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  1. What is the Bandwidth of Perceptual Experience?Michael A. Cohen, Daniel C. Dennett & Nancy Kanwisher - 2016 - Trends in Cognitive Sciences 20 (5):324-335.
    Although our subjective impression is of a richly detailed visual world, numerous empirical results suggest that the amount of visual information observers can perceive and remember at any given moment is limited. How can our subjective impressions be reconciled with these objective observations? Here, we answer this question by arguing that, although we see more than the handful of objects, claimed by prominent models of visual attention and working memory, we still see far less than we think we do. Taken (...)
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  • A motion aftereffect from visual imagery of motion.Jonathan Winawer, Alexander C. Huk & Lera Boroditsky - 2010 - Cognition 114 (2):276-284.
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  • Visual crowding: a fundamental limit on conscious perception and object recognition.David Whitney & Dennis M. Levi - 2011 - Trends in Cognitive Sciences 15 (4):160-168.
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  • (2 other versions)Change blindness: Past, present, and future. [REVIEW]Daniel J. Simons & Ronald A. Rensink - 2005 - Trends in Cognitive Sciences 9 (1):16-20.
    Change blindness is the striking failure to see large changes that normally would be noticed easily. Over the past decade this phenomenon has greatly contributed to our understanding of attention, perception, and even consciousness. The surprising extent of change blindness explains its broad appeal, but its counterintuitive nature has also engendered confusions about the kinds of inferences that legitimately follow from it. Here we discuss the legitimate and the erroneous inferences that have been drawn, and offer a set of requirements (...)
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  • (2 other versions)Change Blindness.Ronald A. Rensink - 2005 - In Laurent Itti, Geraint Rees & John K. Tsotsos (eds.), Neurobiology of Attention. Academic Press. pp. 76--81.
    Large changes that occur in clear view of an observer can become difficult to notice if made during an eye movement, blink, or other such disturbance. This change blindness is consistent with the proposal that focused visual attention is necessary to see change, with a change becoming difficult to notice whenever conditions prevent attention from being automatically drawn to it. -/- It is shown here how the phenomenon of change blindness can provide new results on the nature of visual attention, (...)
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  • Training Visual Imagery: Improvements of Metacognition, but not Imagery Strength.Rosanne L. Rademaker & Joel Pearson - 2012 - Frontiers in Psychology 3.
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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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  • The perceptual and phenomenal capacity of mental imagery.Rebecca Keogh & Joel Pearson - 2017 - Cognition 162 (C):124-132.
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  • Cognitive coordinate systems: Accounts of mental rotation and individual differences in spatial ability.Marcel A. Just & Patricia A. Carpenter - 1985 - Psychological Review 92 (2):137-172.
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  • Flexible cognitive resources: competitive content maps for attention and memory.Steven L. Franconeri, George A. Alvarez & Patrick Cavanagh - 2013 - Trends in Cognitive Sciences 17 (3):134-141.
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  • A detection theory account of change detection.Patrick Wilken & Wei Ji Ma - 2004 - Journal of Vision 4 (12):1120-1135.
    Previous studies have suggested that visual short-term memory (VSTM) has a storage limit of approximately four items. However, the type of high-threshold (HT) model used to derive this estimate is based on a number of assumptions that have been criticized in other experimental paradigms (e.g., visual search). Here we report findings from nine experiments in which VSTM for color, spatial frequency, and orientation was modeled using a signal detection theory (SDT) approach. In Experiments 1-6, two arrays composed of multiple stimulus (...)
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