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  1. 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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  • Sensitivity to three-dimensional orientation in visual search.James T. Enns & Ronald A. Rensink - 1990 - Psychological Science 1 (5):323-326.
    Previous theories of early vision have assumed that visual search is based on simple two-dimensional aspects of an image, such as the orientation of edges and lines. It is shown here that search can also be based on three-dimensional orientation of objects in the corresponding scene, provided that these objects are simple convex blocks. Direct comparison shows that image-based and scene-based orientation are similar in their ability to facilitate search. These findings support the hypothesis that scene-based properties are represented at (...)
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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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  • Information integration across saccadic eye movements.D. E. Irwin - 1991 - Cognitive Psychology 23:420-56.
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  • Picture changes during blinks: Looking without seeing and seeing without looking.J. Kevin O'Regan, H. Deubel, James J. Clark & Ronald A. Rensink - 2000 - Visual Cognition 7:191-211.
    Observers inspected normal, high quality color displays of everyday visual scenes while their eye movements were recorded. A large display change occurred each time an eye blink occurred. Display changes could either involve "Central Interest" or "Marginal Interest" locations, as determined from descriptions obtained from independent judges in a prior pilot experiment. Visual salience, as determined by luminance, color, and position of the Central and Marginal interest changes were equalized. -/- The results obtained were very similar to those obtained in (...)
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  • Familiarity and visual change detection.Harold Pashler - 1988 - Perception and Psychophysics 41:191-201.
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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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  • (1 other version)On the failure to detect changes in scenes across saccades.John A. Grimes - 1996 - In Enrique Villanueva (ed.), Perception. Ridgeview Pub. Co.
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  • A feature integration theory of attention.Anne Treisman - 1980 - Cognitive Psychology 12:97-136.
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  • Change detection without awareness: Do explicit reports underestimate the representation of change in the visual system?Diego Fernandez-Duque & Ian Thornton - 2000 - Visual Cognition 7 (1):323-344.
    Evidence from many different paradigms (e.g. change blindness, inattentional blindness, transsaccadic integration) indicate that observers are often very poor at reporting changes to their visual environment. Such evidence has been used to suggest that the spatio-temporal coherence needed to represent change can only occur in the presence of focused attention. In four experiments we use modified change blindness tasks to demonstrate (a) that sensitivity to change does occur in the absence of awareness, and (b) this sensitivity does not rely on (...)
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  • Does unattended information facilitate change detection?Daniel Smilek, Jonathan Eastwood & Philip M. Merikle - 2000 - Journal of Experimental Psychology 26:480-487.
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  • Time, our lost dimension: Toward a new theory of perception, attention, and memory.Mari R. Jones - 1976 - Psychological Review 83 (5):323-355.
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  • Conscious and unconscious perception: An approach to the relations between phenomenal experience and perceptual processes.Anthony J. Marcel - 1983 - Cognitive Psychology 15:238-300.
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  • Inattentional Blindness.Arien Mack & Irvin Rock - 1998 - MIT Press. Edited by Richard D. Wright.
    Arien Mack and Irvin Rock make the radical claim that there is no conscious perception of the visual world without attention to it.
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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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  • Orienting attention without awareness.P. A. McCormick - 1997 - Journal of Experimental Psychology 23:168-180.
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  • What's scene and not seen: Influences of movement and task upon what we see.G. Wallis & H. Buelthoff - 2000 - Visual Cognition 7:175-190.
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  • The visual brain in action (precis).David Milner - 1998 - PSYCHE: An Interdisciplinary Journal of Research On Consciousness 4.
    First published in 1995, The Visual Brain in Action remains a seminal publication in the cognitive sciences. It presents a model for understanding the visual processing underlying perception and action, proposing a broad distinction within the brain between two kinds of vision: conscious perception and unconscious 'online' vision. It argues that each kind of vision can occur quasi-independently of the other, and is separately handled by a quite different processing system. In the 11 years since publication, the book has provoked (...)
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  • Dynamic mental representations.Jennifer J. Freyd - 1987 - Psychological Review 94 (4):427-438.
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  • Attenuated change blindness for exogenously attended items in a flicker paradigm.Brian J. Scholl - 2000 - Visual Cognition 7:377-396.
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  • The effects of scene inversion on change blindness.D. Shore & Raymond M. Klein - 2000 - Journal of General Psychology 127:27-43.
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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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  • Failure to detect displacements of the visual world during saccadic eye movements.Bruce Bridgeman, David Hendry & L. Stark - 1975 - Vision Research 15:719-22.
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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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  • 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 Search: The role of memory for rejected distractors.Todd S. Horowitz & J. M. Wolfe - 2005 - In Laurent Itti, Geraint Rees & John K. Tsotsos (eds.), Neurobiology of Attention. Academic Press. pp. 264.
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  • Conscious visual perceptual awareness vs non-conscious visual spatial localisation examined with normal subjects using possible analogues of blindsight and neglect.R. E. Graves & B. S. Jones - 1992 - Cognitive Neuropsychology 9:487-508.
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  • Temporal course of selective attention.Charles W. Eriksen & James F. Collins - 1969 - Journal of Experimental Psychology 80 (2p1):254.
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  • Blindsight in normal observers.F. C. Kolb & Jochen Braun - 1995 - Nature 377:336-8.
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