in the primary visual cortex and binocular rivalry.Sengpiel Frank, Bonhoeffer Tobias, C. B. Freeman Tobe & Blakemore Colin - 2001 - Brain and Mind 2 (1):39-54.
    Both classical psychophysical work and recentfunctional imaging studies have suggested acritical role for the primary visual cortex(V1) in resolving the perceptual ambiguitiesexperienced during binocular rivalry. Here weexamine, by means of single-cell recordings andoptical imaging of intrinsic signals, thespatial characteristics of suppression elicitedby rival stimuli in cat V1. We find that the interocular suppression field of V1 neuronsis centred on the same position in space and isslightly larger (by a factor of 1.3) than theminimum response field, measured through thesame (...)
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