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  1. Representation is representation of similarities.Shimon Edelman - 1998 - Behavioral and Brain Sciences 21 (4):449-467.
    Intelligent systems are faced with the problem of securing a principled (ideally, veridical) relationship between the world and its internal representation. I propose a unified approach to visual representation, addressing both the needs of superordinate and basic-level categorization and of identification of specific instances of familiar categories. According to the proposed theory, a shape is represented by its similarity to a number of reference shapes, measured in a high-dimensional space of elementary features. This amounts to embedding the stimulus in a (...)
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  • Mind, matter and quantum mechanics.Henry P. Stapp - 1982 - Foundations of Physics 12 (4):363-399.
  • Perceptual-cognitive universals as reflections of the world.Roger N. Shepard - 2001 - Behavioral and Brain Sciences 24 (4):581-601.
    The universality, invariance, and elegance of principles governing the universe may be reflected in principles of the minds that have evolved in that universe – provided that the mental principles are formulated with respect to the abstract spaces appropriate for the representation of biologically significant objects and their properties. (1) Positions and motions of objects conserve their shapes in the geometrically fullest and simplest way when represented as points and connecting geodesic paths in the six-dimensional manifold jointly determined by the (...)
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  • A sensorimotor account of vision and visual consciousness.J. Kevin O’Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):883-917.
    Many current neurophysiological, psychophysical, and psychological approaches to vision rest on the idea that when we see, the brain produces an internal representation of the world. The activation of this internal representation is assumed to give rise to the experience of seeing. The problem with this kind of approach is that it leaves unexplained how the existence of such a detailed internal representation might produce visual consciousness. An alternative proposal is made here. We propose that seeing is a way of (...)
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  • Multistable phenomena: Changing views in perception.David A. Leopold & Nikos K. Logothetis - 1999 - Trends in Cognitive Sciences 3 (7):254-264.
    Traditional explanations of multistable visual phenomena (e.g. ambiguous figures, perceptual rivalry) suggest that the basis for spontaneous reversals in perception lies in antagonistic connectivity within the visual system. In this review, we suggest an alternative, albeit speculative, explanation for visual multistability – that spontaneous alternations reflect responses to active, programmed events initiated by brain areas that integrate sensory and non-sensory information to coordinate a diversity of behaviors. Much evidence suggests that perceptual reversals are themselves more closely related to the expression (...)
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  • Quantum/classical correspondence in the light of Bell's inequalities.Leonid A. Khalfin & Boris S. Tsirelson - 1992 - Foundations of Physics 22 (7):879-948.
    Instead of the usual asymptotic passage from quantum mechanics to classical mechanics when a parameter tended to infinity, a sharp boundary is obtained for the domain of existence of classical reality. The last is treated as separable empirical reality following d'Espagnat, described by a mathematical superstructure over quantum dynamics for the universal wave function. Being empirical, this reality is constructed in terms of both fundamental notions and characteristics of observers. It is presupposed that considered observers perceive the world as a (...)
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  • How we know our minds: The illusion of first-person knowledge of intentionality.Alison Gopnik - 1993 - Behavioral and Brain Sciences 16 (1):1-14.
  • Description of many separated physical entities without the paradoxes encountered in quantum mechanics.Dirk Aerts - 1982 - Foundations of Physics 12 (12):1131-1170.
    We show that it is impossible in quantum mechanics to describe two separated physical systems. This is due to the mathematical structure of quantum mechanics. It is possible to give a description of two separated systems in a theory which is a generalization of quantum mechanics and of classical mechanics, in the sense that this theory contains both theories as special cases. We identify the axioms of quantum mechanics that make it impossible to describe separated systems. One of these axioms (...)
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  • Synchronicity, Science and Soul-Making: Understanding Jungian Synchronicity Through Physics, Buddhism, and Philosophy.Victor Mansfield - 1995 - Open Court Publishing.
    The pioneering analysis of synchronicity was given by Jung, yet despite the concept's momentous significance in Jung's work, and despite the widespread dissemination of the term 'synchronicity' even within pop culture, synchronicity is often badly misconstrued and remains "perhaps the least understood of Jung's theories". Synchronicity, Science, and Soul-Making has already been hailed as the most important analysis of synchronicity since Jung himself.
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  • Space, Time, and Life: The Probabilistic Pathways of Evolution.Vasiliĭ Vasilʹevich Nalimov & Robert Garland Colodny - 1985
  • Societies of Brains: A Study in the Neuroscience of Love and Hate.Walter J. Freeman - 1995 - Psychology Press.
    First Published in 1995. Routledge is an imprint of Taylor & Francis, an informa company.
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  • Margins of Reality: The Role of Consciousness in the Physical World.Robert G. Jahn & Brenda J. Dunne - 1987 - Harcourt Brace Jovanovich.
    The scientific, personal, and social implications of this revolutionary work are staggering. MARGINS OF REALITY is nothing less than a fundamental reevaluation of how the world really works.
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  • Quantum Computation and Quantum Information.Michael A. Nielsen & Isaac L. Chuang - 2000 - Cambridge University Press.
    First-ever comprehensive introduction to the major new subject of quantum computing and quantum information.
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  • The Conscious Mind: In Search of a Fundamental Theory (2nd edition).David J. Chalmers - 1996 - Oxford University Press.
    The book is an extended study of the problem of consciousness. After setting up the problem, I argue that reductive explanation of consciousness is impossible , and that if one takes consciousness seriously, one has to go beyond a strict materialist framework. In the second half of the book, I move toward a positive theory of consciousness with fundamental laws linking the physical and the experiential in a systematic way. Finally, I use the ideas and arguments developed earlier to defend (...)
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  • Shadows of the Mind: A Search for the Missing Science of Consciousness.Roger Penrose - 1994 - Oxford University Press.
    Presenting a look at the human mind's capacity while criticizing artificial intelligence, the author makes suggestions about classical and quantum physics and ..
  • The Volitional Brain: Towards a Neuroscience of Free Will.Benjamin Libet, Anthony Freeman & Keith Sutherland - 1999 - Imprint Academic.
    It is widely accepted in science that the universe is a closed deterministic system in which everything can, ultimately, be explained by purely physical...
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  • Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
  • The symbol grounding problem.Stevan Harnad - 1990 - Physica D 42:335-346.
    There has been much discussion recently about the scope and limits of purely symbolic models of the mind and about the proper role of connectionism in cognitive modeling. This paper describes the symbol grounding problem : How can the semantic interpretation of a formal symbol system be made intrinsic to the system, rather than just parasitic on the meanings in our heads? How can the meanings of the meaningless symbol tokens, manipulated solely on the basis of their shapes, be grounded (...)
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  • The Discarded Image: An Introduction to Medieval and Renaissance Literature.C. S. Lewis - 1964
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  • On the physical basis, linguistic representation, and conscious experience of colors.Roger N. Shepard - 1993 - In Gilbert Harman (ed.), Conceptions of the Human Mind: Essays in Honor of George A. Miller. Lawrence Erlbaum.
     
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  • The Psychology of Personal Constructs (an Excerpt).George A. Kelly - 1967 - In Donald C. Hildum (ed.), Language and Thought: An Enduring Problem in Psychology. London: : Van Nostrand,. pp. 37--44.
     
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  • A modular model of mind/matter manifestations.Robert G. Jahn & Brenda J. Dunne - 2001 - Journal of Scientific Exploration 15 (3):299-329.
  • Multistable phenomena: Changing views in perception.N. K. Logothetis D. A. Leopold - 1999 - Trends in Cognitive Sciences 3:254-264.
    Traditional explanations of multistable visual phenomena (e.g. ambiguous figures, perceptual rivalry) suggest that the basis for spontaneous reversals in perception lies in antagonistic connectivity within the visual system. In this review, we suggest an alternative, albeit speculative. explanation for visual multistability - that spontaneous alternations reflect responses to active, programmed events initiated by brain areas that integrate sensory and non-sensory information to coordinate a diversity of behaviors. Much evidence suggests that perceptual reversals are themselves more closely related to the expression (...)
     
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  • Theoretical model of a purported empirical violation of the predictions of quantum mechanics.Henry P. Stapp - 1994 - Physical Review A 50:18-22.
    A generalization of Weinberg’s nonlinear quantum theory is used to model a reported violation of the predictions of orthodox quantum theory.
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