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  1. The Brain Is Both Neurocomputer and Quantum Computer.Stuart R. Hameroff - 2007 - Cognitive Science 31 (6):1035-1045.
    _Figure 1. Dendrites and cell bodies of schematic neurons connected by dendritic-dendritic gap junctions form a laterally connected input_ _layer (“dendritic web”) within a neurocomputational architecture. Dendritic web dynamics are temporally coupled to gamma synchrony_ _EEG, and correspond with integration phases of “integrate and fire” cycles. Axonal firings provide input to, and output from, integration_ _phases (only one input, and three output axons are shown). Cell bodies/soma contain nuclei shown as black circles; microtubule networks_ _pervade the cytoplasm. According to the (...)
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  • Quantum mathematical cognition requires quantum brain biology: The “Orch OR” theory.Stuart R. Hameroff - 2013 - Behavioral and Brain Sciences 36 (3):287-290.
    The theory suggests that quantum computations in brain neuronal dendritic-somatic microtubules regulate axonal firings to control conscious behavior. Within microtubule subunit proteins, collective dipoles in arrays of contiguous amino acid electron clouds enable suitable for topological dipole able to physically represent cognitive values, for example, those portrayed by Pothos & Busemeyer (P&B) as projections in abstract Hilbert space.
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  • Quantum Walks in Brain Microtubules—A Biomolecular Basis for Quantum Cognition?Stuart Hameroff - 2014 - Topics in Cognitive Science 6 (1):91-97.
    Cognitive decisions are best described by quantum mathematics. Do quantum information devices operate in the brain? What would they look like? Fuss and Navarro () describe quantum lattice registers in which quantum superpositioned pathways interact (compute/integrate) as ‘quantum walks’ akin to Feynman's path integral in a lattice (e.g. the ‘Feynman quantum chessboard’). Simultaneous alternate pathways eventually reduce (collapse), selecting one particular pathway in a cognitive decision, or choice. This paper describes how quantum walks in a Feynman chessboard are conceptually identical (...)
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  • Anesthesia: The "other side" of consciousness.Stuart Hameroff - 2001 - Consciousness and Cognition 10 (2):217-229.
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  • Consciousness, the High Probability of Afterlife, and Intelligence Evolution in the Universe/s (13th edition).K. L. Senarath Dayathilake - 2023 - Cambridge.Org.
    This article explores the enduring mysteries of consciousness and the afterlife, two enigmatic topics that have fascinated humanity for ages. Despite extensive scientific efforts, the existence of an afterlife remains unproven, and understanding consciousness remains a significant challenge. The research introduces innovative hypotheses through simple thought experiments with empirical evidence and robust theoretical foundations. It delves into the complexities of consciousness, its relationship with the brain, and the need for interdisciplinary approaches including philosophy. Boldly contemplating the probability of a continuous (...)
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  • Is the mind a quantum computer?Claudio Calosi - 2013 - Epistemologia 36 (2):194-206.
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  • Is the mind a quantum computer?Claudio Calosi - 2014 - Epistemologia 2:194-206.
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  • Why there are no good arguments for any interesting version of determinism.Mark Balaguer - 2009 - Synthese 168 (1):1 - 21.
    This paper considers the empirical evidence that we currently have for various kinds of determinism that might be relevant to the thesis that human beings possess libertarian free will. Libertarianism requires a very strong version of indeterminism, so it can be refuted not just by universal determinism, but by some much weaker theses as well. However, it is argued that at present, we have no good reason to believe even these weak deterministic views and, hence, no good reason—at least from (...)
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  • Consciousness: Mapping the theoretical landscape.Anthony P. Atkinson, Michael S. C. Thomas & Axel Cleeremans - 2000 - Trends in Cognitive Sciences 4 (10):372-382.
    What makes us conscious? Many theories that attempt to answer this question have appeared recently in the context of widespread interest about consciousness in the cognitive neurosciences. Most of these proposals are formulated in terms of the information processing conducted by the brain. In this overview, we survey and contrast these models. We first delineate several notions of consciousness, addressing what it is that the various models are attempting to explain. Next, we describe a conceptual landscape that addresses how the (...)
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  • "Consciousness". Selected Bibliography 1970 - 2004.Thomas Metzinger - unknown
    This is a bibliography of books and articles on consciousness in philosophy, cognitive science, and neuroscience over the last 30 years. There are three main sections, devoted to monographs, edited collections of papers, and articles. The first two of these sections are each divided into three subsections containing books in each of the main areas of research. The third section is divided into 12 subsections, with 10 subject headings for philosophical articles along with two additional subsections for articles in cognitive (...)
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  • Dual Aspect Framework for Consciousness and Its Implications: West meets East.Ram Lakhan Pandey Vimal - 2009 - In George Derfer, Zhihe Wang & Michel Weber (eds.), The Roar of Awakening: A Whiteheadian Dialogue Between Western Psychotherapies and Eastern Worldviews. Ontos Verlag. pp. 39.
    The extended dual-aspect monism framework of consciousness, based on neuroscience, consists of five components: (1) dual-aspect primal entities; (2) neural-Darwinism: co-evolution and co-development of subjective experiences (SEs) and associated neural-nets from the mental aspect (that carries the SEs/proto-experiences (PEs) in superposed and unexpressed form) and the material aspect (mass, charge, spin and space-time) of fundamental entities (elementary particles), respectively and co-tuning via sensorimotor interaction; (3) matching and selection processes: interaction of two modes, namely, (a) the non-tilde mode that is the (...)
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  • Conscious Experience and Quantum Consciousness Theory: Theories, Causation, and Identity.Mika Suojanen - 2019 - E-Logos Electronic Journal for Philosophy 26 (2):14-34.
    Generally speaking, the existence of experience is accepted, but more challenging has been to say what experience is and how it occurs. Moreover, philosophers and scholars have been talking about mind and mental activity in connection with experience as opposed to physical processes. Yet, the fact is that quantum physics has replaced classical Newtonian physics in natural sciences, but the scholars in humanities and social sciences still operate under the obsolete Newtonian model. There is already a little research in which (...)
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  • Caterpillars and consciousness.Arthur S. Reber - 1997 - Philosophical Psychology 10 (4):437-49.
    The dominant position in the field of artificial intelligence (AI) is computationalism where the operative principle is that cognition in general and consciousness in particular can be captured by identification of the proper set of computations. This position has been attacked from several angles, most effectively, in my opinion, by John Searle in his now famous Chinese Room thought experiment. I critique this Searlean perspective on the grounds that, while it is probably correct in its essentials, it does not go (...)
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  • Jñānagarbha and the “God's‐eye view”.Ilkka Pyysiäinen - 1996 - Asian Philosophy 6 (3):197-206.
    In trying to define the difference between conventional and ultimate truth, the Mādhyamika Buddhist author Jñānagarbha ends up in paradoxical formulations. Putnam's discussion of Nietzsche's remark that “as the circle of science grows larger it touches paradox at more places” is presented as an illustration for Jñānagarbha's case. No comparison of Putnam and Jñānagarbha is intended as regards the contents of their presentations, the focus being only on the logical form of their argumentation. The paradoxical nature of Jñānagarbha's doctrinal system (...)
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  • Can quantum probability provide a new direction for cognitive modeling?Emmanuel M. Pothos & Jerome R. Busemeyer - 2013 - Behavioral and Brain Sciences 36 (3):255-274.
    Classical (Bayesian) probability (CP) theory has led to an influential research tradition for modeling cognitive processes. Cognitive scientists have been trained to work with CP principles for so long that it is hard even to imagine alternative ways to formalize probabilities. However, in physics, quantum probability (QP) theory has been the dominant probabilistic approach for nearly 100 years. Could QP theory provide us with any advantages in cognitive modeling as well? Note first that both CP and QP theory share the (...)
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  • Quantum Approaches to Consciousness.Harald Atmanspacher - 2006 - Stanford Encyclopedia of Philosophy.
    It is widely accepted that consciousness or, more generally, mental activity is in some way correlated to the behavior of the material brain. Since quantum theory is the most fundamental theory of matter that is currently available, it is a legitimate question to ask whether quantum theory can help us to understand consciousness. Several approaches answering this question affirmatively, proposed in recent decades, will be surveyed. It will be pointed out that they make different epistemological assumptions, refer to different neurophysiological (...)
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  • Quantum curiosities of psychophysics.Jeremy Butterfield - 1997 - In J. Cornwell (ed.), Consciousness and Human Identity. Oxford University Press.
    I survey some of the connections between the metaphysics of the relation between mind and matter, and quantum theory’s measurement problem. After discussing the metaphysics, especially the correct formulation of physicalism, I argue that two state-reduction approaches to quantum theory’s measurement problem hold some surprises for philosophers’ discussions of physicalism. Though both approaches are compatible with physicalism, they involve a very different conception of the physical, and of how the physical underpins the mental, from what most philosophers expect. And one (...)
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  • Beyond the doubting of a shadow.Roger Penrose - 1995 - PSYCHE: An Interdisciplinary Journal of Research On Consciousness 2:89-129.
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