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  1. Is the P300 component a manifestation of context updating?Emanuel Donchin & Michael G. H. Coles - 1988 - Behavioral and Brain Sciences 11 (3):357.
    To understand the endogenous components of the event-related brain potential (ERP), we must use data about the components' antecedent conditions to form hypotheses about the information-processing function of the underlying brain activity. These hypotheses, in turn, generate testable predictions about the consequences of the component. We review the application of this approach to the analysis of the P300 component. The amplitude of the P300 is controlled multiplicatively by the subjective probability and the task relevance of the eliciting events, whereas its (...)
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  • Detection in metacontrast.Peter H. Schiller & Marilyn C. Smith - 1966 - Journal of Experimental Psychology 71 (1):32.
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  • Replication of reaction time to stimuli masked by metacontrast.Keith Harrison & Robert Fox - 1966 - Journal of Experimental Psychology 71 (1):162.
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  • Attention and consciousness: two distinct brain processes.Christof Koch & Naotsugu Tsuchiya - 2007 - Trends in Cognitive Sciences 11 (1):16-22.
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  • Visual awareness of low-contrast stimuli is reflected in event-related brain potentials.Ville Ojanen, Antti Revonsuo & Mikko Sams - 2003 - Psychophysiology 40 (2):192-197.
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  • Timing of the earliest ERP correlate of visual awareness.Maria Wilenius & Antti Revonsuo - 2007 - Psychophysiology 44 (5):703-710.
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  • Why visual attention and awareness are different.Victor A. F. Lamme - 2003 - Trends in Cognitive Sciences 7 (1):12-18.
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  • Timing of the brain events underlying access to consciousness during the attentional blink.Claire Sergent, Sylvain Baillet & Stanislas Dehaene - 2005 - Nature Neuroscience 8 (10):1391-1400.
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  • Independence of visual awareness from the scope of attention: An electrophysiological study.Mika Koivisto, Antti Revonsuo & Minna Lehtonen - 2006 - Cerebral Cortex 16 (3):415-424.
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  • Separate neural definitions of visual consciousness and visual attention: A case for phenomenal awareness.Victor A. F. Lamme - 2004 - Neural Networks 17 (5):861-872.
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  • Competition for consciousness among visual events: The psychophysics of reentrant visual processes.Vincent Di Lollo, James T. Enns & Ronald A. Rensink - 2000 - Journal Of Experimental Psychology-General 129 (4):481-507.
    Advances in neuroscience implicate reentrant signaling as the predominant form of communication between brain areas. This principle was used in a series of masking experiments that defy explanation by feed-forward theories. The masking occurs when a brief display of target plus mask is continued with the mask alone. Two masking processes were found: an early process affected by physical factors such as adapting luminance and a later process affected by attentional factors such as set size. This later process is called (...)
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  • An ERP study of change detection, change blindness, and visual awareness.Mika Koivisto & Antti Revonsuo - 2003 - Psychophysiology 40 (3):423-429.
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  • Visual awareness of objects correlates with activity of right occipital cortex.S. Vanni, Antti Revonsuo, J. Saarinen & R. Hari - 1996 - Neuroreport 8:183-186.
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  • Consciousness, Accessibility, and the Mesh between Psychology and Neuroscience.Ned Block - 2007 - Behavioral and Brain Sciences 30 (5):481--548.
    How can we disentangle the neural basis of phenomenal consciousness from the neural machinery of the cognitive access that underlies reports of phenomenal consciousness? We can see the problem in stark form if we ask how we could tell whether representations inside a Fodorian module are phenomenally conscious. The methodology would seem straightforward: find the neural natural kinds that are the basis of phenomenal consciousness in clear cases when subjects are completely confident and we have no reason to doubt their (...)
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  • Towards a cognitive neuroscience of consciousness: Basic evidence and a workspace framework.Stanislas Dehaene & Lionel Naccache - 2001 - Cognition 79 (1):1-37.
    This introductory chapter attempts to clarify the philosophical, empirical, and theoretical bases on which a cognitive neuroscience approach to consciousness can be founded. We isolate three major empirical observations that any theory of consciousness should incorporate, namely (1) a considerable amount of processing is possible without consciousness, (2) attention is a prerequisite of consciousness, and (3) consciousness is required for some specific cognitive tasks, including those that require durable information maintenance, novel combinations of operations, or the spontaneous generation of intentional (...)
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  • (2 other versions)On a confusion about a function of consciousness.Ned Block - 1995 - Brain and Behavioral Sciences 18 (2):227-–247.
    Consciousness is a mongrel concept: there are a number of very different "consciousnesses." Phenomenal consciousness is experience; the phenomenally conscious aspect of a state is what it is like to be in that state. The mark of access-consciousness, by contrast, is availability for use in reasoning and rationally guiding speech and action. These concepts are often partly or totally conflated, with bad results. This target article uses as an example a form of reasoning about a function of "consciousness" based on (...)
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  • Is conscious perception gradual or dichotomous? A comparison of report methodologies during a visual task.Morten Overgaard, Julian Rote, Kim Mouridsen & Thomas Zoëga Ramsøy - 2006 - Consciousness and Cognition 15 (4):700-708.
    In a recent article, [Sergent, C. & Dehaene, S. . Is consciousness a gradual phenomenon? Evidence for an all-or-none bifurcation during the attentional blink, Psychological Science, 15, 720–729] claim to give experimental support to the thesis that there is a clear transition between conscious and unconscious perception. This idea is opposed to theoretical arguments that we should think of conscious perception as a continuum of clarity, with e.g., fringe conscious states [Mangan, B. . Sensation’s ghost—the non-sensory “fringe” of consciousness, Psyche, (...)
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  • Fast backprojections from the motion to the primary visual area necessary for visual awareness.Alvaro Pascual-Leone & Vincent Walsh - 2001 - Science 292 (5516):510-512.
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  • 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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  • The conscious access hypothesis: Origins and recent evidence.Bernard J. Baars - 2002 - Trends in Cognitive Sciences 6 (1):47-52.
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  • Quantitative theories of metacontrast masking.Gregory Francis - 2000 - Psychological Review 107 (4):768-785.
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  • Reaction time to stimuli masked by metacontrast.Elizabeth Fehrer & David Raab - 1962 - Journal of Experimental Psychology 63 (2):143.
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  • Inattentional amnesia.Jeremy Wolfe - 1999 - Journal of Mental Imagery 29 (3-4):71-94.
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  • Is consciousness a gradual phenomenon? Evidence for an all-or-none bifurcation during the attentional blink.Claire Sergent & Stanislas Dehaene - 2004 - Psychological Science 15 (11):720-728.
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  • Visual attention modulates metacontrast masking.Vilayanur S. Ramachandran & Steve Cobb - 1995 - Nature 373:66-68.
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  • Feedback contributions to visual awareness in human occipital cortex.Tony Ro, Bruno Breitmeyer, Philip Burton, Neel S. Singhal & David Lane - 2003 - Current Biology 13 (12):1038-1041.
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  • Double dissociation of v1 and V5/MT activity in visual awareness.Juha Silvanto, Nilli Lavie & Vincent Walsh - 2005 - Cerebral Cortex 15 (11):1736-1741.
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  • The neural correlates of conscious vision.Delphine Pins & D. H. Ffytche - 2003 - Cerebral Cortex 13 (5):461-74.
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