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  1. Core systems of number.Stanislas Dehaene, Elizabeth Spelke & Lisa Feigenson - 2004 - Trends in Cognitive Sciences 8 (7):307-314.
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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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  • Beyond the number domain.Jessica F. Cantlon, Michael L. Platt & Elizabeth M. Brannon - 2009 - Trends in Cognitive Sciences 13 (2):83-91.
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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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  • Discourse-mediation of the mapping between language and the visual world: Eye movements and mental representation.Gerry T. M. Altmann & Yuki Kamide - 2009 - Cognition 111 (1):55-71.
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  • A theory of magnitude: common cortical metrics of time, space and quantity.V. Walsh - 2003 - Trends in Cognitive Sciences 7 (11):483-488.
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  • Visual routines.Shimon Ullman - 1984 - Cognition 18 (1-3):97-159.
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  • Image-based object recognition in man, monkey and machine.Michael J. Tarr & Heinrich H. Bülthoff - 1998 - Cognition 67 (1-2):1-20.
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  • Selective visual attention and perceptual coherence.John T. Serences & Steven Yantis - 2006 - Trends in Cognitive Sciences 10 (1):38-45.
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  • Grounding spatial language in perception: an empirical and computational investigation.Terry Regier & Laura A. Carlson - 2001 - Journal of Experimental Psychology: General 130 (2):273.
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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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  • 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.
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  • The magical number seven, plus or minus two: Some limits on our capacity for processing information.George A. Miller - 1956 - Psychological Review 101 (2):343-352.
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  • A model for visual shape recognition.Peter M. Milner - 1974 - Psychological Review 81 (6):521-535.
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  • An interactive activation model of context effects in letter perception: I. An account of basic findings.James L. McClelland & David E. Rumelhart - 1981 - Psychological Review 88 (5):375-407.
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  • Processing Spatial Relations With Different Apertures of Attention.Bruno Laeng, Matia Okubo, Ayako Saneyoshi & Chikashi Michimata - 2011 - Cognitive Science 35 (2):297-329.
    Neuropsychological studies suggest the existence of lateralized networks that represent categorical and coordinate types of spatial information. In addition, studies with neural networks have shown that they encode more effectively categorical spatial judgments or coordinate spatial judgments, if their input is based, respectively, on units with relatively small, nonoverlapping receptive fields, as opposed to units with relatively large, overlapping receptive fields. These findings leave open the question of whether interactive processes between spatial detectors and types of spatial relations can be (...)
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  • Seeing and imagining in the cerebral hemispheres: A computational approach.Stephen M. Kosslyn - 1987 - Psychological Review 94 (2):148-175.
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  • Beyond the Number Domain.Elizabeth M. Brannon Jessica F. Cantlon, Michael L. Platt - 2009 - Trends in Cognitive Sciences 13 (2):83.
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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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  • A symbolic-connectionist theory of relational inference and generalization.John E. Hummel & Keith J. Holyoak - 2003 - Psychological Review 110 (2):220-264.
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  • Attention capacity and task difficulty in visual search.Liqiang Huang & Harold Pashler - 2005 - Cognition 94 (3):101-111.
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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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  • Discourse-mediation of the mapping between language and the visual world: Eye movements and mental representation.Yuki Kamide Gerry T. M. Altmann - 2009 - Cognition 111 (1):55.
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  • Number estimation relies on a set of segmented objects.S. L. Franconeri, D. K. Bemis & G. A. Alvarez - 2009 - Cognition 113 (1):1-13.
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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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  • Retinal locus and acuity in visual information processing.Charles W. Eriksen & Derek W. Schultz - 1977 - Bulletin of the Psychonomic Society 9 (2):81-84.
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  • Influence of scene-based properties on visual search.James T. Enns & Ronald A. Rensink - 1990 - Science 247:721-723.
    The task of visual search is to determine as rapidly as possible whether a target item is present or absent in a display. Rapidly detected items are thought to contain features that correspond to primitive elements in the human visual system. In previous theories, it has been assumed that visual search is based on simple two-dimensional features in the image. However, visual search also has access to another level of representation, one that describes properties in the corresponding three-dimensional scene. Among (...)
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  • Perception, attention, and the grand illusion.Alva Noë & Kevin J. O'Regan - 2000 - PSYCHE: An Interdisciplinary Journal of Research On Consciousness 6.
    This paper looks at two puzzles raised by the phenomenon of inattentional blindness. First, how can we see at all if, in order to see, we must first perceptually attend to that which we see? Second, if attention is required for perception, why does it seem to us as if we are perceptually aware of the whole detailed visual field when it is quite clear that we do not attend to all that detail? We offer a general framework for thinking (...)
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  • From Thought to Action: The Parietal Cortex as a Bridge between Perception, Action, and Cognition.Jacqueline Gottlieb - 2007 - Neuron 53 (1):9-16.
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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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  • On the role of selective attention in visual perception.Steven J. Luck & Michelle Ford - 1998 - Proceedings of the National Academy of Sciences of the United States of America 95 (3):825-830.
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  • Spatial attention and the apprehension of spatial relations.Gd Logan - 1989 - Bulletin of the Psychonomic Society 27 (6):507-507.
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  • A feature integration theory of attention.Anne Treisman - 1980 - Cognitive Psychology 12:97-136.
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  • The binding problem.Anne Treisman - 1996 - Current Opinion in Neurobiology 6:171-8.
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  • Attention and spatial language.L. A. Carlson & G. D. Logan - 2005 - In Laurent Itti, Geraint Rees & John K. Tsotsos (eds.), Neurobiology of Attention. Academic Press. pp. 330--336.
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