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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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  • A Theory of Semiotics.Robert Scholes - 1977 - Journal of Aesthetics and Art Criticism 35 (4):476-478.
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  • Fiat objects.Barry Smith - 2001 - Topoi 20 (2):131-148.
    Human cognitive acts are directed towards entities of a wide range of different types. What follows is a new proposal for bringing order into this typological clutter. A categorial scheme for the objects of human cognition should be (1) critical and realistic. Cognitive subjects are liable to error, even to systematic error of the sort that is manifested by believers in the Pantheon of Olympian gods. Thus not all putative object-directed acts should be recognized as having objects of their own. (...)
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  • From compositional to systematic semantics.Wlodek Zadrozny - 1994 - Linguistics and Philosophy 17 (4):329 - 342.
    We prove a theorem stating that any semantics can be encoded as a compositional semanties, which means that, essentially, the standard definition of compositionality is formally vacuous. We then show that when compositional semantics is required to be systematic (that is, the meaning function cannot be arbitrary, but must belong to some class), it is possible to distinguish between compositional and noncompositional semantics. As a result, we believe that the paper clarifies the concept of compositionality and opens the possibility of (...)
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  • The binding problem.Adina L. Roskies - 1999 - Neuron 24:7--9.
    (von der Malsburg, 1981), “the binding problem” has with the visual percept of it, so that both are effortlessly captured the attention of researchers across many disci- perceived as being aspects of a single event. I like to plines, including psychology, neuroscience, computa- refer to these sorts of problems as perceptual binding tional modeling, and even philosophy. Despite the is- problems, since they involve unifying aspects of per- sue’s prominence in these fields, what “binding” means cepts. In addition, there are (...)
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  • Connectionism and cognitive architecture: A critical analysis.Jerry A. Fodor & Zenon W. Pylyshyn - 1988 - Cognition 28 (1-2):3-71.
    This paper explores the difference between Connectionist proposals for cognitive a r c h i t e c t u r e a n d t h e s o r t s o f m o d e l s t hat have traditionally been assum e d i n c o g n i t i v e s c i e n c e . W e c l a i m t h a t t h (...)
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  • Connectionism and the problem of systematicity: Why Smolensky's solution doesn't work.Jerry Fodor & Brian P. McLaughlin - 1990 - Cognition 35 (2):183-205.
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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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  • Perceptual symbol systems.Lawrence W. Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):577-660.
    Prior to the twentieth century, theories of knowledge were inherently perceptual. Since then, developments in logic, statis- tics, and programming languages have inspired amodal theories that rest on principles fundamentally different from those underlying perception. In addition, perceptual approaches have become widely viewed as untenable because they are assumed to implement record- ing systems, not conceptual systems. A perceptual theory of knowledge is developed here in the context of current cognitive science and neuroscience. During perceptual experience, association areas in the (...)
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  • Compositionality: A connectionist variation on a classical theme.Tim van Gelder - 1990 - Cognitive Science 14 (3):355-384.
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  • The Calculi of Lambda-Conversion.Barkley Rosser - 1941 - Journal of Symbolic Logic 6 (4):171-171.
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  • Dynamic binding in a neural network for shape recognition.John E. Hummel & Irving Biederman - 1992 - Psychological Review 99 (3):480-517.
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  • Compositionality: A Connectionist Variation on a Classical Theme.Tim Gelder - 1990 - Cognitive Science 14 (3):355-384.
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  • The structure of a semantic theory.Jerrold Katz & Jerry Fodor - 1963 - Language 39:170-210.
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  • Constraining the neural representation of the visual world.Shimon Edelman - 2002 - Trends in Cognitive Sciences 6 (3):125-131.
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  • Book review. Concepts: Where cognitive science went wrong Jerry Fodor. [REVIEW]Steven Gross - 1998 - Mind 110 (438):469-475.
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  • A connectionist theory of phenomenal experience.Jonathan Opie & Gerard O'Brien - 1999 - Behavioral and Brain Sciences 22 (1):127-148.
    When cognitive scientists apply computational theory to the problem of phenomenal consciousness, as many of them have been doing recently, there are two fundamentally distinct approaches available. Either consciousness is to be explained in terms of the nature of the representational vehicles the brain deploys; or it is to be explained in terms of the computational processes defined over these vehicles. We call versions of these two approaches _vehicle_ and _process_ theories of consciousness, respectively. However, while there may be space (...)
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  • Systematicity revisited.Robert F. Hadley - 1994 - Mind and Language 9 (4):431-44.
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  • 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 languages of thought.Lawrence J. Kaye - 1995 - Philosophy of Science 62 (1):92-110.
    I critically explore various forms of the language of thought (LOT) hypothesis. Many considerations, including the complexity of representational content and the systematicity of language understanding, support the view that some, but not all, of our mental representations occur in a language. I examine several arguments concerning sententialism and the propositional attitudes, Fodor's arguments concerning infant and animal thought, and Fodor's argument for radical concept nativism and show that none of these considerations require us to postulate a LOT that is (...)
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  • A Theory of Sentience.Austen Clark - 2000 - Tijdschrift Voor Filosofie 63 (3):622-623.
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  • Review of P sychosemantics: The Problem of Meaning In the Philosophy of Mind. [REVIEW]Jay L. Garfield - 1991 - Philosophy and Phenomenological Research 51 (1):235-240.
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  • A Theory of Semiotics.Umberto Eco - 1977 - Philosophy and Rhetoric 10 (3):214-216.
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  • Tractatus logico-philosophicus.Ludwig Wittgenstein - 1922 - Filosoficky Casopis 52:336-341.
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  • A Theory of Sentience.J. L. Bermudez - 2002 - Mind 111 (443):653-657.
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  • Recognition-by-components: A theory of human image understanding.Irving Biederman - 1987 - Psychological Review 94 (2):115-147.
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  • Psychosemantics: The Problem of Meaning in the Philosophy of Mind.Daniel C. Dennett - 1988 - Journal of Philosophy 85 (7):384-389.
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  • The proper treatment of symbols in a connectionist architecture.Keith J. Holyoak & John E. Hummel - 2000 - In Eric Dietrich Art Markman (ed.), Cognitive Dynamics: Conceptual change in humans and machines. Lawrence Erlbaum. pp. 229--263.
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  • Three-dimensional object recognition based on the combination of views.Shimon Ullman - 1998 - Cognition 67 (1-2):21-44.
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  • Spatial language and spatial representation.William G. Hayward & Michael J. Tarr - 1995 - Cognition 55 (1):39-84.
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  • Tensor product variable binding and the representation of symbolic structures in connectionist systems.Paul Smolensky - 1990 - Artificial Intelligence 46 (1-2):159-216.
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  • Cognition, systematicity, and nomic necessity.Robert F. Hadley - 1997 - Mind and Language 12 (2):137-53.
    In their provocative 1988 paper, Fodor and Pylyshyn issued a formidable challenge to connectionists, i.e. to provide a non‐classical explanation of the empirical phenomenon of systematicity in cognitive agents. Since the appearance of F&P's challenge, a number of connectionist systems have emerged which prima facie meet this challenge. However, Fodor and McLaughlin (1990) advance an argument, based upon a general principle of nomological necessity, to show that one of these systems (Smolensky's) could not satisfy the Fodor‐Pylyshyn challenge. Yet, if Fodor (...)
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  • Perceiving visually presented objects: Recognition, awareness, and modularity.Anne Treisman & Nancy Kanwisher - 1998 - Current Opinion in Neurobiology 8:218-226.
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  • Categories and particulars: Prototype effects in estimating spatial location.Janellen Huttenlocher, Larry V. Hedges & Susan Duncan - 1991 - Psychological Review 98 (3):352-376.
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  • The binding problem.Anne Treisman - 1996 - Current Opinion in Neurobiology 6:171-8.
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  • Computational theories of object recognition.Shimon Edelman - 1997 - Trends in Cognitive Sciences 1 (8):296-304.
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  • Preattentive object Files: Shapeless bundles of basic features.J. M. Wolfe & S. C. Bennett - 1997 - Vision Research 37:25-43.
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  • Cognition, Systematicity and Nomic Necessity.Robert F. Hadley - 1997 - Mind and Language 12 (2):137-153.
    In their provocative 1988 paper, Fodor and Pylyshyn issued a formidable challenge to connectionists, i.e. to provide a non‐classical explanation of the empirical phenomenon of systematicity in cognitive agents. Since the appearance of F&P's challenge, a number of connectionist systems have emerged which prima facie meet this challenge. However, Fodor and McLaughlin (1990) advance an argument, based upon a general principle of nomological necessity, to show that one of these systems (Smolensky's) could not satisfy the Fodor‐Pylyshyn challenge. Yet, if Fodor (...)
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  • Aligning pictorial descriptions: An approach to object recognition.Shimon Ullman - 1989 - Cognition 32 (3):193-254.
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  • Systematicity Revisited: Reply to Christiansen and Chater and Niklasson and van Gelder.Robert F. Hadley - 1994 - Mind and Language 9 (4):431-444.
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  • Linguistic and non-linguistic spatial categorization.L. Elizabeth Crawford, Terry Regier & Janellen Huttenlocher - 2000 - Cognition 75 (3):209-235.
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  • Observations on cortical mechanisms for object recognition and learning.Tomaso Poggio & Anya Hurlbert - 1994 - In Christof Koch & Joel L. Davis (eds.), Large-Scale Neuronal Theories of the Brain. MIT Press. pp. 153--182.
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