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  1. (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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  • Change Detection.Ronald A. Rensink - 2002 - Annual Review of Psychology 53 (1):245-277.
    Five aspects of visual change detection are reviewed. The first concerns the concept of change itself, in particular the ways it differs from the related notions of motion and difference. The second involves the various methodological approaches that have been developed to study change detection; it is shown that under a variety of conditions observers are often unable to see large changes directly in their field of view. Next, it is argued that this “change blindness” indicates that focused attention is (...)
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  • Anger superiority effect for change detection and change blindness.Pessi Lyyra, Jari K. Hietanen & Piia Astikainen - 2014 - Consciousness and Cognition 30:1-12.
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  • Differential effect of distractor timing on localizing versus identifying visual changes.Katsumi Watanabe - 2003 - Cognition 88 (2):243-257.
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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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  • Implicit processing of tactile information: Evidence from the tactile change detection paradigm.David Pritchett, Alberto Gallace & Charles Spence - 2011 - Consciousness and Cognition 20 (3):534-546.
    People can maintain accurate representations of visual changes without necessarily being aware of them. Here, we investigate whether a similar phenomenon also exists in touch. In Experiments 1 and 2, participants detected the presence of a change between two consecutively-presented tactile displays. Tactile change blindness was observed, with participants failing to report the presence of tactile change. Critically, however, when participants had to make a forced choice response regarding the number of stimuli presented in the two displays, their performance was (...)
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  • Scene perception: What we can learn from visual integration and change detection.Daniel J. Simons, Steve Mitroff & Steve Franconeri - 2003 - In Michael L. Peterson & G. Rhodes (eds.), Perception of Faces, Objects, and Scenes: Analytic and Holistic Processes (335-355). Oxford University Press.
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  • Explicit mechanisms do not account for implicit localization and identification of change: An empirical reply to Mitroff et al (2000).Diego Fernandez-Duque & Ian Thornton - 2003 - Journal of Experimental Psychology 29 (5).
    Several recent findings support the notion that changes in the environment can be implicitly represented by the visual system. S. R. Mitroff, D. J. Simons, and S. L. Franconeri (2002) challenged this view and proposed alternative interpretations based on explicit strategies. Across 4 experiments, the current study finds no empirical support for such alternative proposals. Experiment 1 shows that subjects do not rely on unchanged items when locating an unaware change. Experiments 2 and 3 show that unaware changes affect performance (...)
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  • Implicit Detection Observation in Different Features, Exposure Duration, and Delay During Change Blindness.Wang Xiang - 2021 - Frontiers in Psychology 11.
    To investigate whether implicit detection occurs uniformly during change blindness with single or combination feature stimuli, and whether implicit detection is affected by exposure duration and delay, two one-shot change detection experiments are designed. The implicit detection effect is measured by comparing the reaction times of baseline trials, in which stimulus exhibits no change and participants report “same,” and change blindness trials, in which the stimulus exhibits a change but participants report “same.” If the RTs of blindness trials are longer (...)
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  • Priming effects under correct change detection and change blindness.Corrado Caudek & Fulvio Domini - 2013 - Consciousness and Cognition 22 (1):290-305.
    In three experiments, we investigated the priming effects induced by an image change on a successive animate/inanimate decision task. We studied both perceptual and conceptual priming effects, under correct change detection and change blindness . Under correct change detection, we found larger positive priming effects on congruent trials for probes representing animate entities than for probes representing artifactual objects. Under CB, we found performance impairment relative to a “no-change” baseline condition. This inhibition effect induced by CB was modulated by the (...)
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  • The cognitive and neural correlates of “tactile consciousness”: A multisensory perspective.Alberto Gallace & Charles Spence - 2008 - Consciousness and Cognition 17 (1):370-407.
    People’s awareness of tactile stimuli has been investigated in far less detail than their awareness of stimuli in other sensory modalities. In an attempt to fill this gap, we provide an overview of studies that are pertinent to the topic of tactile consciousness. We discuss the results of research that has investigated phenomena such as “change blindness”, phantom limb sensations, and numerosity judgments in tactile perception, together with the results obtained from the study of patients affected by deficits that can (...)
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  • Mapping visual attention with change blindness: new directions for a new method.Peter U. Tse - 2004 - Cognitive Science 28 (2):241.
    Change blindness provides a new technique for mapping visual attention with unprecedented spatial and temporal resolution. Change blindness can occur when a brief full‐field blank interferes with the detection of changes in a scene that occur during the blank. This interference can be overcome by attending to the location of a change. Because changes are detected at attended locations, but not at unattended locations, detection accuracy provides an indirect measure of the distribution of visual attention. The likelihood of detecting a (...)
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  • Sensing without seeing in comparative visual search.Adam Galpin, Geoffrey Underwood & Peter Chapman - 2008 - Consciousness and Cognition 17 (3):672-687.
    Rensink [Rensink, R. A. . Visual sensing without seeing. Psychological Science, 15, 27–32] has presented evidence suggesting visual changes may be sensed without an accompanying visual experience. Here, we report two experiments in which we monitored observers’ eye-movements whilst they searched for a difference between two simultaneously presented images and pressed separate response keys when a difference was seen or sensed. We first assessed whether sensing performance was random by collecting ratings of confidence in the validity of sensing and assessing (...)
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  • Representation of change: Separate electrophysiological markers of attention, awareness, and implicit processing.Diego Fernandez-Duque, Giordana Grossi, Ian Thornton & Helen Neville - 2003 - Journal of Cognitive Neuroscience 15 (4):491-507.
    & Awareness of change within a visual scene only occurs in subjects were aware of, replicated those attentional effects, but the presence of focused attention. When two versions of a.
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  • Evidence for preserved representations in change blindness.Daniel J. Simons, Christopher Chabris & Tatiana Schnur - 2002 - Consciousness and Cognition 11 (1):78-97.
    People often fail to detect large changes to scenes, provided that the changes occur during a visual disruption. This phenomenon, known as ''change blindness,'' occurs both in the laboratory and in real-world situations in which changes occur unexpectedly. The pervasiveness of the inability to detect changes is consistent with the theoretical notion that we internally represent relatively little information from our visual world from one glance at a scene to the next. However, evidence for change blindness does not necessarily imply (...)
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  • The siren song of implicit change detection.Stephen R. Mitroff, Daniel J. Simons & Steven Franconeri - 2002 - Journal Of Experimental Psychology-Human Perception And Performance 28 (4):798-815.
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  • Undetected changes in visible stimuli influence subsequent decisions.Axel Cleeremans - 2008 - Consciousness and Cognition 17 (3):646-656.
    Change blindness—our inability to detect changes in a stimulus—occurs even when the change takes place gradually, without any disruption [Simons, D. J., Franconeri, S. L., & Reimer, R. L. . Change blindness in the absence of a visual disruption. Perception, 29, 1143–1154]. Such gradual changes are more difficult to detect than changes that involve a disruption. Using this method, David et al. [David, E., Laloyaux, C., Devue, C., & Cleeremans, A. . Change blindness to gradual changes in facial expressions. Psychologica (...)
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  • Action blindness in response to gradual changes.Bruno Berberian, Stephanie Chambaron-Ginhac & Axel Cleeremans - 2010 - Consciousness and Cognition 19 (1):152-171.
    The goal of this study is to characterize observers’ abilities to detect gradual changes and to explore putative dissociations between conscious experience of change and behavioral adaptation to a changing stimulus. We developed a new experimental paradigm in which, on each trial, participants were shown a dot pattern on the screen. Next, the pattern disappeared and participants had to reproduce it. In some conditions, the target pattern was incrementally rotated over successive trials and participants were either informed or not of (...)
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  • Converging evidence for the detection of change without awareness.Ian Thornton & Diego Fernandez-Duque - 2002 - Progress in Brain Research.
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