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  1. Toward a theory of visual consciousness.Semir Zeki & Andreas Bartels - 1999 - Consciousness and Cognition 8 (2):225-59.
    The visual brain consists of several parallel, functionally specialized processing systems, each having several stages (nodes) which terminate their tasks at different times; consequently, simultaneously presented attributes are perceived at the same time if processed at the same node and at different times if processed by different nodes. Clinical evidence shows that these processing systems can act fairly autonomously. Damage restricted to one system compromises specifically the perception of the attribute that that system is specialized for; damage to a given (...)
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  • 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 normal hemifield it (...)
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  • Temporal binding, binocular rivalry, and consciousness.Andreas K. Engel, Pascal Fries, Peter König, Michael Brecht & Wolf Singer - 1999 - Consciousness and Cognition 8 (2):128-51.
    Cognitive functions like perception, memory, language, or consciousness are based on highly parallel and distributed information processing by the brain. One of the major unresolved questions is how information can be integrated and how coherent representational states can be established in the distributed neuronal systems subserving these functions. It has been suggested that this so-called ''binding problem'' may be solved in the temporal domain. The hypothesis is that synchronization of neuronal discharges can serve for the integration of distributed neurons into (...)
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  • 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.
  • Neural correlates of consciousness in humans.Geraint Rees, G. Kreiman & Christof Koch - 2002 - Nature Reviews Neuroscience 3 (4):261-270.
  • Cerebral mechanisms of word masking and unconscious repetition priming.Stanislas Dehaene, Lionel Naccache, L. Jonathan Cohen, Denis Le Bihan, Jean-Francois Mangin, Jean-Baptiste Poline & Denis Rivière - 2001 - Nature Neuroscience 4 (7):752-758.
  • Consciousness and the binding problem.Wolf Singer - 2001 - Annals of the New York Academy of Sciences 929:123-46.
  • Conscious visual perception without V.J. L. Barbur, J. D. G. Watson, R. D. G. Frackowiak & Semir Zeki - 1993 - Brain 116:1293-1302.
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  • The riddoch syndrome: Insights into the neurobiology of conscious vision.Semir Zeki & D. H. Ffytche - 1998 - Brain 121:25-45.
  • Visual perception and phenomenal consciousness.Petra Stoerig & Alan Cowey - 1995 - Behavioural Brain Research 71:147-156.
  • Blindsight: The role of feedforward and feedback corticocortical connections.Victor A. F. Lamme - 2001 - Acta Psychologica 107 (1):209-228.
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  • Toward a neurobiological theory of consciousness.Francis Crick & Christof Koch - 1990 - Seminars in the Neurosciences 2:263-275.