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  1. Cultural differences in visual search for geometric figures.Yoshiyuki Ueda, Lei Chen, Jonathon Kopecky, Emily S. Cramer, Ronald A. Rensink, David E. Meyer, Shinobu Kitayama & Jun Saiki - 2018 - Cognitive Science 42 (1):286-310.
    While some studies suggest cultural differences in visual processing, others do not, possibly because the complexity of their tasks draws upon high-level factors that could obscure such effects. To control for this, we examined cultural differences in visual search for geometric figures, a relatively simple task for which the underlying mechanisms are reasonably well known. We replicated earlier results showing that North Americans had a reliable search asymmetry for line length: Search for long among short lines was faster than vice (...)
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  • Parallel and serial processes in visual search.Thomas L. Thornton & David L. Gilden - 2007 - Psychological Review 114 (1):71-103.
  • Superior modulation of activation levels of stimulus representations does not underlie superior discrimination in autism.Michelle O'Riordan - 2000 - Cognition 77 (2):81-96.
  • Superior modulation of activation levels of stimulus representations does not underlie superior discrimination in autism.Michelle O'Riordan - 2000 - Cognition 77 (2):81-96.
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  • Basic color terms do not refer to basic colors.Yasmina Jraissati - 2010 - Rivista di Estetica 43:125-145.
    A widely held view on color cognition is that it is structured by a set of color fundamentals. Three sorts of evidence may be invoked in favor of such a ‘foundational’ approach to color cognition: physiological, phenomenal and lexical. This paper focuses on the lexical evidence, which draws from a predominant view in color categorization, the Basic color terms theory (BCTT). It argues that the BCTT does not consist in a foundational approach to color cognition and does not provide such (...)
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  • Constraints on Colour Category Formation.Yasmina Jraissati, Elley Wakui, Lieven Decock & Igor Douven - 2012 - International Studies in the Philosophy of Science 26 (2):171-196.
    This article addresses two questions related to colour categorization, to wit, the question what a colour category is, and the question how we identify colour categories. We reject both the relativist and universalist answers to these questions. Instead, we suggest that colour categories can be identified with the help of the criterion of psychological saliency, which can be operationalized by means of consistency and consensus measures. We further argue that colour categories can be defined as well-structured entities that optimally partition (...)
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  • Categorical Perception of Color: Assessing the Role of Language.Yasmina Jraissati - 2012 - Croatian Journal of Philosophy 12 (3):439-462.
    Why do we draw the boundaries between “blue” and “green”, where we do? One proposed answer to this question is that we categorize color the way we do because we perceive color categorically. Starting in the 1950’s, the phenomenon of “categorical perception” (CP) encouraged such a response. CP refers to the fact that adjacent color patches are more easily discriminated when they straddle a category boundary than when they belong to the same category. In this paper, I make three related (...)
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  • How to define an object: Evidence from the effects of action on perception and attention.Glyn W. Humphreys & M. Jane Riddoch - 2007 - Mind and Language 22 (5):534–547.
    We present work demonstrating that the nature of an object for our visual system depends on the actions we are programming and on the presence of action relations between stimuli. For example, patients who show visual extinction are more likely to become aware of two objects if the objects fall in appropriate visual locations for a common action. This effect of the action relations between objects is modulated both by the familiarity of the positioning of the objects for action, and (...)
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  • Salience of visual parts.Donald D. Hoffman & Manish Singh - 1997 - Cognition 63 (1):29-78.
  • Attention, spatial representation, and visual neglect: Simulating emergent attention and spatial memory in the selective attention for identification model (SAIM).Dietmar Heinke & Glyn W. Humphreys - 2003 - Psychological Review 110 (1):29-87.
  • Asymmetric visual representation of sex from human body shape.Marco Gandolfo & Paul E. Downing - 2020 - Cognition 205 (C):104436.
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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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  • The Modeling and Control of Visual Perception.Ronald A. Rensink - 2007 - In Wayne Gray (ed.), Integrated Models of Cognitive Systems. Oxford University Press. pp. 132-148.
    Recent developments in vision science have resulted in several major changes in our understanding of human visual perception. For example, attention no longer appears necessary for "visual intelligence"--a large amount of sophisticated processing can be done without it. Scene perception no longer appears to involve static, general-purpose descriptions, but instead may involve dynamic representations whose content depends on the individual and the task. And vision itself no longer appears to be limited to the production of a conscious "picture"--it may also (...)
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  • Attention, Consciousness, and Data Display.Ronald A. Rensink - 2006 - In 2006 Proceedings of the American Statistical Association, Statistical Graphics Section.
    Recent advances in our understanding of visual perception have shown it to be a far more complex and counterintuitive process than previously believed. Several important consequences follow from this. First, the design of an effective statistical graphics system is unlikely to succeed based on intuition alone; instead, it must rely on a more sophisticated, systematic approach. The basic elements of such an approach are outlined here, along with several design principles. An overview is then given of recent advances in our (...)
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  • Object completion effects in attention and memory.Siyi Chen - 2018 - Dissertation, Ludwig-Maximilians-Universität
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  • Early completion of occluded objects.Ronald A. Rensink & James T. Enns - 1998 - Vision Research 38:2489-2505.
    We show that early vision can use monocular cues to rapidly complete partially-occluded objects. Visual search for easily detected fragments becomes difficult when the completed shape is similar to others in the display; conversely, search for fragments that are difficult to detect becomes easy when the completed shape is distinctive. Results indicate that completion occurs via the occlusion-triggered removal of occlusion edges and linking of associated regions. We fail to find evidence for a visible filling-in of contours or surfaces, but (...)
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  • The influence of cast shadows on visual search.Ronald A. Rensink & Patrick Cavanagh - 2004 - Perception 33:1339-1358.
    We show that cast shadows can have a significant influence on the speed of visual search. In particular, we find that search based on the shape of a region is affected when the region is darker than the background and corresponds to a shadow formed by lighting from above. Results support the proposal that an early-level system rapidly identifies regions as shadows and then discounts them, making their shapes more difficult to access. Several constraints used by this system are mapped (...)
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  • Changes.Ronald A. Rensink - 2002 - Progress in Brain Research 140:199-209.
    This past decade has seen a great resurgence of interest in the perception of change. Change has, of course, long been recognized as a phenomenon worthy of study, and vision scientists have given their attention to it at various times in the past (for a review, see Rensink, 2002a). But things seem different this time around. This time, there is an emerging belief that instead of being just another visual ability, the perception of change may be something central to our (...)
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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 applications of change blindness.Ronald A. Rensink - 2008 - Psychologia 51:100-106.
    An overview is presented of the ways that change blindness has been applied to the study of various issues in perception and cognition. Topics include mechanisms of change perception, allocation of attention, nonconscious perception, and cognitive beliefs. Recent work using change blindness to investigate these topics is surveyed, along with a brief discussion of some of the ways that these approaches may further develop over the next few years.
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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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  • Seeing Seeing.Ronald A. Rensink - 2010 - PSYCHE: An Interdisciplinary Journal of Research On Consciousness 16 (1):68-78.
    This paper discusses several key issues concerning consciousness and human vision. A brief overview is presented of recent developments in this area, including issues that have been resolved and issues that remain unsettled. Based on this, three Hilbert questions are proposed. These involve three related sets of issues: the kinds of visual experience that exist, the kinds of visual attention that exist, and the ways that these relate to each other.
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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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  • Seeing, sensing, and scrutinizing.Ronald A. Rensink - 2000 - Vision Research 40:1469-1487.
    Large changes in a scene often become difficult to notice if made during an eye movement, image flicker, movie cut, or other such disturbance. It is argued here that this _change blindness_ can serve as a useful tool to explore various aspects of vision. This argument centers around the proposal that focused attention is needed for the explicit perception of change. Given this, the study of change perception can provide a useful way to determine the nature of visual attention, and (...)
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  • Change blindness: Implications for the nature of visual attention.Ronald A. Rensink - 2001 - In L. Harris & M. Jenkin (eds.), Vision and Attention. New York: Academic Press. pp. 16-20.
    In the not-too-distant past, vision was often said to involve three levels of processing: a low level concerned with descriptions of the geometric and photometric properties of the image, a high level concerned with abstract knowledge of the physical and semantic properties of the world, and a middle level concerned with anything not handled by the other two. The negative definition of mid-level vision contained in this description reflected a rather large gap in our understanding of visual processing: How could (...)
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  • Feature Binding and Object Perception. Does Object Awareness Require Feature Conjunction?Dario Taraborelli - unknown
    Recent work in different fields of cognitive sciences seems to support the idea that in order to explain awareness of visually presented objects some kind of binding mechanism is needed for the correct conjunction of different sensory features into a whole percept. Selective attention is commonly invoked as the key for solving this conjunction problem. Accordingly, the cognitive neurosciences have begun to investigate what kind of neural processing could underlie such a process. I analyse the evidence provided for justifying the (...)
     
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  • The level of attention: Mediating between the stimulus and perception.Jeremy Wolfe - 2003 - In L. Harris & M. Jenkin (eds.), Levels of Perception: A Festschrift for Ian Howard. Springer Verlag.
  • Visual Attention.Jeremy Wolfe - 2000 - In K.K. De Valois (ed.), Seeing. Academic Press. pp. 335-386.
  • The what and why of binding: The modeler's perspective.Christoph von der Malsburg - 1999 - Neuron 24:95-104.
    In attempts to formulate a computational understanding of brain function, one of the fundamental concerns is the data structure by which the brain represents information. For many decades, a conceptual framework has dominated the thinking of both brain modelers and neurobiologists. That framework is referred to here as "classical neural networks." It is well supported by experimental data, although it may be incomplete. A characterization of this framework will be offered in the next section. Difficulties in modeling important functional aspects (...)
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  • Perception preattentive and phenomenal.Austen Clark - manuscript
    Recent work in experimental psychology and neuroscience has revealed a rather surprising architecture for early (or preattentive) perceptual processes. This paper will describe some of the surprising features of that architecture, and how they bear on recent philosophical debates about the notion of phenomenal consciousness. I will argue that the common sense idea that states of phenomenal consciousness are states of a unitary kind cannot survive confrontation with the details of how our early perceptual processing works. In particular, that architecture (...)
     
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  • Visual attention.Marvin Chun & Jeremy Wolfe - 2001 - In E. B. Goldstein (ed.), Blackwell Handbook of Perception. Blackwell. pp. 2--335.