Results for 'Stanislas Dehaene'

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  1.  19
    Spontaneous number discrimination of multi-format auditory stimuli in cotton-top tamarins.Marc D. Hauser, Stanislas Dehaene, Ghislaine Dehaene-Lambertz & Andrea L. Patalano - 2002 - Cognition 86 (2):B23-B32.
  2.  21
    A hierarchy of cortical responses to sequence violations in three-month-old infants.Anahita Basirat, Stanislas Dehaene & Ghislaine Dehaene-Lambertz - 2014 - Cognition 132 (2):137-150.
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  3.  10
    Modeling managment of access to working memory as a self-evalution process for intrinsically motiveted prediction.Wacongne Catherine, Dehaene Stanislas & Changeux Jean-Pierre - 2015 - Frontiers in Human Neuroscience 9.
  4. Consciousness and the brain: deciphering how the brain codes our thoughts.Stanislas Dehaene - 2014 - New York, New York: Viking Press.
    A breathtaking look at the new science that can track consciousness deep in the brain How does our brain generate a conscious thought? And why does so much of our knowledge remain unconscious? Thanks to clever psychological and brain-imaging experiments, scientists are closer to cracking this mystery than ever before. In this lively book, Stanislas Dehaene describes the pioneering work his lab and the labs of other cognitive neuroscientists worldwide have accomplished in defining, testing, and explaining the brain (...)
     
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  5.  38
    Qualitatively different neural mechanisms for conscious and subliminal multiple word integration.Van Gaal Simon, Naccache Lionel, Meuwese Julia, Van Loon Anouk, Leighton Alexandra, Cohen Laurent & Dehaene Stanislas - 2015 - Frontiers in Human Neuroscience 9.
  6. Towards a cognitive neuroscience of consciousness: Basic evidence and a workspace framework.Stanislas Dehaene & Lionel Naccache - 2001 - Cognition 79 (1):1-37.
    This introductory chapter attempts to clarify the philosophical, empirical, and theoretical bases on which a cognitive neuroscience approach to consciousness can be founded. We isolate three major empirical observations that any theory of consciousness should incorporate, namely (1) a considerable amount of processing is possible without consciousness, (2) attention is a prerequisite of consciousness, and (3) consciousness is required for some specific cognitive tasks, including those that require durable information maintenance, novel combinations of operations, or the spontaneous generation of intentional (...)
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  7. Conscious, preconscious, and subliminal processing: A testable taxonomy.Stanislas Dehaene, Jean-Pierre Changeux, Lionel Naccache, Jérôme Sackur & Claire Sergent - 2006 - Trends in Cognitive Sciences 10 (5):204-211.
    Amidst the many brain events evoked by a visual stimulus, which are specifically associated with conscious perception, and which merely reflect non-conscious processing? Several recent neuroimaging studies have contrasted conscious and non-conscious visual processing, but their results appear inconsistent. Some support a correlation of conscious perception with early occipital events, others with late parieto-frontal activity. Here we attempt to make sense of those dissenting results. On the basis of a minimal neuro-computational model, the global neuronal workspace hypothesis, we propose a (...)
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  8. Core systems of number.Stanislas Dehaene, Elizabeth Spelke & Lisa Feigenson - 2004 - Trends in Cognitive Sciences 8 (7):307-314.
  9.  77
    The mental representation of parity and number magnitude.Stanislas Dehaene, Serge Bossini & Pascal Giraux - 1993 - Journal of Experimental Psychology: General 122 (3):371.
  10. The Number Sense: How the Mind Creates Mathematics.Stanislas Dehaene - 1999 - British Journal of Educational Studies 47 (2):201-203.
  11. Cerebral mechanisms of word masking and unconscious repetition priming.Stanislas Dehaene, Lionel Naccache, L. Jonathan Cohen, Denis Le Bihan, Jean-Francois Mangin, Jean-Baptiste Poline & Denis Rivière - 2001 - Nature Neuroscience 4 (7):752-758.
  12. A neuronal model of a global workspace in effortful cognitive tasks.Stanislas Dehaene, Michel Kerszberg & Jean-Pierre Changeux - 2001 - Pnas 95 (24):14529-14534.
  13.  59
    Varieties of numerical abilities.Stanislas Dehaene - 1992 - Cognition 44 (1-2):1-42.
  14. Core Knowledge of Geometry in an Amazonian Indigene Group.Stanislas Dehaene, Véronique Izard, Pierre Pica & Elizabeth Spelke - 2006 - Science 311 (5759)::381-4.
    Does geometry constitues a core set of intuitions present in all humans, regarless of their language or schooling ? We used two non verbal tests to probe the conceptual primitives of geometry in the Munduruku, an isolated Amazonian indigene group. Our results provide evidence for geometrical intuitions in the absence of schooling, experience with graphic symbols or maps, or a rich language of geometrical terms.
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  15.  39
    Space, Time and Number in the Brain: Searching for the Foundations of Mathematical Thought.Stanislas Dehaene & Elizabeth Brannon (eds.) - 2011 - Oxford University Press.
    A uniquely integrative work, this volume provides a much needed compilation of primary source material to researchers from basic neuroscience, psychology, developmental science, neuroimaging, neuropsychology and theoretical biology. * The ...
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  16. Neural Mechanisms for Access to Consciousness.Stanislas Dehaene & Jean-Pierre Changeux - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press. pp. 1145-1157.
  17.  93
    Is consciousness a gradual phenomenon? Evidence for an all-or-none bifurcation during the attentional blink.Claire Sergent & Stanislas Dehaene - 2004 - Psychological Science 15 (11):720-728.
  18.  82
    Timing of the brain events underlying access to consciousness during the attentional blink.Claire Sergent, Sylvain Baillet & Stanislas Dehaene - 2005 - Nature Neuroscience 8 (10):1391-1400.
  19.  87
    Unconscious semantic priming extends to novel unseen stimuli.Lionel Naccache & Stanislas Dehaene - 2001 - Cognition 80 (3):215-229.
  20.  42
    Core knowledge of geometry can develop independently of visual experience.Benedetta Heimler, Tomer Behor, Stanislas Dehaene, Véronique Izard & Amir Amedi - 2021 - Cognition 212 (C):104716.
    Geometrical intuitions spontaneously drive visuo-spatial reasoning in human adults, children and animals. Is their emergence intrinsically linked to visual experience, or does it reflect a core property of cognition shared across sensory modalities? To address this question, we tested the sensitivity of blind-from-birth adults to geometrical-invariants using a haptic deviant-figure detection task. Blind participants spontaneously used many geometric concepts such as parallelism, right angles and geometrical shapes to detect intruders in haptic displays, but experienced difficulties with symmetry and complex spatial (...)
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  21.  42
    The cognitive architecture for chaining of two mental operations.Jérôme Sackur & Stanislas Dehaene - 2009 - Cognition 111 (2):187-211.
  22. Précis of the number sense.Stanislas Dehaene - 2001 - Mind and Language 16 (1):16–36.
    ‘Number sense’ is a short‐hand for our ability to quickly understand, approximate, and manipulate numerical quantities. My hypothesis is that number sense rests on cerebral circuits that have evolved specifically for the purpose of representing basic arithmetic knowledge. Four lines of evidence suggesting that number sense constitutes a domain‐specific, biologically‐determined ability are reviewed: the presence of evolutionary precursors of arithmetic in animals; the early emergence of arithmetic competence in infants independently of other abilities, including language; the existence of a homology (...)
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  23.  29
    Early dissociation between neural signatures of endogenous spatial attention and perceptual awareness during visual masking.Valentin Wyart, Stanislas Dehaene & Catherine Tallon-Baudry - 2012 - Frontiers in Human Neuroscience 6.
  24. Levels of processing during non-conscious perception: A critical review of visual masking.Sid Kouider & Stanislas Dehaene - 2007 - Philosophical Transactions of the Royal Society of London, B 362 (1481):857-875.
  25.  83
    Eye gaze reveals a fast, parallel extraction of the syntax of arithmetic formulas.Elisa Schneider, Masaki Maruyama, Stanislas Dehaene & Mariano Sigman - 2012 - Cognition 125 (3):475-490.
  26.  42
    Unconscious task set priming with phonological and semantic tasks.Sébastien Weibel, Anne Giersch, Stanislas Dehaene & Caroline Huron - 2013 - Consciousness and Cognition 22 (2):517-527.
    Whether unconscious stimuli can modulate the preparation of a cognitive task is still controversial. Using a backward masking paradigm, we investigated whether the modulation could be observed even if the prime was made unconscious in 100% of the trials. In two behavioral experiments, subjects were instructed to initiate a phonological or semantic task on an upcoming word, following an explicit instruction and an unconscious prime. When the SOA between prime and instruction was sufficiently long , primes congruent with the task (...)
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  27.  26
    The priming method: Imaging unconscious repetition priming reveals an abstract representation of number in the parietal lobes.Lionel Naccache & Stanislas Dehaene - 2001 - Cerebral Cortex 11 (10):966-974.
  28.  96
    Effortless control: Executive attention and conscious feeling of mental effort are dissociable.Lionel Naccache, Stanislas Dehaene, L. Jonathan Cohen, Marie-Odile Habert, Elodie Guichart-Gomez, Damien Galanaud & Jean-Claude Willer - 2005 - Neuropsychologia 43 (9):1318-1328.
  29.  13
    Author’s Response: Is Number Sense a Patchwork?Stanislas Dehaene - 2002 - Mind and Language 16 (1):89-100.
    ‘Number sense’ is a short‐hand for our ability to quickly understand, approximate, and manipulate numerical quantities. My hypothesis is that number sense rests on cerebral circuits that have evolved specifically for the purpose of representing basic arithmetic knowledge. Four lines of evidence suggesting that number sense constitutes a domain‐specific, biologically‐determined ability are reviewed: the presence of evolutionary precursors of arithmetic in animals; the early emergence of arithmetic competence in infants independently of other abilities, including language; the existence of a homology (...)
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  30. Levels of processing during non-conscious perception: a critical review of visual masking.Sid Kouider & Dehaene & Stanislas - 2008 - In Jon Driver, Patrick Haggard & Tim Shallice (eds.), Mental Processes in the Human Brain. Oxford University Press.
     
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  31. Log or linear? Distinct intuitions of the number scale in Western and Amazonian indigene cultures.Pierre Pica, Stanislas Dehaene, Elizabeth Spelke & Véronique Izard - 2008 - Science 320 (5880):1217-1220.
    The mapping of numbers onto space is fundamental to measurement and to mathematics. Is this mapping a cultural invention or a universal intuition shared by all humans regardless of culture and education? We probed number-space mappings in the Mundurucu, an Amazonian indigene group with a reduced numerical lexicon and little or no formal education. At all ages, the Mundurucu mapped symbolic and nonsymbolic numbers onto a logarithmic scale, whereas Western adults used linear mapping with small or symbolic numbers and logarithmic (...)
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  32.  39
    Reportability and illusions of phenomenality in the light of the global neuronal workspace model.Lionel Naccache & Stanislas Dehaene - 2007 - Behavioral and Brain Sciences 30 (5-6):518-520.
    Can we ever experimentally disentangle phenomenal consciousness from the cognitive accessibility inherent to conscious reports? In this commentary, we suggest that (1) Block's notion of phenomenal consciousness remains intractably entangled with the need to obtain subjective reports about it; and (2) many experimental paradigms suggest that the intuitive notion of a rich but non-reportable phenomenal world is, to a large extent illusory – in a sense that requires clarification.
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  33.  62
    Calibrating the mental number line.Véronique Izard & Stanislas Dehaene - 2008 - Cognition 106 (3):1221-1247.
    Human adults are thought to possess two dissociable systems to represent numbers: an approximate quantity system akin to a mental number line, and a verbal system capable of representing numbers exactly. Here, we study the interface between these two systems using an estimation task. Observers were asked to estimate the approximate numerosity of dot arrays. We show that, in the absence of calibration, estimates are largely inaccurate: responses increase monotonically with numerosity, but underestimate the actual numerosity. However, insertion of a (...)
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  34.  29
    Subjective report of eye fixations during serial search.Sébastien Marti, Laurie Bayet & Stanislas Dehaene - 2015 - Consciousness and Cognition 33:1-15.
  35. Non-symbolic halving in an amazonian indigene group.Koleen McCrink, Elizabeth Spelke, Stanislas Dehaene & Pierre Pica - 2013 - Developmental Science 16 (3):451-462.
    Much research supports the existence of an Approximate Number System (ANS) that is recruited by infants, children, adults, and non-human animals to generate coarse, non-symbolic representations of number. This system supports simple arithmetic operations such as addition, subtraction, and ordering of amounts. The current study tests whether an intuition of a more complex calculation, division, exists in an indigene group in the Amazon, the Mundurucu, whose language includes no words for large numbers. Mundurucu children were presented with a video event (...)
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  36.  34
    The Cognitive Neuroscience of Consciousness.Stanislas Dehaene (ed.) - 2001 - MIT Press.
    This book investigates the philosophical, empirical, and theoretical bases on which a cognitive neuroscience of consciousness can be founded.
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  37.  25
    Reading in the Brain Revised and Extended: Response to Comments.Stanislas Dehaene - 2014 - Mind and Language 29 (3):320-335.
    Reading in the Brain (Les neurones de la lecture, 2007) examined the origins of human reading abilities in the light of contemporary cognitive neuroscience. It argued that reading acquisition, in all cultures, recycles preexisting cortical circuits dedicated to invariant visual recognition, and that the organization of these circuits imposes strong constraints on the invention and cultural evolution of writing systems. In this article, seven years later, I briefly review new experimental evidence, particularly from brain imaging studies of illiterate adults, which (...)
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  38.  31
    Why attention and consciousness are different: top-down influences on subliminal processing.Stanislas Dehaene, Jean-Pierre Changeux, Lionel Naccache, Jérôme Sackur & Claire Sergent - 2006 - Trends in Cognitive Sciences 10 (5):204-211.
  39.  37
    Neuronal models of cognitive functions.Jean-Pierre Changeux & Stanislas Dehaene - 1989 - Cognition 33 (1-2):63-109.
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  40.  27
    In defense of learning by selection: Neurobiological and behavioral evidence revisited.G. Dehaene-Lambertz & Stanislas Dehaene - 1997 - Behavioral and Brain Sciences 20 (4):560-561.
    Quartz & Sejnowski's constructivist manifesto promotes a return to an extreme form of empiricism. In defense of learning by selection, we argue that at the neurobiological level all the data presented by Q&S in support of their constructive model are in fact compatible with a model comprising multiple overlapping stages of synaptic overproduction and selection. We briefly review developmental studies at the behavioral level in humans providing evidence in favor of a selectionist view of development.
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  41. Ongoing spontaneous activity controls access to consciousness: A neuronal model for inattentional blindness.Jean-Pierre Changeux & Stanislas Dehaene - 2005 - PLoS Biology 3 (5):e141.
    1 INSERM-CEA Unit 562, Cognitive Neuroimaging, Service Hospitalier Fre´de´ric Joliot, Orsay, France, 2 CNRS URA2182 Re´cepteurs and Cognition, Institut Pasteur, Paris, France.
     
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  42. Et al.Stanislas Dehaene - unknown
    The following resources related to this article are available online at www.sciencemag.org (this information is current as of August 31, 2009 ).
     
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  43. International Journal of Cognitive Science.Jacques Mehler, Stanislas Dehaene, Steven Pinker, Marc Hauser, Michele Miozzo, Brian Scholl, Nuria Sebastian, G. T. M. Altmann, R. N. Aslin & T. K. Au - 1997 - Cognition 62:245-290.
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  44.  55
    Author's response: Is number sense a patchwork?Stanislas Dehaene - 2001 - Mind and Language 16 (1):89–100.
    ‘Number sense’ is a short‐hand for our ability to quickly understand, approximate, and manipulate numerical quantities. My hypothesis is that number sense rests on cerebral circuits that have evolved specifically for the purpose of representing basic arithmetic knowledge. Four lines of evidence suggesting that number sense constitutes a domain‐specific, biologically‐determined ability are reviewed: the presence of evolutionary precursors of arithmetic in animals; the early emergence of arithmetic competence in infants independently of other abilities, including language; the existence of a homology (...)
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  45.  66
    The case for a notation-independent representation of number.Stanislas Dehaene, Roi Cohen Kadosh & Vincent Walsh - 2009 - Behavioral and Brain Sciences 32 (3-4):333.
    Cohen Kadosh & Walsh (CK&W) neglect the solid empirical evidence for a convergence of notation-specific representations onto a shared representation of numerical magnitude. Subliminal priming reveals cross-notation and cross-modality effects, contrary to CK&W's prediction that automatic activation is modality and notation-specific. Notation effects may, however, emerge in the precision, speed, automaticity, and means by which the central magnitude representation is accessed.
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  46.  5
    Author’s Response: Is Number Sense a Patchwork?Stanislas Dehaene - 2002 - Mind and Language 16 (1):89-100.
    ‘Number sense’ is a short‐hand for our ability to quickly understand, approximate, and manipulate numerical quantities. My hypothesis is that number sense rests on cerebral circuits that have evolved specifically for the purpose of representing basic arithmetic knowledge. Four lines of evidence suggesting that number sense constitutes a domain‐specific, biologically‐determined ability are reviewed: the presence of evolutionary precursors of arithmetic in animals; the early emergence of arithmetic competence in infants independently of other abilities, including language; the existence of a homology (...)
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  47. Quels sont les liens entre arithmétique et langage ? Une étude en Amazonie.Stanislas Dehaene, Véronique Izard, Cathy Lemer & Pierre Pica - 2007 - In Jean Bricmont & Julie Franck (eds.), Cahier Chomsky. L'Herne.
  48.  20
    Apprentissage et sciences cognitives.Stanislas Dehaene, Paul Audi & Cyril Bedel - 2015 - Cités 63 (3):81-98.
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  49. Examining Knowledge of Geometry : Response to Wulf and Delson.Stanislas Dehaene, Véronique Izard, Pierre Pica & Elizabeth Spelke - 2006 - Science 312 (5778):1309-1310.
    La connaissances noyau de la géométrie euclidienne est liée au raisonnement déductif et non à la reconnaissance de motifs perceptuels.
     
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  50.  36
    Imaging conscious and subliminal word processing.Stanislas Dehaene - 2005 - In Ulrich Mayr, Edward Awh & Steven W. Keele (eds.), Developing Individuality in the Human Brain: A Tribute to Michael I. Posner. American Psychological Association. pp. 65-86.
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