Results for 'J. Kevin O'Regan'

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  1. Discussion of J. Kevin O’Regan’s “Why Red Doesn’t Sound Like a Bell: Understanding the Feel of Consciousness”.J. Kevin O’Regan & Ned Block - 2012 - Review of Philosophy and Psychology 3 (1):89-108.
    Discussion of J. Kevin O’Regan’s “Why Red Doesn’t Sound Like a Bell: Understanding the Feel of Consciousness” Content Type Journal Article Pages 1-20 DOI 10.1007/s13164-012-0090-7 Authors J. Kevin O’Regan, Laboratoire Psychologie de la Perception, CNRS - Université Paris Descartes, Centre Biomédical des Saints Pères, 45 rue des Sts Pères, 75270 Paris cedex 06, France Ned Block, Departments of Philosophy, Psychology and Center for Neural Science, New York University, 5 Washington Place, New York, NY 10003, USA Journal Review of (...)
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  2. On the brain-basis of visual consciousness: a sensorimotor account.Alva Noë & J. Kevin O'Regan - 2002 - In Alva Noe & Evan Thompson (eds.), Vision and Mind: Selected Readings in the Philosophy of Perception. MIT Press. pp. 567--598.
  3. A sensorimotor account of vision and visual consciousness.J. Kevin O’Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):883-917.
    Many current neurophysiological, psychophysical, and psychological approaches to vision rest on the idea that when we see, the brain produces an internal representation of the world. The activation of this internal representation is assumed to give rise to the experience of seeing. The problem with this kind of approach is that it leaves unexplained how the existence of such a detailed internal representation might produce visual consciousness. An alternative proposal is made here. We propose that seeing is a way of (...)
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  4. What it is like to see: A sensorimotor theory of perceptual experience.J. Kevin O’Regan - 2001 - Synthese 129 (1):79-103.
    The paper proposes a way of bridging the gapbetween physical processes in the brain and the ''''felt''''aspect of sensory experience. The approach is based onthe idea that experience is not generated by brainprocesses themselves, but rather is constituted by theway these brain processes enable a particular form of''''give-and-take'''' between the perceiver and theenvironment. From this starting-point we are able tocharacterize the phenomenological differences betweenthe different sensory modalities in a more principledway than has been done in the past. We are also (...)
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  5. Solving the "real" mysteries of visual perception: The world as an outside memory.Kevin J. O'Regan - 1992 - Canadian Journal of Psychology 46:461-88.
  6. 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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  7. The 'feel'of seeing:: an interview with J. Kevin O'Regan.J. Kevin O'Regan - 2001 - Trends in Cognitive Sciences 5 (6):278-279.
  8.  15
    What would the robots play? Interview with J. Kevin O’Regan.J. Kevin O’Regan, Włodzisław Duch, Przemysław Nowakowski & Witold Wachowski - 2011 - Avant: Trends in Interdisciplinary Studies 2 (2).
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  9.  61
    Change blindness as a result of mudsplashes.Kevin J. O'Regan, Ronald A. Rensink & James J. Clark - 1999 - Nature 398 (6722):34-34.
    Change-blindness occurs when large changes are missed under natural viewing conditions because they occur simultaneously with a brief visual disruption, perhaps caused by an eye movement, a flicker, a blink, or a camera cut in a film sequence. We have found that this can occur even when the disruption does not cover or obscure the changes. When a few small, high-contrast shapes are briefly spattered over a picture, like mudsplashes on a car windscreen, large changes can be made simultaneously in (...)
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  10.  29
    Sensory consciousness explained (better) in terms of ‘corporality’ and ‘alerting capacity’.J. Kevin O’Regan, Erik Myin & Alva NOë - 2005 - Phenomenology and the Cognitive Sciences 4 (4):369-387.
    How could neural processes be associated with phenomenal consciousness? We present a way to answer this question by taking the counterintuitive stance that the sensory feel of an experience is not a thing that happens to us, but a thing we do: a skill we exercise. By additionally noting that sensory systems possess two important, objectively measurable properties, corporality and alerting capacity, we are able to explain why sensory experience possesses a sensory feel, but thinking and other mental processes do (...)
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  11. A sensorimotor account of vision and visual consciousness-Authors' Response-Acting out our sensory experience.J. Kevin O'Regan & A. Noe - 2001 - Behavioral and Brain Sciences 24 (5):1011.
  12. How to Build a Robot that is Conscious and Feels.J. Kevin O’Regan - 2012 - Minds and Machines 22 (2):117-136.
    Following arguments put forward in my book (Why red doesn’t sound like a bell: understanding the feel of consciousness. Oxford University Press, New York, USA, 2011), this article takes a pragmatic, scientist’s point of view about the concepts of consciousness and “feel”, pinning down what people generally mean when they talk about these concepts, and then investigating to what extent these capacities could be implemented in non-biological machines. Although the question of “feel”, or “phenomenal consciousness” as it is called by (...)
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  13.  76
    Skill, corporality and alerting capacity in an account of sensory consciousness.J. Kevin O'Regan, Erik Myin & Alva Noë - 2006 - In Steven Laureys (ed.), Boundaries of Consciousness. Elsevier.
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  14. 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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  15.  96
    Acting out our sensory experience.J. Kevin O'Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):1011-1021.
    The most important clarification we bring in our reply to commentators concerns the problem of the “explanatory gap”: that is, the gulf that separates physical processes in the brain from the experienced quality of sensations. By adding two concepts (bodiliness and grabbiness) that were not stressed in the target article, we strengthen our claim and clarify why we think we have solved the explanatory gap problem, – not by dismissing qualia, but, on the contrary, by explaining why sensations have a (...)
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  16. Sensorimotor Theory and Enactivism.Jan Degenaar & J. Kevin O’Regan - 2017 - Topoi 36 (3):393-407.
    The sensorimotor theory of perceptual consciousness offers a form of enactivism in that it stresses patterns of interaction instead of any alleged internal representations of the environment. But how does it relate to forms of enactivism stressing the continuity between life and mind? We shall distinguish sensorimotor enactivism, which stresses perceptual capacities themselves, from autopoietic enactivism, which claims an essential connection between experience and autopoietic processes or associated background capacities. We show how autopoiesis, autonomous agency, and affective dimensions of experience (...)
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  17.  60
    Experience is not something we feel but something we do: a principled way of explaining sensory phenomenology, with Change Blindness and other empirical consequences.J. Kevin O'Regan - unknown
    Any theory of experience which postulates that brain mechanisms generate "raw feel" encounters the impassable "explanatory gap" separating physics from phenomenology.
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  18.  58
    Perceptual consciousness, access to modality and skill theories: A way to naturalize phenomenology?Erik Myin & J. Kevin O'Regan - 2002 - Journal of Consciousness Studies 9 (1):27-45.
    We address the thesis recently proposed by Andy Clark, that skill-mediated access to modality implies phenomenal feel. We agree that a skill theory of perception does indeed offer the possibility of a satisfactory account of the feel of perception, but we claim that this is not only through explanation of access to modality but also because skill actually provides access to perceptual property in general. We illustrate and substantiate our claims by reference to the recently proposed 'sensorimotor contingency' theory of (...)
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  19.  38
    Skill, corporality and alerting capacity in an account of sensory consciousness.Kevin J. O'Regan - 2005
  20.  14
    Commentary on Mossio and Taraborelli: Is the enactive approach really sensorimotor?Frédéric Pascal & J. Kevin O’Regan - 2008 - Consciousness and Cognition 17 (4):1341-1342.
  21.  33
    Phenomenal consciousness lite: No thanks!J. Kevin O'Regan & Erik Myin - 2007 - Behavioral and Brain Sciences 30 (5-6):520-521.
    The target article appeals to recent empirical data to support the idea that there is more to phenomenality than is available to access consciousness. However, this claim is based on an unwarranted assumption, namely, that some kind of cortical processing must be phenomenal. The article also considerably weakens Block's original distinction between a truly nonfunctional phenomenal consciousness and a functional access consciousness. The new form of phenomenal consciousness seems to be a poor-man's cognitive access.
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  22.  98
    Toward an Analytic Phenomenology: The Concepts of "Bodiliness" and "Grabbiness".Kevin J. O'Regan, Erik Myin & No - 2001 - In A. Carsetti (ed.), Seeing and Thinking. Reflections on Kanizsa's Studies in Visual Cognition. Kluwer Academic Publishers.
    In this paper, we present an account of phenomenal con- sciousness. Phenomenal consciousness is experience, and the _problem _of phenomenal consciousness is to explain how physical processes.
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  23.  26
    For Peer Review.J. Kevin O'Regan - unknown
    Call u the triplet of cone quantum catch for the light that is incident on a surface, and v the triplet of cone quantum catch for the light that is reflected off that surface. Philipona & O'Regan (2006) present results from numerical calculations showing that: 1. each surface can be associated with a 3 by 3 matrix A such that the relation v = A u to a very high degree of accuracy for any natural illuminant, 2. the vast (...)
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  24.  40
    Change blindness.J. Kevin O'Regan - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
  25. Explaining what people say about sensory qualia.J. Kevin O'Regan - 2010 - In N. Gangopadhay, M. Madary & F. Spicer (eds.), Perception, Action, and Consciousness. Oxford University Press. pp. 31--50.
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  26.  37
    How to build a robot that feels.J. Kevin O'Regan - unknown
    Overview. Consciousness is often considered to have a "hard" part and a not-so-hard part. With the help of work in artificial intelligence and more recently in embodied robotics, there is hope that we shall be able solve the not-so-hard part and make artificial agents that understand their environment, communicate with their friends, and most importantly, have a notion of "self" and "others". But will such agents feel anything? Building the feel into the agent will be the "hard" part.
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  27.  28
    Letter legibility and visual word recognition.J. Kevin O'Regan - unknown
    Word recognition performance varies systematically as a function of where the eyes fixate in the word. Performance is maximal with the eye slightly left of the center of the word, and decreases drastically to both sides of this 'Optimal Viewing Position'. While manipulations of lexical factors have only marginal effects on this phenomenon, previous studies have pointed to a relation between the viewing position effect and letter legibility: When letter legibility drops, the viewing position effect becomes more exaggerated. To further (...)
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  28. Sensorimotor approach to (phenomenal) consciousness.J. Kevin O'Regan - 2009 - In Bayne Tim, Cleeremans Axel & Wilken Patrick (eds.), The Oxford Companion to Consciousness. Oxford University Press. pp. 588--593.
     
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  29.  18
    The world as an outside iconic memory – no strong internal metric means no problem of visual stability.J. Kevin O'Regan - 1994 - Behavioral and Brain Sciences 17 (2):270-271.
  30.  22
    Commentary on Mossio and Taraborelli: Is the enactive approach really sensorimotor?☆.Frédéric Pascal & J. Kevin O’Regan - 2008 - Consciousness and Cognition 17 (4):1341-1342.
  31. A New Imagery Debate: Enactive and Sensorimotor Accounts.Lucia Foglia & J. Kevin O’Regan - 2016 - Review of Philosophy and Psychology 7 (1):181-196.
    Traditionally, the “Imagery Debate” has opposed two main camps: depictivism and descriptivism. This debate has essentially focused on the nature of the internal representations thought to be involved in imagery, without addressing at all the question of action. More recently, a third, “embodied” view is moving the debate into a new phase. The embodied approach focuses on the interdependence of perception, cognition and action, and in its more radical line this approach promotes the idea that perception is not a process (...)
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  32. 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 (...)
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  33. Sensorimotor Theory of Consciousness.Jan Degenaar & J. Kevin O’Regan - 2015 - Scholarpedia 10:4952.
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  34.  24
    On words and their letters.Tatjana A. Nazir, J. Kevin O’Regan & Arthur M. Jacobs - 1991 - Bulletin of the Psychonomic Society 29 (2):171-174.
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  35. 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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  36. Comparison of active and purely visual performance in a multiple-string means-end task in infants.Lauriane Rat-Fischer, J. Kevin O’Regan & Jacqueline Fagard - 2014 - Cognition 133 (1):304-316.
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  37.  9
    6-Month-Old Infants’ Sensitivity to Contingency in a Variant of the Mobile Paradigm With Proximal Stimulation Studied at Fine Temporal Resolution in the Laboratory.Sergiu Tcaci Popescu, Alice Dauphin, Judith Vergne & J. Kevin O’Regan - 2021 - Frontiers in Psychology 12.
    Infants’ ability to monitor “sensorimotor contingencies,” i.e., the sensory effects of their own actions, is an important mechanism underlying learning. One method that has been used to investigate this is the “mobile paradigm,” in which a mobile above an infant’s crib is activated by motion of one of the infant’s limbs. Although successfully used in numerous experiments performed in infants’ homes to investigate memory and other types of learning, the paradigm seems less robust for demonstrating sensitivity to sensorimotor contingencies when (...)
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  38.  30
    The emergence of use of a rake-like tool: a longitudinal study in human infants.Jacqueline Fagard, Lauriane Rat-Fischer & J. Kevin O'Regan - 2014 - Frontiers in Psychology 5.
  39.  22
    Why Early Tactile Speech Aids May Have Failed: No Perceptual Integration of Tactile and Auditory Signals.Aurora Rizza, Alexander V. Terekhov, Guglielmo Montone, Marta Olivetti-Belardinelli & J. Kevin O’Regan - 2018 - Frontiers in Psychology 9.
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  40.  92
    Why Red Doesn't Sound Like a Bell: Understanding the Feel of Consciousness.J. K. O'Regan - 2011 - Oxford University Press.
    The catastrophe of the eye -- A new view of seeing -- Applying the new view of seeing -- The illusion of seeing everything -- Some contentious points -- Towards consciousness -- Types of consciousness -- Phenomenal consciousness, raw feel, and why they're hard -- Squeeze a sponge, drive a porsche : a sensorimotor account of feel -- Consciously experiencing a feel -- The sensorimotor approach to color -- Sensory substitution -- The localization of touch -- The phenomenality plot -- (...)
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  41. From a sensorimotor account of perception to an interactive approach to psychopathology.Erik Myin, Kevin O'Regan & Inez Myin-Germeys - 2015 - In Rocco J. Gennaro (ed.), Disturbed Consciousness. MIT Press.
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  42.  12
    How the Sensorimotor Approach to Consciousness Bridges Both Comparative and Absolute Explanatory Gaps: And Some Refinements of the Theory.J. K. O'Regan - 2016 - Journal of Consciousness Studies 23 (5-6):39-65.
    The problem of understanding how physical processes in the brain could give rise to consciousness has been identified with the 'comparative explanatory gap', the problem of explaining why different experiences have the differing qualities they do, and the 'absolute explanatory gap', the problem of explaining why anything can be conscious at all. The main innovation of the sensorimotor theory is that it provides a very appealing way of closing the comparative gap by postulating that the quality of experiences corresponds to (...)
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  43.  9
    Individual Differences and Hemispheric Asymmetries for Language and Spatial Attention.Louise O’Regan & Deborah J. Serrien - 2018 - Frontiers in Human Neuroscience 12.
  44. Induced dependence of colour perception on eye-movements.A. Bompas & J. K. O'Regan - 2004 - In Robert Schwartz (ed.), Perception. Malden Ma: Blackwell. pp. 17-18.
  45.  34
    No evidence for neural filling-in – vision as an illusion – pinning down “enaction”.J. K. O'Regan - 1998 - Behavioral and Brain Sciences 21 (6):767-768.
    (1) The purported evidence for neural filling-in is not evidence for filling-in, but just for long-range dynamic interactions. (2) Vision is perhaps not an “illusion,” but at any rate it is not “pictorial.” (3) The idea of the “world as an outside memory” as well as MacKay's “conditional readiness for action” may help approach an “enactive” theory of vision.
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  46.  25
    Thoughts on Change Blindness.J. K. O'Regan - unknown
    Recent results showing that large changes in a scene are not noticed if they occur at the same time as a global visual disturbance caused by saccades, flicker, "mudsplashes", or film cuts, are generally explained in terms of a theory in which it is assumed that the observer's internal representation of the outside world is very sparse, containing only what the observer is currently processing. The present paper presents some clarifications of the theory, and some new implications and predictions that (...)
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  47. Why Red looks Red rather than Sounding like a Bell.J. O’Regan - 2010 - Humana Mente 4 (14).
  48. A way to naturalize phenomenology.E. Myin & J. K. O'Regan - 2002 - Journal of Consciousness Studies 9 (1):27-46.
  49.  47
    Humour production may enhance observational learning of a new tool-use action in 18-month-old infants.Rana Esseily, Lauriane Rat-Fischer, Eszter Somogyi, Kevin John O'Regan & Jacqueline Fagard - 2016 - Cognition and Emotion 30 (4).
  50.  15
    Five Ways in Which Computational Modeling Can Help Advance Cognitive Science: Lessons From Artificial Grammar Learning.Willem Zuidema, Robert M. French, Raquel G. Alhama, Kevin Ellis, Timothy J. O'Donnell, Tim Sainburg & Timothy Q. Gentner - 2020 - Topics in Cognitive Science 12 (3):925-941.
    Zuidema et al. illustrate how empirical AGL studies can benefit from computational models and techniques. Computational models can help clarifying theories, and thus in delineating research questions, but also in facilitating experimental design, stimulus generation, and data analysis. The authors show, with a series of examples, how computational modeling can be integrated with empirical AGL approaches, and how model selection techniques can indicate the most likely model to explain experimental outcomes.
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