Evidence for Highly Selective Neuronal Tuning to Whole Words in the “Visual Word Form Area”
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[1] Tilo Kircher,et al. Lion – tiger – stripes: Neural correlates of indirect semantic priming across processing modalities , 2009, NeuroImage.
[2] J D E Gabrieli,et al. Age-associated reduction of asymmetry in prefrontal function and preservation of conceptual repetition priming , 2009, NeuroImage.
[3] S. Dopkins,et al. Level of Discrimination for Recognition Judgments Reduced following the Recognition of Semantically Related Words. , 2007, Journal of memory and language.
[4] Mariano Sigman,et al. Hierarchical Coding of Letter Strings in the Ventral Stream: Dissecting the Inner Organization of the Visual Word-Form System , 2007, Neuron.
[5] N. Kanwisher,et al. Visual word processing and experiential origins of functional selectivity in human extrastriate cortex , 2007, Proceedings of the National Academy of Sciences.
[6] Guillén Fernández,et al. Functional dissociations in top–down control dependent neural repetition priming , 2007, NeuroImage.
[7] L. Tyler,et al. Repetition suppression and semantic enhancement: An investigation of the neural correlates of priming , 2006, Neuropsychologia.
[8] Jeffrey R. Binder,et al. Tuning of the human left fusiform gyrus to sublexical orthographic structure , 2006, NeuroImage.
[9] Paul M Matthews,et al. The Role of the Posterior Fusiform Gyrus in Reading , 2006, Journal of Cognitive Neuroscience.
[10] S. Dehaene,et al. Direct Intracranial, fMRI, and Lesion Evidence for the Causal Role of Left Inferotemporal Cortex in Reading , 2006, Neuron.
[11] M. Riesenhuber,et al. Evaluation of a Shape-Based Model of Human Face Discrimination Using fMRI and Behavioral Techniques , 2006, Neuron.
[12] K. Grill-Spector,et al. Repetition and the brain: neural models of stimulus-specific effects , 2006, Trends in Cognitive Sciences.
[13] Jeffrey R. Binder,et al. Some neurophysiological constraints on models of word naming , 2005, NeuroImage.
[14] Scott T. Grafton,et al. Reductions in neural activity underlie behavioral components of repetition priming , 2005, Nature Neuroscience.
[15] M. Sigman,et al. Opinion TRENDS in Cognitive Sciences Vol.9 No.7 July 2005 The neural code for written words: a proposal , 2022 .
[16] Christian J Fiebach,et al. Neuronal Mechanisms of Repetition Priming in Occipitotemporal Cortex: Spatiotemporal Evidence from Functional Magnetic Resonance Imaging and Electroencephalography , 2005, The Journal of Neuroscience.
[17] C. Davis. N-Watch: A program for deriving neighborhood size and other psycholinguistic statistics , 2005, Behavior research methods.
[18] Max Coltheart,et al. Are There Lexicons? , 2004, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[19] J B Poline,et al. Letter Binding and Invariant Recognition of Masked Words , 2004, Psychological science.
[20] Martin Kronbichler,et al. The visual word form area and the frequency with which words are encountered: evidence from a parametric fMRI study , 2004, NeuroImage.
[21] Katie L. McMahon,et al. Brain activity during automatic semantic priming revealed by event-related functional magnetic resonance imaging , 2003, NeuroImage.
[22] A. Mechelli,et al. Neuroimaging Studies of Word and Pseudoword Reading: Consistencies, Inconsistencies, and Limitations , 2003, Journal of Cognitive Neuroscience.
[23] M. Coltheart,et al. 358,534 nonwords: The ARC Nonword Database , 2002, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[24] Geoffrey M. Boynton,et al. Efficient Design of Event-Related fMRI Experiments Using M-Sequences , 2002, NeuroImage.
[25] S. Dehaene,et al. Language-specific tuning of visual cortex? Functional properties of the Visual Word Form Area. , 2002, Brain : a journal of neurology.
[26] T. Poggio,et al. Neural mechanisms of object recognition , 2002, Current Opinion in Neurobiology.
[27] G. Orban,et al. Practising orientation identification improves orientation coding in V1 neurons , 2001, Nature.
[28] J B Poline,et al. Cerebral mechanisms of word masking and unconscious repetition priming , 2001, Nature Neuroscience.
[29] N. Kanwisher,et al. Visual attention: Insights from brain imaging , 2000, Nature Reviews Neuroscience.
[30] G. Orban,et al. Attention to Speed of Motion, Speed Discrimination, and Task Difficulty: An fMRI Study , 2000, NeuroImage.
[31] T. Shallice,et al. Neuroimaging evidence for dissociable forms of repetition priming. , 2000, Science.
[32] Leslie G. Ungerleider,et al. Complementary neural mechanisms for tracking items in human working memory. , 2000, Science.
[33] D. Perani,et al. A cultural effect on brain function , 2000, Nature Neuroscience.
[34] S. Petersen,et al. Effects of Lexicality, Frequency, and Spelling-to-Sound Consistency on the Functional Anatomy of Reading , 1999, Neuron.
[35] M. D’Esposito,et al. The Inferential Impact of Global Signal Covariates in Functional Neuroimaging Analyses , 1998, NeuroImage.
[36] N. Kanwisher,et al. Covert visual attention modulates face-specific activity in the human fusiform gyrus: fMRI study. , 1998, Journal of neurophysiology.
[37] M. Mintun,et al. Regional cerebral blood flow during word and nonword reading , 1997, Human brain mapping.
[38] Helen Moss,et al. Birkbeck Word Association Norms , 1996 .
[39] Leslie G. Ungerleider,et al. Effect of task difficulty on cerebral blood flow during perceptual matching of faces , 1996, Human brain mapping.
[40] N. Logothetis,et al. Shape representation in the inferior temporal cortex of monkeys , 1995, Current Biology.
[41] Leslie G. Ungerleider,et al. ‘What’ and ‘where’ in the human brain , 1994, Current Opinion in Neurobiology.