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  1. From the Phenomenology to the Mechanisms of Consciousness: Integrated Information Theory 3.0.Masafumi Oizumi, Larissa Albantakis & Giulio Tononi - 2014 - PLOS Computational Biology 10 (5):e1003588.
    This paper presents Integrated Information Theory of consciousness 3.0, which incorporates several advances over previous formulations. IIT starts from phenomenological axioms: information says that each experience is specific a sh it is what it is by how it differs from alternative experiences; integration says that it is unified a sh irreducible to non-interdependent components; exclusion says that it has unique borders and a particular spatio-temporal grain. These axioms are formalized into postulates that prescribe how physical mechanisms, such as neurons or (...)
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  • “What is it like to be a bat?”—a pathway to the answer from the integrated information theory.Tsuchiya Naotsugu - 2017 - Philosophy Compass 12 (3):e12407.
    What does it feel like to be a bat? Is conscious experience of echolocation closer to that of vision or audition? Or do bats process echolocation nonconsciously, such that they do not feel anything about echolocation? This famous question of bats' experience, posed by a philosopher Thomas Nagel in 1974, clarifies the difficult nature of the mind–body problem. Why a particular sense, such as vision, has to feel like vision, but not like audition, is totally puzzling. This is especially so (...)
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  • Towards a true neural stance on consciousness.Victor A. F. Lamme - 2006 - Trends in Cognitive Sciences 10 (11):494-501.
  • The unfolding argument: Why IIT and other causal structure theories cannot explain consciousness.Adrien Doerig, Aaron Schurger, Kathryn Hess & Michael H. Herzog - 2019 - Consciousness and Cognition 72:49-59.
  • Consciousness and the Collapse of the Wave Function.David J. Chalmers & Kelvin J. McQueen - 2022 - In Shan Gao (ed.), Consciousness and Quantum Mechanics. Oxford University Press.
    Does consciousness collapse the quantum wave function? This idea was taken seriously by John von Neumann and Eugene Wigner but is now widely dismissed. We develop the idea by combining a mathematical theory of consciousness (integrated information theory) with an account of quantum collapse dynamics (continuous spontaneous localization). Simple versions of the theory are falsified by the quantum Zeno effect, but more complex versions remain compatible with empirical evidence. In principle, versions of the theory can be tested by experiments with (...)
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  • The information integration theory of consciousness.Giulio Tononi - 2007 - In Max Velmans & Susan Schneider (eds.), The Blackwell Companion to Consciousness. Blackwell. pp. 287--299.
  • Integrated Information Theory: From Consciousness to Its Physical Substrate.Giulio Tononi, Melanie Boly, Marcello Massimini & Christof Koch - 2016 - Nature Reviews Neuroscience 17 (7):450--461.
    Uncovering the neural basis of consciousness is a major challenge to neuroscience. In this Perspective, Tononi and colleagues describe the integrated information theory of consciousness and how it might be used to answer outstanding questions about the nature of consciousness.
     
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  • The watercolor effect: Quantitative evidence for luminance-dependent mechanisms of long-range color assimilation.F. Devinck, P. B. Delahunt, J. L. Hardy, L. Spillmann & J. S. Werner - unknown
    When a dark chromatic contour delineating a figure is flanked on the inside by a brighter chromatic contour, the brighter color will spread into the entire enclosed area. This is known as the watercolor effect. Here we quantified the effect of color spreading using both color-matching and hue-cancellation tasks. Over a wide range of stimulus chromaticities, there was a reliable shift in color appearance that closely followed the direction of the inducing contour. When the contours were equated in luminance, the (...)
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  • Consciousness: Here, There and Everywhere?Giulio Tononi & Christof Koch - 2015 - Philosophical Transactions of the Royal Society B: Biological Sciences 370 (1668):20140167.
    The science of consciousness has made great strides by focusing on the behavioural and neuronal correlates of experience. However, while such correlates are important for progress to occur, they are not enough if we are to understand even basic facts, for example, why the cerebral cortex gives rise to consciousness but the cerebellum does not, though it has even more neurons and appears to be just as complicated. Moreover, correlates are of little help in many instances where we would like (...)
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