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  1. Cortical connections and parallel processing: Structure and function.Dana H. Ballard - 1986 - Behavioral and Brain Sciences 9 (1):67-90.
    The cerebral cortex is a rich and diverse structure that is the basis of intelligent behavior. One of the deepest mysteries of the function of cortex is that neural processing times are only about one hundred times as fast as the fastest response times for complex behavior. At the very least, this would seem to indicate that the cortex does massive amounts of parallel computation.This paper explores the hypothesis that an important part of the cortex can be modeled as a (...)
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  • Structuralism.Jean Piaget - 1970 - New York,: Basic Books.
  • Perturbation model for letter identification.George Wolford - 1975 - Psychological Review 82 (3):184-199.
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  • Chunking and consolidation: A theoretical synthesis of semantic networks, configuring in conditioning, S-R versus cognitive learning, normal forgetting, the amnesic syndrome, and the hippocampal arousal system.Wayne A. Wickelgren - 1979 - Psychological Review 86 (1):44-60.
  • Context-sensitive coding, associative memory, and serial order in (speech) behavior.Wayne A. Wickelgran - 1969 - Psychological Review 76 (1):1-15.
  • Feature analysis in early vision: Evidence from search asymmetries.Anne Treisman & Stephen Gormican - 1988 - Psychological Review 95 (1):15-48.
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  • A Distributed Connectionist Production System.David S. Touretzky & Geoffrey E. Hinton - 1988 - Cognitive Science 12 (3):423-466.
    DCPS is a connectionist production system interpreter that uses distributed representations. As a connectionist model it consists of many simple, richly interconnected neuron‐like computing units that cooperate to solve problems in parallel. One motivation for constructing DCPS was to demonstrate that connectionist models are capable of representing and using explicit rules. A second motivation was to show how “coarse coding” or “distributed representations” can be used to construct a working memory that requires far fewer units than the number of different (...)
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  • Cognitive maps in rats and men.Edward C. Tolman - 1948 - Psychological Review 55 (4):189-208.
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  • Selection, inspection, and naming in visual search.Charles R. Snyder - 1972 - Journal of Experimental Psychology 92 (3):428.
  • 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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  • Ecological constraints on internal representation: Resonant kinematics of perceiving, imagining, thinking, and dreaming.Roger N. Shepard - 1984 - Psychological Review 91 (4):417-447.
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  • A Connectionist Approach to Knowledge Representation and Limited Inference.Lokendra Shastri - 1988 - Cognitive Science 12 (3):331-392.
    Although the connectionist approach has lead to elegant solutions to a number of problems in cognitive science and artificial intelligence, its suitability for dealing with problems in knowledge representation and inference has often been questioned. This paper partly answers this criticism by demonstrating that effective solutions to certain problems in knowledge representation and limited inference can be found by adopting a connectionist approach. The paper presents a connectionist realization of semantic networks, that is, it describes how knowledge about concepts, their (...)
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  • Structure and controlling subsymbolic processing.Walter Schneider - 1988 - Behavioral and Brain Sciences 11 (1):51-52.
  • On computer science, visual science, and the physiological utility of models.Barry J. Richmond & Michael E. Goldberg - 1985 - Behavioral and Brain Sciences 8 (2):300-301.
  • Visual cognition: An introduction.Steven Pinker - 1984 - Cognition 18 (1-3):1-63.
  • The magical number seven, plus or minus two: Some limits on our capacity for processing information.George A. Miller - 1956 - Psychological Review 63 (2):81-97.
  • Planning routes through uncertain territory.Drew McDermott & Ernest Davis - 1984 - Artificial Intelligence 22 (2):107-156.
  • Putting knowledge in its place: A scheme for programming parallel processing structures on the fly.James L. McClelland - 1985 - Cognitive Science 9 (1):113-146.
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  • Figural change in apparent motion.Paul A. Kolers & James R. Pomerantz - 1971 - Journal of Experimental Psychology 87 (1):99.
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  • Active symbols and internal models: Towards a cognitive connectionism. [REVIEW]Stephen Kaplan, Mark Weaver & Robert French - 1990 - AI and Society 4 (1):51-71.
    In the first section of the article, we examine some recent criticisms of the connectionist enterprise: first, that connectionist models are fundamentally behaviorist in nature (and, therefore, non-cognitive), and second that connectionist models are fundamentally associationist in nature (and, therefore, cognitively weak). We argue that, for a limited class of connectionist models (feed-forward, pattern-associator models), the first criticism is unavoidable. With respect to the second criticism, we propose that connectionist modelsare fundamentally associationist but that this is appropriate for building models (...)
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  • Further toward a model of the Mind’s eye’s movement.John Jonides - 1983 - Bulletin of the Psychonomic Society 21 (4):247-250.
  • The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1987 - Chicago: University of Chicago Press.
    "There are books—few and far between—which carefully, delightfully, and genuinely turn your head inside out. This is one of them. It ranges over some central issues in Western philosophy and begins the long overdue job of giving us a radically new account of meaning, rationality, and objectivity."—Yaakov Garb, _San Francisco Chronicle_.
  • The Body in the Mind--The Bodily Basis of Meaning Imagination and Reason.Keith Gunderson - 1992 - Noûs 26 (1):110-113.
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  • The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1989 - Journal of Aesthetics and Art Criticism 47 (4):400-401.
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  • Categorization: A mechanism for rapid information processing.Nancy W. Ingling - 1972 - Journal of Experimental Psychology 94 (3):239.
  • Parts of recognition.D. D. Hoffman & W. A. Richards - 1984 - Cognition 18 (1-3):65-96.
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  • Scene-based and viewer-centered representations for comparing shapes.G. Hinton - 1988 - Cognition 30 (1):1-35.
  • The impending demise of the icon: A critique of the concept of iconic storage in visual information processing.Ralph Norman Haber - 1983 - Behavioral and Brain Sciences 6 (1):1-11.
  • How does a brain build a cognitive code?Stephen Grossberg - 1980 - Psychological Review 87 (1):1-51.
  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • Four frames suffice: A provisional model of vision and space.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):265-289.
    This paper presents a general computational treatment of how mammals are able to deal with visual objects and environments. The model tries to cover the entire range from behavior and phenomenological experience to detailed neural encodings in crude but computationally plausible reductive steps. The problems addressed include perceptual constancies, eye movements and the stable visual world, object descriptions, perceptual generalizations, and the representation of extrapersonal space.The entire development is based on an action-oriented notion of perception. The observer is assumed to (...)
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  • Visual search and stimulus similar¬ity.John Duncan & Glyn W. Humphreys - 1989 - Psychological Review 96 (3):433-458.
  • The locus of interference in the perception of simultaneous stimuli.John Duncan - 1980 - Psychological Review 87 (3):272-300.
  • On perceptual clarity.P. C. Dodwell - 1971 - Psychological Review 78 (4):275-289.
  • Time, distance, and feature trade-offs in visual apparent motion.Peter Burt & George Sperling - 1981 - Psychological Review 88 (2):171-195.
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  • Could three frames suffice?Roger A. Browse & Brian E. Butler - 1985 - Behavioral and Brain Sciences 8 (2):290-291.
  • Recognition-by-components: A theory of human image understanding.Irving Biederman - 1987 - Psychological Review 94 (2):115-147.
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  • Structuralism.F. Berenson, Jean Piaget & Chaninah Maschler - 1973 - British Journal of Educational Studies 21 (1):104.
  • Parameter nets.Dana H. Ballard - 1984 - Artificial Intelligence 22 (3):235-267.
  • Some informational aspects of visual perception.Fred Attneave - 1954 - Psychological Review 61 (3):183-193.
  • Distinctive features, categorical perception, and probability learning: Some applications of a neural model.James A. Anderson, Jack W. Silverstein, Stephen A. Ritz & Randall S. Jones - 1977 - Psychological Review 84 (5):413-451.
  • Placental Transfer and Synthesis of Hormones.John H. Holland - 1973
  • 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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  • Cognition and Categorization.Eleanor Rosch & Barbara Bloom Lloyd (eds.) - 1978 - Lawrence Elbaum Associates.
  • 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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  • Image and Mind.Stephen Michael Kosslyn - 1980 - Harvard University Press.
    The book also introduces a host of new experimental techniques and major hypotheses to guide future research.
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  • Principles of categorization [Електронний ресурс]/Eleonora Rosch.E. Rosch - 1978 - In Eleanor Rosch & Barbara Lloyd (eds.), Cognition and Categorization. Lawrence Elbaum Associates.
  • Women, Fire, and Dangerous Things: What Categories Reveal about the Mind.George Lakoff - 1987 - Philosophy and Rhetoric 22 (4):299-302.
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  • Induction: Processes of Inference, Learning, and Discovery.John H. Holland, Keith J. Holyoak, Richard E. Nisbett & Paul R. Thagard - 1991 - British Journal for the Philosophy of Science 42 (2):269-272.
     
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