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  1. Introduction to Research Topic – Binocular Rivalry: A Gateway to Studying Consciousness.Alexander Maier, Theofanis I. Panagiotaropoulos, Naotsugu Tsuchiya & Georgios A. Keliris - 2012 - Frontiers in Human Neuroscience 6.
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  • Features of similarity.Amos Tversky - 1977 - Psychological Review 84 (4):327-352.
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  • Towards a computational theory of experience.Tomer Fekete & Shimon Edelman - 2011 - Consciousness and Cognition 20 (3):807-827.
    A standing challenge for the science of mind is to account for the datum that every mind faces in the most immediate – that is, unmediated – fashion: its phenomenal experience. The complementary tasks of explaining what it means for a system to give rise to experience and what constitutes the content of experience (qualia) in computational terms are particularly challenging, given the multiple realizability of computation. In this paper, we identify a set of conditions that a computational theory must (...)
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  • 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.
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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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  • Quantum information theoretic approach to the mind–brain problem.Danko D. Georgiev - 2020 - Progress in Biophysics and Molecular Biology 158:16-32.
    The brain is composed of electrically excitable neuronal networks regulated by the activity of voltage-gated ion channels. Further portraying the molecular composition of the brain, however, will not reveal anything remotely reminiscent of a feeling, a sensation or a conscious experience. In classical physics, addressing the mind–brain problem is a formidable task because no physical mechanism is able to explain how the brain generates the unobservable, inner psychological world of conscious experiences and how in turn those conscious experiences steer the (...)
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  • Modeling Mental Qualities.Andrew Y. Lee - 2021 - The Philosophical Review 130 (2):263-209.
    Conscious experiences are characterized by mental qualities, such as those involved in seeing red, feeling pain, or smelling cinnamon. The standard framework for modeling mental qualities represents them via points in geometrical spaces, where distances between points inversely correspond to degrees of phenomenal similarity. This paper argues that the standard framework is structurally inadequate and develops a new framework that is more powerful and flexible. The core problem for the standard framework is that it cannot capture precision structure: for example, (...)
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  • Inner privacy of conscious experiences and quantum information.Danko D. Georgiev - 2020 - Biosystems 187:104051.
    The human mind is constituted by inner, subjective, private, first-person conscious experiences that cannot be measured with physical devices or observed from an external, objective, public, third-person perspective. The qualitative, phenomenal nature of conscious experiences also cannot be communicated to others in the form of a message composed of classical bits of information. Because in a classical world everything physical is observable and communicable, it is a daunting task to explain how an empirically unobservable, incommunicable consciousness could have any physical (...)
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  • A quantum geometric model of similarity.Emmanuel M. Pothos, Jerome R. Busemeyer & Jennifer S. Trueblood - 2013 - Psychological Review 120 (3):679-696.
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  • (2 other versions)How to think about mental qualities.David Rosenthal - 2010 - Philosophical Issues 20 (1):368-393.
    It’s often held that undetectable inversion of mental qualities is, if not possible, at least conceivable. It’s thought to be conceivable that the mental quality your visual states exhibit when you see something red in standard conditions is literally of the same type as the mental quality my visual states exhibit when I see something green in such circumstances. It’s thought, moreover, to be conceivable that such inversion of mental qualities could be wholly undetectable by any third-person means. And since (...)
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  • A framework for consciousness.Francis Crick & Christof Koch - 2003 - Nature Neuroscience 6:119-26.
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  • Qualia space.Richard P. Stanley - 1999 - Journal of Consciousness Studies 6 (1):49-60.
    We define qualia space Q to be the space of all possible conscious experience. For simplicity we restrict ourselves to perceptual experience only, though other kinds of experience could also be considered. Qualia space is a highly idealized concept that unifies the perceptual experience of all possible brains. We argue that Q is a closed pointed cone in an infinite-dimensional separable real topological vector space. This quite technical structure can be explained for the most part in a simple, intuitive way. (...)
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  • (1 other version)Category Theory.S. Awodey - 2007 - Bulletin of Symbolic Logic 13 (3):371-372.
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  • Neural bases of binocular rivalry.Frank Tong, Ming Meng & Randolph Blake - 2006 - Trends in Cognitive Sciences 10 (11):502-511.
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  • Consciousness and topologically structured phenomenal spaces.Robert Prentner - 2019 - Consciousness and Cognition 70:25-38.
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  • Rating the similarity of simple perceptual stimuli: asymmetries induced by manipulating exposure frequency.Thad A. Polk, Charles Behensky, Richard Gonzalez & Edward E. Smith - 2002 - Cognition 82 (3):B75-B88.
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  • Going Beyond the Data as the Patching (Sheaving) of Local Knowledge.Steven Phillips - 2018 - Frontiers in Psychology 9.
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