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  1. Induction, Conceptual Spaces and AI.Peter Gärdenfors - 1990 - Philosophy of Science 57 (1):78 - 95.
    A computational theory of induction must be able to identify the projectible predicates, that is to distinguish between which predicates can be used in inductive inferences and which cannot. The problems of projectibility are introduced by reviewing some of the stumbling blocks for the theory of induction that was developed by the logical empiricists. My diagnosis of these problems is that the traditional theory of induction, which started from a given (observational) language in relation to which all inductive rules are (...)
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  • Perceptual organization and the representation of natural form.Alex P. Pentland - 1986 - Artificial Intelligence 28 (3):293-331.
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  • An Introduction to Cognitive Grammar.Ronald W. Langacker - 1986 - Cognitive Science 10 (1):1-40.
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  • Smolensky, semantics, and the sensorimotor system.George Lakoff - 1988 - Behavioral and Brain Sciences 11 (1):39-40.
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  • Metaphors we live by.George Lakoff & Mark Johnson - 1980 - Chicago: University of Chicago Press. Edited by Mark Johnson.
    The now-classic Metaphors We Live By changed our understanding of metaphor and its role in language and the mind. Metaphor, the authors explain, is a fundamental mechanism of mind, one that allows us to use what we know about our physical and social experience to provide understanding of countless other subjects. Because such metaphors structure our most basic understandings of our experience, they are "metaphors we live by"--metaphors that can shape our perceptions and actions without our ever noticing them. In (...)
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  • (6 other versions)The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • Semantics And Cognition.Ray S. Jackendoff - 1983 - Cambridge: MIT Press.
    This book emphasizes the role of semantics as a bridge between the theory of language and the theories of other cognitive capacities such as visual perception...
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  • On beyond Zebra: The relation of linguistic and visual information.Ray Jackendoff - 1987 - Cognition 26 (2):89-114.
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  • Constrained semantic transference: A formal theory of metaphors.Bipin Indurkhya - 1986 - Synthese 68 (3):515 - 551.
    In this paper we propose a formal theory of metaphors called Constrained Semantic Transference [CST]. We start from the assumptions that metaphors are characterized by the description of one domain, called the target domain, in terms of another domain, called the source domain; and that a metaphor works by transferring a set of structural relationships from the source domain to the target domain coherently.Starting from these assumptions, we formally define the concept of T-MAPs which are partial coherent mappings from the (...)
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  • Aspects of Scientific Explanation and Other Essays in the Philosophy of Science.Carl Gustav Hempel - 1965 - New York: The Free Press.
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  • (2 other versions)Fact, Fiction, and Forecast.Nelson Goodman - 1983 - Cambridge: Harvard University Press.
    In his new foreword to this edition, Hilary Putnam forcefully rejects these nativist claims.
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  • The percept and vector function theories of the brain.Jeff Foss - 1988 - Philosophy of Science 55 (December):511-537.
    Physicalism is an empirical theory of the mind and its place in nature. So the physicalist must show that current neuroscience does not falsify physicalism, but instead supports it. Current neuroscience shows that a nervous system is what I call a vector function system. I provide a brief outline of the resources that empirical research has made available within the constraints of the vector function approach. Then I argue that these resources are sufficient, indeed apt, for the physicalist enterprise, by (...)
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  • Some reductive strategies in cognitive neurobiology.Paul M. Churchland - 1986 - Mind 95 (July):279-309.
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  • Neurophilosophy: Toward A Unified Science of the Mind-Brain.Patricia Smith Churchland - 1986 - MIT Press.
    This is a unique book. It is excellently written, crammed with information, wise and a pleasure to read.' ---Daniel C. Dennett, Tufts University.
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  • Cognitive neurobiology: A computational hypothesis for laminar cortex. [REVIEW]Paul M. Churchland - 1986 - Biology and Philosophy 1 (1):25-51.
    This paper outlines the functional capacities of a novel scheme for cognitive representation and computation, and it explores the possible implementation of this scheme in the massively parallel organization of the empirical brain. The suggestion is that the brain represents reality by means of positions in suitably constitutes phase spaces; and the brain performs computations on these representations by means of coordinate transformations from one phase space to another. This scheme may be implemented in the brain in two distinct forms: (...)
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  • From shapes and movements to objects and actions.Lucia Vaina - 1983 - Synthese 54 (January):3-36.
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  • Understanding and appreciating metaphors.Roger Tourangeau & Robert J. Sternberg - 1982 - Cognition 11 (3):203-244.
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  • The discovery of time.Stephen Toulmin - 1965 - New York: Octagon Books. Edited by June Goodfield.
    "A discussion of the historical development of our ideas of time as they relate to nature, human nature and society. . . . The excellence of The Discovery of Time is unquestionable."--Martin Lebowitz, The Kenyon Review.
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  • On the proper treatment of connectionism.Paul Smolensky - 1988 - Behavioral and Brain Sciences 11 (1):1-23.
    A set of hypotheses is formulated for a connectionist approach to cognitive modeling. These hypotheses are shown to be incompatible with the hypotheses underlying traditional cognitive models. The connectionist models considered are massively parallel numerical computational systems that are a kind of continuous dynamical system. The numerical variables in the system correspond semantically to fine-grained features below the level of the concepts consciously used to describe the task domain. The level of analysis is intermediate between those of symbolic cognitive models (...)
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  • Women, Fire and Dangerous Thing: What Catergories Reveal About the Mind.George Lakoff (ed.) - 1987 - University of Chicago Press.
    "Its publication should be a major event for cognitive linguistics and should pose a major challenge for cognitive science. In addition, it should have repercussions in a variety of disciplines, ranging from anthropology and psychology to epistemology and the philosophy of science.... Lakoff asks: What do categories of language and thought reveal about the human mind? Offering both general theory and minute details, Lakoff shows that categories reveal a great deal."—David E. Leary, American Scientist.
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  • Fundamental aspects of cognitive representation.Stephen Palmer - 1978 - In Eleanor Rosch & Barbara Bloom Lloyd (eds.), Cognition and Categorization. Lawrence Elbaum Associates. pp. 259-303.
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  • Vision.David Marr - 1982 - W. H. Freeman.
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  • Representations: philosophical essays on the foundations of cognitive science.Jerry A. Fodor - 1981 - Cambridge: MIT Press.
    Introduction: Something on the State of the Art 1 I. Functionalism and Realism 1. Operationalism and Ordinary Language 35 2. The Appeal to Tacit Knowledge in Psychological Explanations 63 3. What Psychological States are Not 79 4. Three Cheers for Propositional Attitudes 100 II. Reduction and Unity of Science 5. Special Sciences 127 6. Computation and Reduction 146 III. Intensionality and Mental Representation 7. Propositional Attitudes 177 8. Tom Swift and His Procedural Grandmother 204 9. Methodological Solipsism Considered as a (...)
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  • Computation and Cognition: Toward a Foundation for Cognitive Science.Zenon W. Pylyshyn - 1984 - Cambridge: MIT Press.
    This systematic investigation of computation and mental phenomena by a noted psychologist and computer scientist argues that cognition is a form of computation, that the semantic contents of mental states are encoded in the same general way as computer representations are encoded. It is a rich and sustained investigation of the assumptions underlying the directions cognitive science research is taking. 1 The Explanatory Vocabulary of Cognition 2 The Explanatory Role of Representations 3 The Relevance of Computation 4 The Psychological Reality (...)
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  • Foundations of Cognitive Grammar.Ronald W. Langacker - 1983 - Indiana University Linguistics Club.
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  • Semantics, conceptual spaces and the dimensions of music.Peter Gärdenfors - 1988 - In Veikko Rantala, Lewis Eugene Rowell & Eero Tarasti (eds.), Essays on the philosophy of music. Helsinki: Akateeminen Kirjakauppa. pp. 9--27.
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