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  1. The concept of identity.Eli Hirsch - 1982 - New York: Oxford University Press.
    In this book, Eli Hirsch focuses on identity through time, first with respect to ordinary bodies, then underlying matter, and eventually persons.
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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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  • Competition for consciousness among visual events: The psychophysics of reentrant visual processes.Vincent Di Lollo, James T. Enns & Ronald A. Rensink - 2000 - Journal Of Experimental Psychology-General 129 (4):481-507.
    Advances in neuroscience implicate reentrant signaling as the predominant form of communication between brain areas. This principle was used in a series of masking experiments that defy explanation by feed-forward theories. The masking occurs when a brief display of target plus mask is continued with the mask alone. Two masking processes were found: an early process affected by physical factors such as adapting luminance and a later process affected by attentional factors such as set size. This later process is called (...)
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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 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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  • Change blindness.Daniel J. Simons & Daniel T. Levin - 1997 - Trends in Cognitive Sciences 1 (1):241-82.
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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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  • (1 other version)The problem of the essential indexical.John Perry - 1979 - Noûs 13 (1):3-21.
    Perry argues that certain sorts of indexicals are 'essential', in the sense that they cannot be eliminated in favor of descriptions. This paper also introduces the influential idea that certain sorts of indexicals play a special role in thought, and have a special connection to action.
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  • (1 other version)Visual marking: Prioritizing selection for new objects by top-down attentional inhibition of old objects.Derrick G. Watson & Glyn W. Humphreys - 1997 - Psychological Review 104 (1):90-122.
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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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  • (1 other version)Tracking multiple independent targets: Evidence for a parallel tracking mechanism.Zenon Pylyshyn - manuscript
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  • From Lot's Wife to a Pillar of Salt: Evidence that Physical Object is a Sortal Concept.Fei Xu - 1997 - Mind and Language 12 (3-4):365-392.
    Abstract:A number of philosophers of language have proposed that people do not have conceptual access to‘bare particulars’, or attribute‐free individuals (e.g. Wiggins, 1980). Individuals can only be picked out under some sortal, a concept which provides principles of individuation and identity. Many advocates of this view have argued thatobjectis not a genuine sortal concept. I will argue in this paper that a narrow sense of‘object’, namely the concept of any bounded, coherent, three‐dimensional physical object that moves as a whole (Spelke, (...)
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  • On the Origin of Objects.Brian Cantwell Smith - 1996 - Cambridge: Mass. : MIT Press.
    On the Origin of Objects is the culmination of Brian Cantwell Smith's decade-long investigation into the philosophical and metaphysical foundations of computation, artificial intelligence, and cognitive science. Based on a sustained critique of the formal tradition that underlies the reigning views, he presents an argument for an embedded, participatory, "irreductionist," metaphysical alternative. Smith seeks nothing less than to revise our understanding not only of the machines we build but also of the world with which they interact. Smith's ambitious project begins (...)
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  • The Psychology of Attention.Harold Pashler - 1998 - The MIT Press.
    The book develops empirical generalizations about the major issues and suggests possible underlying theoretical principles.
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  • A feature integration theory of attention.Anne Treisman - 1980 - Cognitive Psychology 12:97-136.
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  • Indexical knowledge and robot action—a logical account.Yves Lespérance & Hector J. Levesque - 1995 - Artificial Intelligence 73 (1-2):69-115.
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  • Auditory and visual objects.Michael Kubovy & David Van Valkenburg - 2001 - Cognition 80 (1-2):97-126.
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  • Infants' tracking of objects and collections.Wen-Chi Chiang & Karen Wynn - 2000 - Cognition 77 (3):169-195.
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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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  • Solving the "real" mysteries of visual perception: The world as an outside memory.Kevin J. O'Regan - 1992 - Canadian Journal of Psychology 46:461-88.
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  • Infants' knowledge of objects: beyond object files and object tracking.Susan Carey & Fei Xu - 2001 - Cognition 80 (1-2):179-213.
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  • (1 other version)Indexing and the object concept: developing `what' and `where' systems.Alan M. Leslie, Fei Xu, Patrice D. Tremoulet & Brian J. Scholl - 1998 - Trends in Cognitive Sciences 2 (1):10-18.
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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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  • Tracking Multiple Items Through Occlusion: Clues to Visual Objecthood.Brian J. Scholl & Zenon W. Pylyshyn - unknown
    In three experiments, subjects attempted to track multiple items as they moved independently and unpredictably about a display. Performance was not impaired when the items were briefly (but completely) occluded at various times during their motion, suggesting that occlusion is taken into account when computing enduring perceptual objecthood. Unimpaired performance required the presence of accretion and deletion cues along fixed contours at the occluding boundaries. Performance was impaired when items were present on the visual field at the same times and (...)
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  • What is a visual object? Evidence from target merging in multiple object tracking.Brian J. Scholla - 2001 - Cognition 80 (1-2):159-177.
    The notion that visual attention can operate over visual objects in addition to spatial locations has recently received much empirical support, but there has been relatively little empirical consideration of what can count as an `object' in the ®rst place. We have investi- gated this question in the context of the multiple object tracking paradigm, in which subjects must track a number of independently and unpredictably moving identical items in a ®eld of identical distractors. What types of feature clusters can (...)
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  • Objects and attention: the state of the art.Brian J. Scholl - 2001 - Cognition 80 (1-2):1-46.
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  • Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  • Deictic codes for the embodiment of cognition.Dana H. Ballard, Mary M. Hayhoe, Polly K. Pook & Rajesh P. N. Rao - 1997 - Behavioral and Brain Sciences 20 (4):723-742.
    To describe phenomena that occur at different time scales, computational models of the brain must incorporate different levels of abstraction. At time scales of approximately 1/3 of a second, orienting movements of the body play a crucial role in cognition and form a useful computational level embodiment level,” the constraints of the physical system determine the nature of cognitive operations. The key synergy is that at time scales of about 1/3 of a second, the natural sequentiality of body movements can (...)
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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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  • Visual indexes in spatial vision and imagery.Z. W. Pylyshyn - 1998 - In Richard D. Wright (ed.), Visual Attention. Oxford University Press. pp. 231.
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  • Connectionist Models and Their Properties.J. A. Feldman & D. H. Ballard - 1982 - Cognitive Science 6 (3):205-254.
    Much of the progress in the fields constituting cognitive science has been based upon the use of explicit information processing models, almost exclusively patterned after conventional serial computers. An extension of these ideas to massively parallel, connectionist models appears to offer a number of advantages. After a preliminary discussion, this paper introduces a general connectionist model and considers how it might be used in cognitive science. Among the issues addressed are: stability and noise‐sensitivity, distributed decision‐making, time and sequence problems, and (...)
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  • The Concept of Identity.Andrew Brennan - 1984 - Noûs 18 (3):541-548.
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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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  • Visual routines.Shimon Ullman - 1984 - Cognition 18 (1-3):97-159.
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  • Why are small and large numbers enumerated differently? A limited-capacity preattentive stage in vision.Lana M. Trick & Zenon W. Pylyshyn - 1994 - Psychological Review 101 (1):80-102.
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  • (1 other version)Indexing and the object concept:” what” and” where” in infancy.Alan M. Leslie, Fei Xu, Patrice D. Tremoulet & Brian J. Scholl - 1998 - Trends in Cognitive Sciences 2 (1):10-18.
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  • A localist evaluation solution for visual stability across saccades.David E. Irwin, George W. McConkie, Laura A. Carlson-Radvansky & Christopher Currie - 1994 - Behavioral and Brain Sciences 17 (2):265-266.
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  • Attentional resolution.Sheng He, Patrick Cavanagh & James Intriligator - 1997 - Trends in Cognitive Sciences 1 (3):115-121.
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