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  1. The functions of consciousness.Bernard J. Baars - 1988 - In A Cognitive Theory of Consciousness. New York: Cambridge University Press.
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  • A Cognitive Theory of Consciousness.Bernard J. Baars - 1988 - New York: Cambridge University Press.
    Conscious experience is one of the most difficult and thorny problems in psychological science. Its study has been neglected for many years, either because it was thought to be too difficult, or because the relevant evidence was thought to be poor. Bernard Baars suggests a way to specify empirical constraints on a theory of consciousness by contrasting well-established conscious phenomena - such as stimulus representations known to be attended, perceptual, and informative - with closely comparable unconscious ones - such as (...)
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  • Interoceptive inference, emotion, and the embodied self.Anil K. Seth - 2013 - Trends in Cognitive Sciences 17 (11):565-573.
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  • Selective visual attention and perceptual coherence.John T. Serences & Steven Yantis - 2006 - Trends in Cognitive Sciences 10 (1):38-45.
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  • General Markers of Conscious Visual Perception and Their Timing.Renate Rutiku, Jaan Aru & Talis Bachmann - 2016 - Frontiers in Human Neuroscience 10.
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  • Medial Prefrontal and Anterior Insular Connectivity in Early Schizophrenia and Major Depressive Disorder: A Resting Functional MRI Evaluation of Large-Scale Brain Network Models.Jacob Penner, Kristen A. Ford, Reggie Taylor, Betsy Schaefer, Jean Théberge, Richard W. J. Neufeld, Elizabeth A. Osuch, Ravi S. Menon, Nagalingam Rajakumar, John M. Allman & Peter C. Williamson - 2016 - Frontiers in Human Neuroscience 10.
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  • No iconic memory without attention.Arien Mack, Muge Erol, Jason Clarke & John Bert - 2016 - Consciousness and Cognition 40:1-8.
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  • The brain basis of emotion: A meta-analytic review.Kristen A. Lindquist, Tor D. Wager, Hedy Kober, Eliza Bliss-Moreau & Lisa Feldman Barrett - 2012 - Behavioral and Brain Sciences 35 (3):121-143.
    Researchers have wondered how the brain creates emotions since the early days of psychological science. With a surge of studies in affective neuroscience in recent decades, scientists are poised to answer this question. In this target article, we present a meta-analytic summary of the neuroimaging literature on human emotion. We compare the locationist approach (i.e., the hypothesis that discrete emotion categories consistently and specifically correspond to distinct brain regions) with the psychological constructionist approach (i.e., the hypothesis that discrete emotion categories (...)
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  • The neural correlate of (un)awareness: Lessons from the vegetative state.Steven Laureys - 2005 - Trends in Cognitive Sciences 9 (12):556-559.
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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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  • Salience, relevance, and firing: a priority map for target selection.Jillian H. Fecteau & Douglas P. Munoz - 2006 - Trends in Cognitive Sciences 10 (8):382-390.
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  • A dual-networks architecture of top-down control.Nico U. F. Dosenbach, Damien A. Fair, Alexander L. Cohen, Bradley L. Schlaggar & Steven E. Petersen - 2008 - Trends in Cognitive Sciences 12 (3):99-105.
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  • The neural correlates of visual self-recognition.Christel Devue & Serge Brédart - 2011 - Consciousness and Cognition 20 (1):40-51.
    This paper presents a review of studies that were aimed at determining which brain regions are recruited during visual self-recognition, with a particular focus on self-face recognition. A complex bilateral network, involving frontal, parietal and occipital areas, appears to be associated with self-face recognition, with a particularly high implication of the right hemisphere. Results indicate that it remains difficult to determine which specific cognitive operation is reflected by each recruited brain area, in part due to the variability of used control (...)
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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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  • Conscious, preconscious, and subliminal processing: A testable taxonomy.Stanislas Dehaene, Jean-Pierre Changeux, Lionel Naccache, Jérôme Sackur & Claire Sergent - 2006 - Trends in Cognitive Sciences 10 (5):204-211.
    Amidst the many brain events evoked by a visual stimulus, which are specifically associated with conscious perception, and which merely reflect non-conscious processing? Several recent neuroimaging studies have contrasted conscious and non-conscious visual processing, but their results appear inconsistent. Some support a correlation of conscious perception with early occipital events, others with late parieto-frontal activity. Here we attempt to make sense of those dissenting results. On the basis of a minimal neuro-computational model, the global neuronal workspace hypothesis, we propose a (...)
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  • What is the Bandwidth of Perceptual Experience?Michael A. Cohen, Daniel C. Dennett & Nancy Kanwisher - 2016 - Trends in Cognitive Sciences 20 (5):324-335.
    Although our subjective impression is of a richly detailed visual world, numerous empirical results suggest that the amount of visual information observers can perceive and remember at any given moment is limited. How can our subjective impressions be reconciled with these objective observations? Here, we answer this question by arguing that, although we see more than the handful of objects, claimed by prominent models of visual attention and working memory, we still see far less than we think we do. Taken (...)
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  • The attentional requirements of consciousness.Michael A. Cohen, Patrick Cavanagh, Marvin M. Chun & Ken Nakayama - 2012 - Trends in Cognitive Sciences 16 (8):411-417.
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  • Dynamic cooperation and competition between brain systems during cognitive control.Luca Cocchi, Andrew Zalesky, Alex Fornito & Jason B. Mattingley - 2013 - Trends in Cognitive Sciences 17 (10):493-501.
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  • Perceptual consciousness overflows cognitive access.Ned Block - 2011 - Trends in Cognitive Sciences 15 (12):567-575.
    One of the most important issues concerning the foundations ofconscious perception centerson thequestion of whether perceptual consciousness is rich or sparse. The overflow argument uses a form of ‘iconic memory’ toarguethatperceptual consciousnessisricher (i.e.,has a higher capacity) than cognitive access: when observing a complex scene we are conscious of more than we can report or think about. Recently, the overflow argumenthas been challenged both empirically and conceptually. This paper reviews the controversy, arguing that proponents of sparse perception are committed to the (...)
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  • 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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  • Top-down versus bottom-up attentional control: a failed theoretical dichotomy.Edward Awh, Artem V. Belopolsky & Jan Theeuwes - 2012 - Trends in Cognitive Sciences 16 (8):437.
    Prominent models of attentional control assert a dichotomy between top-down and bottom-up control, with the former determined by current selection goals and the latter determined by physical salience. This theoretical dichotomy, however, fails to explain a growing number of cases in which neither current goals nor physical salience can account for strong selection biases. For example, equally salient stimuli associated with reward can capture attention, even when this contradicts current selection goals. Thus, although 'top-down' sources of bias are sometimes defined (...)
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  • Inattentional Blindness.Arien Mack & Irvin Rock - 1998 - MIT Press. Edited by Richard D. Wright.
    Arien Mack and Irvin Rock make the radical claim that there is no conscious perception of the visual world without attention to it.
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  • We See More Than We Can Report “Cost Free” Color Phenomenality Outside Focal Attention.Zohar Z. Bronfman, Noam Brezis, Hilla Jacobson & Marius Usher - 2014 - Psychological Science 25 (7):1394-1403.
    The distinction between access consciousness and phenomenal consciousness is a subject of intensive debate. According to one view, visual experience overflows the capacity of the attentional and working memory system: We see more than we can report. According to the opposed view, this perceived richness is an illusion—we are aware only of information that we can subsequently report. This debate remains unresolved because of the inevitable reliance on report, which is limited in capacity. To bypass this limitation, this study utilized (...)
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  • Rapid natural scene categorization in the near absence of attention.F. F. Li, R. VanRullen, C. Koch & P. Perona - 2002 - Proceedings of the National Academy of Sciences of the United States of America 99 (14):9596.
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  • Attended but unseen: Visual attention is not sufficient for visual awareness.R. W. Kentridge, T. C. W. Nijboer & C. A. Heywood - 2008 - Neuropsychologia 46 (3):864-869.
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  • Change blindness and time to consciousness.Michael Niedeggen, Petra Wichmann & Petra Stoerig - 2001 - European Journal of Neuroscience 14 (10):1719-1726.
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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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  • 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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  • Brain dynamics underlying the nonlinear threshold for access to consciousness.Antoine Del Cul, Sylvain Baillet & Stanislas Dehaene - 2007 - Public Library of Science, Biology 5 (10):e260.
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  • Auditory processing in severely brain injured patients: Differences between the minimally conscious state and the persistent vegetative state.Melanie Boly, Marie-Elisabeth E. Faymonville & Philippe Peigneux - 2004 - Archives of Neurology 61 (2):233-238.
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  • Induced gamma-band oscillations correlate with awareness in hemianopic patient GY.Aaron Schurger, Alan Cowey & Catherine Tallon-Baudry - 2006 - Neuropsychologia 44 (10):1796-1803.
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  • Baseline brain activity fluctuations predict somatosensory perception in humans.Steven Laureys - manuscript
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