Distributed and Overlapping Cerebral Representations of Number, Size, and Luminance during Comparative Judgments
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Philippe Pinel | Stanislas Dehaene | Manuela Piazza | Denis Le Bihan | S. Dehaene | P. Pinel | D. Bihan | M. Piazza
[1] Vincent Walsh. A theory of magnitude: common cortical metrics of time, space and quantity , 2003, Trends in Cognitive Sciences.
[2] S. Dehaene,et al. THREE PARIETAL CIRCUITS FOR NUMBER PROCESSING , 2003, Cognitive neuropsychology.
[3] Rafael Malach,et al. Large-Scale Mirror-Symmetry Organization of Human Occipito-Temporal Object Areas , 2003, Neuron.
[4] A. Kleinschmidt,et al. A Supramodal Number Representation in Human Intraparietal Cortex , 2003, Neuron.
[5] P. Skudlarski,et al. Quantity determination and the distance effect with letters, numbers, and shapes: a functional MR imaging study of number processing. , 2003, AJNR. American journal of neuroradiology.
[6] G. Orban,et al. Parietal Representation of Symbolic and Nonsymbolic Magnitude , 2003, Journal of Cognitive Neuroscience.
[7] W. Fias,et al. Semantic Influences on Feature-Based Attention Due to Overlap of Neural Circuits , 2002, Cortex.
[8] David J. Freedman,et al. Representation of the Quantity of Visual Items in the Primate Prefrontal Cortex , 2002, Science.
[9] K. Priftis,et al. Brain damage: Neglect disrupts the mental number line , 2002, Nature.
[10] J. Tanji,et al. Numerical representation for action in the parietal cortex of the monkey , 2002, Nature.
[11] S. Dehaene,et al. Topographical Layout of Hand, Eye, Calculation, and Language-Related Areas in the Human Parietal Lobe , 2002, Neuron.
[12] W Fias,et al. Irrelevant digits affect feature-based attention depending on the overlap of neural circuits. , 2001, Brain research. Cognitive brain research.
[13] D. LeBihan,et al. Modulation of Parietal Activation by Semantic Distance in a Number Comparison Task , 2001, NeuroImage.
[14] S. Dehaene,et al. The priming method: imaging unconscious repetition priming reveals an abstract representation of number in the parietal lobes. , 2001, Cerebral cortex.
[15] A. Ishai,et al. Distributed and Overlapping Representations of Faces and Objects in Ventral Temporal Cortex , 2001, Science.
[16] M. Thioux,et al. Category-specific representation and processing of numbers and animal names across semantic tasks: A PET study , 2001, NeuroImage.
[17] A. Kleinschmidt,et al. Dissociating neural correlates of cognitive components in mental calculation. , 2001, Cerebral cortex.
[18] H. Heinze,et al. Cortical Activations during the Mental Rotation of Different Visual Objects , 2001, NeuroImage.
[19] G. Lohmann,et al. Color-Word Matching Stroop Task: Separating Interference and Response Conflict , 2001, NeuroImage.
[20] S. Dehaene,et al. Understanding dissociations in dyscalculia: a brain imaging study of the impact of number size on the cerebral networks for exact and approximate calculation. , 2000, Brain : a journal of neurology.
[21] Kyoung-Min Lee. Cortical areas differentially involved in multiplication and subtraction: A functional magnetic resonance imaging study and correlation with a case of selective acalculia , 2000, Annals of neurology.
[22] G. Glover,et al. Dissociating Prefrontal and Parietal Cortex Activation during Arithmetic Processing , 2000, NeuroImage.
[23] M. Thioux,et al. Neuroanatomical Substrates of Arabic Number Processing, Numerical Comparison, and Simple Addition: A PET Study , 2000, Journal of Cognitive Neuroscience.
[24] R. Goebel,et al. Matching two imagined clocks: the functional anatomy of spatial analysis in the absence of visual stimulation. , 2000, Cerebral cortex.
[25] K. Zilles,et al. Line bisection judgments implicate right parietal cortex and cerebellum as assessed by fMRI , 2000, Neurology.
[26] I. M. Harris,et al. Selective right parietal lobe activation during mental rotation: a parametric PET study. , 2000, Brain : a journal of neurology.
[27] S. Dehaene,et al. Differential Contributions of the Left and Right Inferior Parietal Lobules to Number Processing , 1999, Journal of Cognitive Neuroscience.
[28] D. Guehl,et al. A functional magnetic resonance imaging study of mental subtraction in human subjects , 1999, Neuroscience Letters.
[29] M. Jeannerod,et al. Human Brain Activity Related to the Perception of Spatial Features of Objects , 1999, NeuroImage.
[30] N. Kanwisher,et al. The Generality of Parietal Involvement in Visual Attention , 1999, Neuron.
[31] S. Dehaene,et al. Event-related fMRI analysis of the cerebral circuit for number comparison. , 1999, Neuroreport.
[32] S. Zeki,et al. The position and topography of the human colour centre as revealed by functional magnetic resonance imaging. , 1997, Brain : a journal of neurology.
[33] Stanislas Dehaene,et al. The Organization of Brain Activations in Number Comparison: Event-Related Potentials and the Additive-Factors Method , 1996, Journal of Cognitive Neuroscience.
[34] S. Dehaene,et al. The mental representation of parity and number magnitude. , 1993 .
[35] M. Corbetta,et al. Selective and divided attention during visual discriminations of shape, color, and speed: functional anatomy by positron emission tomography , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[36] S. Link. Modeling imageless thought: The relative judgment theory of numerical comparisons ☆ , 1990 .
[37] A. Henik,et al. Is three greater than five: The relation between physical and semantic size in comparison tasks , 1982, Memory & cognition.
[38] W. Banks,et al. Semantic and perceptual processes in symbolic comparisons. , 1977, Journal of experimental psychology. Human perception and performance.
[39] A. Paivio. Perceptual comparisons through the mind’s eye , 1975, Memory & cognition.
[40] R. Moyer. Comparing objects in memory: Evidence suggesting an internal psychophysics , 1973 .
[41] ROBERT S. MOYER,et al. Time required for Judgements of Numerical Inequality , 1967, Nature.
[42] Donald McEwen Johnson,et al. Confidence and speed in the two-category judgment , 1939 .