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  1. The functions of consciousness.Bernard J. Baars - 1988 - In A Cognitive Theory of Consciousness. New York: Cambridge University Press.
  • 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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  • Philosophical Foundations of Neuroscience.Max R. Bennett & P. M. S. Hacker - 2006 - Behavior and Philosophy 34:71-87.
    The book "Philosophical Foundations of Neuroscience" is an engaging criticism of cognitive neuroscience from the perspective of a Wittgensteinian philosophy of ordinary language. The authors' main claim is that assertions like "the brain sees" and "the left hemisphere thinks" are integral to cognitive neuroscience but that they are meaningless because they commit the mereological fallacy—ascribing to parts of humans, properties that make sense to predicate only of whole humans. The authors claim that this fallacy is at the heart of Cartesian (...)
     
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  • The Concept of Mind.Gilbert Ryle - 1949 - Revue Philosophique de la France Et de l'Etranger 141:125-126.
     
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  • On the space-time ontology of physical theories.Kenneth L. Manders - 1982 - Philosophy of Science 49 (4):575-590.
    In the correspondence with Clarke, Leibniz proposes to construe physical theory in terms of physical (spatio-temporal) relations between physical objects, thus avoiding incorporation of infinite totalities of abstract entities (such as Newtonian space) in physical ontology. It has generally been felt that this proposal cannot be carried out. I demonstrate an equivalence between formulations postulating space-time as an infinite totality and formulations allowing only possible spatio-temporal relations of physical (point-) objects. The resulting rigorous formulations of physical theory may be seen (...)
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  • Luhmann, N. Social Systems. [REVIEW]N. Luhmann, John Bednarz & Dirk Baecker - 1998 - Human Studies 21 (2):227-234.
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  • Professor Goodman's concept of an individual.Victor Lowe - 1953 - Philosophical Review 62 (1):117-126.
  • The calculus of individuals and its uses.Henry S. Leonard & Nelson Goodman - 1940 - Journal of Symbolic Logic 5 (2):45-55.
  • Ontologies and Worlds in Category Theory: Implications for Neural Systems.Michael John Healy & Thomas Preston Caudell - 2006 - Axiomathes 16 (1-2):165-214.
    We propose category theory, the mathematical theory of structure, as a vehicle for defining ontologies in an unambiguous language with analytical and constructive features. Specifically, we apply categorical logic and model theory, based upon viewing an ontology as a sub-category of a category of theories expressed in a formal logic. In addition to providing mathematical rigor, this approach has several advantages. It allows the incremental analysis of ontologies by basing them in an interconnected hierarchy of theories, with an operation on (...)
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  • The New Ways of Ontology.Nicolai Hartmann - 1954 - Philosophy and Phenomenological Research 14 (3):430-431.
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  • The link between brain learning, attention, and consciousness.Stephen Grossberg - 1999 - Consciousness and Cognition 8 (1):1-44.
    The processes whereby our brains continue to learn about a changing world in a stable fashion throughout life are proposed to lead to conscious experiences. These processes include the learning of top-down expectations, the matching of these expectations against bottom-up data, the focusing of attention upon the expected clusters of information, and the development of resonant states between bottom-up and top-down processes as they reach an attentive consensus between what is expected and what is there in the outside world. It (...)
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  • On relations that generate.Nelson Goodman - 1958 - Philosophical Studies 9 (5-6):65 - 66.
  • The Memory Evolutive Systems as a Model of Rosen’s Organisms – (Metabolic, Replication) Systems.Andrée C. Ehresmann & Jean-Paul Vanbremeersch - 2006 - Axiomathes 16 (1-2):137-154.
    Robert Rosen has proposed several characteristics to distinguish “simple” physical systems (or “mechanisms”) from “complex” systems, such as living systems, which he calls “organisms”. The Memory Evolutive Systems (MES) introduced by the authors in preceding papers are shown to provide a mathematical model, based on category theory, which satisfies his characteristics of organisms, in particular the merger of the Aristotelian causes. Moreover they identify the condition for the emergence of objects and systems of increasing complexity. As an application, the cognitive (...)
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  • A new theory of the relationship of mind and matter.David J. Bohm - 1986 - Journal of the American Society for Psychical Research 80 (2 & 3):113-35.
    The relationship of mind and matter is approached in a new way in this article. This approach is based on the causal interpretation of the quantum theory, in which an electron, for example, is regarded as an inseparable union of a particle and afield. This field has, however, some new properties that can be seen to be the main sources of the differences between the quantum theory and the classical (Newtonian) theory. These new properties suggest that the field may be (...)
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  • A new theory of the relationship of mind and matter.David Bohm - 1990 - Philosophical Psychology 3 (2 & 3):271 – 286.
    The relationship of mind and matter is approached in a new way in this article. This approach is based on the causal interpretation of the quantum theory, in which an electron, for example, is regarded as an inseparable union of a particle and afield. This field has, however, some new properties that can be seen to be the main sources of the differences between the quantum theory and the classical (Newtonian) theory. These new properties suggest that the field may be (...)
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  • On the Neurophysiology of Consciousness: 1. An Overview.Joseph E. Bogen - 1995 - Consciousness and Cognition 4 (1):52-62.
    How certain neural mechanisms momentarily endow with the subjective awareness percepts and affects represented elsewhere is more likely to be clarified when structures essential to Mc are identified. The loss of C with bilateral thalmic lesions involving the intralaminar nuclei contrasts with retention of C after large cortical ablations depriving C of specific contents. A role of ILN in the perception of primitive sensations is suggested by their afference of directly ascending pathways. A role for ILN in awareness of cortical (...)
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  • Louis Osgood Kattsoff. Modality and probability. The philosophical review, vol. 46 (1937), pp. 78–85.Garrett Birkhoff & John von Neumann - 1937 - Journal of Symbolic Logic 2 (1):44-44.
  • Robert Rosen’s Work and Complex Systems Biology.I. C. Baianu - 2006 - Axiomathes 16 (1-2):25-34.
    Complex Systems Biology approaches are here considered from the viewpoint of Robert Rosen’s (M,R)-systems, Relational Biology and Quantum theory, as well as from the standpoint of computer modeling. Realizability and Entailment of (M,R)-systems are two key aspects that relate the abstract, mathematical world of organizational structure introduced by Rosen to the various physicochemical structures of complex biological systems. Their importance for understanding biological function and life itself, as well as for designing new strategies for treating diseases such as cancers, is (...)
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  • How conscious experience and working memory interact.Bernard J. Baars & Stan Franklin - 2003 - Trends in Cognitive Sciences 7 (4):166-172.
  • Philosophical Foundations of Neuroscience.Max R. Bennett & P. M. S. Hacker - 2003 - Hoboken, New Jersey: Wiley-Blackwell. Edited by P. M. S. Hacker.
    Writing from a scientifically and philosophically informed perspective, the authors provide a critical overview of the conceptual difficulties encountered in many current neuroscientific and psychological theories.
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  • Laws of form.George Spencer-Brown - 1969 - New York,: Julian Press.
  • From sentience to symbols: readings on consciousness.John Pickering & Martin Skinner (eds.) - 1990 - New York: Harvester Wheatsheaf.
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  • Categories for the Working Mathematician.Saunders Maclane - 1971 - Springer.
    Category Theory has developed rapidly. This book aims to present those ideas and methods which can now be effectively used by Mathe­ maticians working in a variety of other fields of Mathematical research. This occurs at several levels. On the first level, categories provide a convenient conceptual language, based on the notions of category, functor, natural transformation, contravariance, and functor category. These notions are presented, with appropriate examples, in Chapters I and II. Next comes the fundamental idea of an adjoint (...)
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  • Populations, species and evolution: An abridgment of Animal species and evolution.Ernst Mayr - 1970 - Belknap Press of Harvard University Press.
    In the Preface of Animal Species and Evolution (1963), I wrote that it was "an attempt to summarize and review critically what we know about the biology and genetics of animal species and their role in evolution." The result was a volume of XIV ...
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  • Downward Causation.P. B. Andersen, Claus Emmeche, N. O. Finnemann & P. V. Christiansen (eds.) - 2000 - Aarhus, Denmark: University of Aarhus Press.
    The book deals with the notion of Downward Causation from a wide array of perspectives, including physics, biology, psychology, social science, communication studies, text theory, and philosophy. The book includes proponents as well as opponents discussing the validity of the notion.
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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 Remembered Present: A Biological Theory of Consciousness.Gerald M. Edelman - 1989 - Basic Books.
    Having laid the groundwork in his critically acclaimed books Neural Darwinism (Basic Books, 1987) and Topobiology (Basic Books, 1988), Nobel laureate Gerald M. Edelman now proposes a comprehensive theory of consciousness in The Remembered ...
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  • Zen and the Brain: Toward an Understanding of Meditation and Consciousness.James H. Austin - 1998 - MIT Press.
    The book uses Zen Buddhism as the opening wedge for an extraordinarily wide-ranging exploration of consciousness.
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  • The Concept of Mind.Gilbert Ryle - 1950 - British Journal for the Philosophy of Science 1 (4):328-332.
     
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  • Intentionality.J. Searle - 1983 - Tijdschrift Voor Filosofie 49 (3):530-531.
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  • The transactional interpretation of quantum mechanics.John G. Cramer - 1986 - Reviews of Modern Physics 58 (3):647-687.
    Copenhagen interpretation of quantum mechanics deals with these problems is reviewed. A new interpretation of the formalism of quantum mechanics, the transactional interpretation, is presented. The basic element of this interpretation is the transaction describing a quantum event as an exchange of advanced and retarded waves, as implied by the work of Wheeler and Feynman, Dirac, and others. The transactional interpretation is explicitly nonlocal and thereby consistent with recent tests of the Bell inequality, yet is relativistically invariant and fully causal. (...)
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  • Natural Transformations of Organismic Structures.Prof Dr I. C. Baianu - unknown
    The mathematical structures underlying the theories of organismic sets, (M, R)-systems and molecular sets are shown to be transformed naturally within the theory of categories and functors. Their natural transformations allow the comparison of distinct entities, as well as the modelling of dynamics in “organismic” structures.
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  • Intentionality.John Searle - 1983 - Philosophy 59 (229):417-418.
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  • Quantum aspects of brain activity and the role of consciousness.Friedrich Beck & John C. Eccles - 1992 - Proceedings of the National Academy of Science Usa 89:11357-61.
  • Levels of reality and levels of representation.Claudio Gnoli & Roberto Poli - 2004 - Knowledge Organization 31 (3):151-160.
    Ontology, in its philosophical meaning, is the discipline investigating the structure of reality. Its findings can be relevant to knowledge organization, as well as models of knowledge can in turn offer relevant ontological suggestions. Several philosophers in time have pointed out that reality is structured into a series of integrative levels, like the physical, the biological, the mental, and the cultural one, and that each level plays as a base for the emergence of more complex ones. Among them, more detailed (...)
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  • Nonlinear neurodynamics of intentionality.Walter J. Freeman - 1997 - Journal of Mind and Behavior 18 (2-3):291-304.
    Study of electroencephalographic brain activity in behaving animals has guided development of a model for the self-organization of goal-directed behavior. Synthesis of a dynamical representation of brain function is based in the concept of intentionality as the organizing principle of animal and human behavior. The constructions of patterns of brain activity constitute meaning and not information or representations. The three accepted meanings of intention: "aboutness," goal-seeking, and wound healing, can be incorporated into the dynamics of meaningful behavior, centered in the (...)
     
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  • Philosophical Foundations of Neuroscience.M. Bennett & P. M. S. Hacker - 2003 - Philosophy 79 (307):141-146.
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  • Mind-brain interaction and violation of physical laws.D. L. Wilson - 1999 - Journal of Consciousness Studies 6 (8-9):8-9.
  • Consciousness, Intentionality, and Causality.Walter J. Freeman - 1999 - Journal of Consciousness Studies 6 (11-12):11-12.
    According to behavioural theories deriving from pragmatism, gestalt psychology, existentialism, and ecopsychology, knowledge about the world is gained by intentional action followed by learning. In terms of the neurodynamics described here, if the intending of an act comes to awareness through reafference, it is perceived as a cause. If the consequences of an act come to awareness through proprioception and exteroception, they are perceived as an effect. A sequence of such states of awareness comprises consciousness, which can grow in complexity (...)
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  • Quantum Theory and Measurement.John Archibald Wheeler & Wojciech Hubert Zurek - 1985 - Philosophy of Science 52 (3):480-481.
     
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  • A neurobiological interpretation of the global workspace theory of consciousness.Bernard J. Baars & J. B. Newman - 1994 - In Antti Revonsuo & Matti Kamppinen (eds.), Consciousness in Philosophy and Cognitive Neuroscience. Lawrence Erlbaum.
  • Quantum Theory and Measurement.J. A. Wheeler & W. H. Zurek - 1986 - Synthese 67 (3):527-530.
     
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  • Do mental events cause neural events analogously to the probability fields of quantum mechanics?John C. Eccles - 1986 - Proceedings of the Royal Society of London B 227:411-28.
  • General Theory of Natural Equivalences.Saunders MacLane & Samuel Eilenberg - 1945 - Transactions of the American Mathematical Society:231-294.
     
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  • Toward a neurobiological theory of consciousness.Francis Crick & Christof Koch - 1990 - Seminars in the Neurosciences 2:263-275.