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  1. An efferent component in the visual perception of direction and extent.Stanley Coren - 1986 - Psychological Review 93 (4):391-410.
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  • An Experimental Study of Imagination.Charles West Perky - 1911 - Philosophical Review 20:108.
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  • Roles of imagery in perception: Or, there is no such thing as immaculate perception.Stephen M. Kosslyn & Amy L. Sussman - 1995 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press. pp. 1035--1042.
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  • Creation of the horizontal-vertical illusion through imagery.Benjamin Wallace - 1984 - Bulletin of the Psychonomic Society 22 (1):9-11.
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  • Imagery instructions improve memory in blind subjects.John Jonides, Robert Kahn & Paul Rozin - 1975 - Bulletin of the Psychonomic Society 5 (5):424-426.
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  • Visual routines.Shimon Ullman - 1984 - Cognition 18 (1-3):97-159.
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  • Intermodality inconsistency of input and directed attention as determinants of the nature of adaptation.Lance K. Canon - 1970 - Journal of Experimental Psychology 84 (1):141.
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  • Reinterpreting Visual Patterns in Mental Imagery.Ronald A. Finks, Steven Pinker & Martha J. Farah - 1989 - Cognitive Science 13 (1):51-78.
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  • Varieties of vision: From blind responses to conscious recognition.Petra Stoerig - 1998 - In Stuart R. Hameroff, Alfred W. Kaszniak & Alwyn Scott (eds.), Toward a Science of Consciousness II: The Second Tucson Discussions and Debates. MIT Press. pp. 2--297.
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  • Visual search for change: A probe into the nature of attentional processing.Ronald A. Rensink - 2000 - Visual Cognition 7:345-376.
    A set of visual search experiments tested the proposal that focused attention is needed to detect change. Displays were arrays of rectangles, with the target being the item that continually changed its orientation or contrast polarity. Five aspects of performance were examined: linearity of response, processing time, capacity, selectivity, and memory trace. Detection of change was found to be a self-terminating process requiring a time that increased linearly with the number of items in the display. Capacity for orientation was found (...)
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  • The dynamic representation of scenes.Ronald A. Rensink - 2000 - Visual Cognition 7 (1/2/3):17-42.
    One of the more powerful impressions created by vision is that of a coherent, richly-detailed world where everything is present simultaneously. Indeed, this impression is so compelling that we tend to ascribe these properties not only to the external world, but to our internal representations as well. But results from several recent experiments argue against this latter ascription. For example, changes in images of real-world scenes often go unnoticed when made during a saccade, flicker, blink, or movie cut. This "change (...)
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  • To see or not to see: The need for attention to perceive changes in scenes.Ronald A. Rensink, J. Kevin O'Regan & James J. Clark - 1997 - Psychological Science 8:368-373.
    When looking at a scene, observers feel that they see its entire structure in great detail and can immediately notice any changes in it. However, when brief blank fields are placed between alternating displays of an original and a modified scene, a striking failure of perception is induced: identification of changes becomes extremely difficult, even when changes are large and made repeatedly. Identification is much faster when a verbal cue is provided, showing that poor visibility is not the cause of (...)
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  • On the failure to detect changes in scenes across brief interruptions.Ronald A. Rensink, Kevin J. O'Regan & James J. Clark - 2000 - Visual Cognition 7 (1/2/3):127-145.
    When brief blank fields are placed between alternating displays of an original and a modified scene, a striking failure of perception is induced: the changes become extremely difficult to notice, even when they are large, presented repeatedly, and the observer expects them to occur (Rensink, O'Regan, & Clark, 1997). To determine the mechanisms behind this induced "change blindness", four experiments examine its dependence on initial preview and on the nature of the interruptions used. Results support the proposal that representations at (...)
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  • The Visual Brain in Action.A. David Milner & Melvyn A. Goodale - 1995 - Oxford University Press.
    Although the mechanics of how the eye works are well understood, debate still exists as to how the complex machinery of the brain interprets neural impulses...
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  • (1 other version)Varieties of off-line simulation.Shaun Nichols, Stephen P. Stich, Alan M. Leslie & David B. Klein - 1998 - In Peter Carruthers & Jill Boucher (eds.), [Book Chapter]. Cambridge: Cambridge University Press. pp. 39-74.
    The debate over off-line simulation has largely focussed on the capacity to predict behavior, but the basic idea of off-line simulation can be cast in a much broader framework. The central claim of the off-line account of behavior prediction is that the practical reasoning mechanism is taken off-line and used for predicting behavior. However, there's no reason to suppose that the idea of off-line simulation can't be extended to mechanisms other than the practical reasoning system. In principle, any cognitive component (...)
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  • Visual imagery as the simulation of vision.Gregory Currie - 1995 - Mind and Language 10 (1-2):25-44.
    Simulation Theory says we need not rely exclusively on prepositional knowledge of other minds in order to explain the actions of others. Seeking to know what you will do, I imagine myself in your situation, and see what decision I come up with. I argue that this conception of simulation naturally generalizes: various bits of our mental machine can be run‘off‐line’, fulfilling functions other than those they were made for. In particular, I suggest that visual imagery results when the visual (...)
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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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  • 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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  • Imagery and artificial intelligence.Zenon W. Pylyshyn - 1978 - In W. Savage (ed.), Perception and Cognition. University of Minnesota Press. pp. 105-115.
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  • What the mind's eye tells the mind's brain: A critique of mental imagery.Zenon W. Pylyshyn - 1973 - Psychology Bulletin 80:1-24.
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  • Imagining: A Phenomenological Study.Edward S. Casey - 1976 - Indiana University Press.
    Drawing on his own experiences of imagining, Edward S. Casey describes the essential forms that imagination assumes in everyday life. In a detailed analysis of the fundamental features of all imaginative experience, Casey shows imagining to be eidetically distinct from perceiving and defines it as a radically autonomous act, involving a characteristic freedom of mind. A new preface places Imagining within the context of current issues in philosophy and psychology.
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  • Imagistic representation.Jerry A. Fodor - 1975 - In Jerry Fodor (ed.), The Language of Thought. Harvard University Press. pp. 135-149.
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  • Image and Brain: The Resolution of the Imagery Debate.Stephen M. Kosslyn - 1994 - MIT Press.
    This long-awaited work by prominent Harvard psychologist Stephen Kosslyn integrates a twenty-year research program on the nature of high-level vision and mental ...
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  • On the demystification of mental imagery.Stephen M. Kosslyn, Steven Pinker, Sophie Schwartz & G. Smith - 1979 - Behavioral and Brain Sciences 2 (4):535-81.
    What might a theory of mental imagery look like, and how might one begin formulating such a theory? These are the central questions addressed in the present paper. The first section outlines the general research direction taken here and provides an overview of the empirical foundations of our theory of image representation and processing. Four issues are considered in succession, and the relevant results of experiments are presented and discussed. The second section begins with a discussion of the proper form (...)
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  • (1 other version)Is vision continuous with cognition?: The case for cognitive impenetrability of visual perception.Zenon Pylyshyn - 1999 - Behavioral and Brain Sciences 22 (3):341-365.
    Although the study of visual perception has made more progress in the past 40 years than any other area of cognitive science, there remain major disagreements as to how closely vision is tied to general cognition. This paper sets out some of the arguments for both sides and defends the position that an important part of visual perception, which may be called early vision or just vision, is prohibited from accessing relevant expectations, knowledge and utilities - in other words it (...)
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  • Visual indexes, preconceptual objects, and situated vision.Zenon W. Pylyshyn - 2001 - Cognition 80 (1-2):127-158.
    This paper argues that a theory of situated vision, suited for the dual purposes of object recognition and the control of action, will have to provide something more than a system that constructs a conceptual representation from visual stimuli: it will also need to provide a special kind of direct (preconceptual, unmediated) connection between elements of a visual representation and certain elements in the world. Like natural language demonstratives (such as `this' or `that') this direct connection allows entities to be (...)
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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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  • Consciousness Explained.Daniel C. Dennett - 1991 - Penguin Books.
    Little, Brown, 1992 Review by Glenn Branch on Jul 5th 1999 Volume: 3, Number: 27.
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  • Problem-solving with diagrammatic representations.Brian V. Funt - 1980 - Artificial Intelligence 13 (3):201-230.
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  • Finding out about filling-in: A guide to perceptual completion for visual science and the philosophy of perception.Luiz Pessoa, Evan Thompson & Alva Noë - 1998 - Behavioral and Brain Sciences 21 (6):723-748.
    In visual science the term filling-inis used in different ways, which often leads to confusion. This target article presents a taxonomy of perceptual completion phenomena to organize and clarify theoretical and empirical discussion. Examples of boundary completion (illusory contours) and featural completion (color, brightness, motion, texture, and depth) are examined, and single-cell studies relevant to filling-in are reviewed and assessed. Filling-in issues must be understood in relation to theoretical issues about neuralignoring an absencejumping to a conclusionanalytic isomorphismCartesian materialism, a particular (...)
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  • The Senses Considered as Perceptual Systems.Charles K. West & James J. Gibson - 1969 - Journal of Aesthetic Education 3 (1):142.
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  • The Senses Considered as Perceptual Systems.James Jerome Gibson - 1966 - Boston, USA: Houghton Mifflin.
    Describes the various senses as sensory systems that are attuned to the environment. Develops the notion of rich sensory information that specifies the distal environment. Includes a discussion of affordances.
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  • Consciousness Explained.Daniel Dennett - 1991 - Philosophy and Phenomenological Research 53 (4):905-910.
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  • Computation and Cognition: Toward a Foundation for Cognitive Science.John Haugeland - 1987 - Philosophy of Science 54 (2):309-311.
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  • (1 other version)The medium and the message in mental imagery: A theory.Stephen M. Kosslyn - 1981 - Psychological Review 88 (1):46-66.
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  • Validating computational models: A critique of Anderson's indeterminacy of representation claim.Zenon W. Pylyshyn - 1979 - Psychological Review 86 (4):383-394.
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  • Cognitive representation and the process-architecture distinction.Zenon W. Pylyshyn - 1980 - Behavioral and Brain Sciences 3 (1):154-169.
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  • Role of mental imagery in free recall of deaf, blind, and normal subjects.Ellis M. Craig - 1973 - Journal of Experimental Psychology 97 (2):249.
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  • The role of location indexes in spatial perception: A sketch of the FINST spatial-index model.Zenon Pylyshyn - 1989 - Cognition 32 (1):65-97.
    Marr (1982) may have been one of the rst vision researchers to insist that in modeling vision it is important to separate the location of visual features from their type. He argued that in early stages of visual processing there must be “place tokens” that enable subsequent stages of the visual system to treat locations independent of what specic feature type was at that location. Thus, in certain respects a collinear array of diverse features could still be perceived as a (...)
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  • Situating vision in the world.Zenon W. Pylyshyn - 2000 - Trends in Cognitive Sciences 4 (5):197-207.
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  • Change blindness.Daniel J. Simons & Daniel T. Levin - 1997 - Trends in Cognitive Sciences 1 (1):241-82.
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  • Is the richness of our visual world an illusion? Transsaccadic memory for complex scenes.Susan J. Blackmore, Gavin Brelstaff, Katherine Nelson & Tom Troscianko - 1995 - Perception 24:1075-81.
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  • Are we aware of neural activity in primary visual cortex.Francis Crick & Christof Koch - 1995 - Nature 375:121-23.
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  • Are theories of imagery theories of imagination? An active perception approach to conscious mental content.Nigel J. T. Thomas - 1999 - Cognitive Science 23 (2):207-245.
    Can theories of mental imagery, conscious mental contents, developed within cognitive science throw light on the obscure (but culturally very significant) concept of imagination? Three extant views of mental imagery are considered: quasi‐pictorial, description, and perceptual activity theories. The first two face serious theoretical and empirical difficulties. The third is (for historically contingent reasons) little known, theoretically underdeveloped, and empirically untried, but has real explanatory potential. It rejects the “traditional” symbolic computational view of mental contents, but is compatible with recentsituated (...)
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  • The imagery debate: Analog media vs. tacit knowledge.Zenon W. Pylyshyn - 1981 - Psychological Review 88 (December):16-45.
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  • Arguments concerning representations for mental imagery.John R. Anderson - 1978 - Psychological Review (4):249-277.
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  • How direct is visual perception? Some reflections on Gibson's 'ecological approach'.Jerry A. Fodor & Zenon W. Pylyshyn - 1981 - Cognition 9 (2):139-96.
    Examines the theses that the postulation of mental processing is unnecessary to account for our perceptual relationship with the world, see turvey etal. for a criticque.
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  • Rules and representations: Chomsky and representational realism.Zenon W. Pylyshyn - 1988
    called,_ Cognitive Science_ was to bring back scienti?c realism. This may strike you as a very odd claim, for one does not usually think of science as needing to be talked into scienti?c realism. Science is, after all, the study of reality by the most precise instruments of measurement and.
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  • Interactions between philosophy and artificial intelligence: The role of intuition and non-logical reasoning in intelligence.Aaron Sloman - 1971 - Artificial Intelligence 2 (3-4):209-225.
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  • Unified theories of cognition.Allen Newell - 1990 - Cambridge: Harvard University Press.
    In this book, Newell makes the case for unified theories by setting forth a candidate.
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