The Influence of verbalization on the pattern of cortical activation during mental arithmetic
暂无分享,去创建一个
Christa Neuper | Karl Koschutnig | Gernot Reishofer | Franz Ebner | Anja Ischebeck | Sabrina Zarnhofer | Verena Braunstein
[1] Phillip J. Moore,et al. Verbal and visual learning styles , 1988 .
[2] E. Spelke,et al. Language and Conceptual Development series Core systems of number , 2004 .
[3] H. C. Li,et al. White matter integrity in right hemisphere predicts pitch-related grammar learning , 2011, NeuroImage.
[4] S. Dehaene,et al. Differential Contributions of the Left and Right Inferior Parietal Lobules to Number Processing , 1999, Journal of Cognitive Neuroscience.
[5] Margot J. Taylor,et al. Is 2+2=4? Meta-analyses of brain areas needed for numbers and calculations , 2011, NeuroImage.
[6] A. Kleinschmidt,et al. A Supramodal Number Representation in Human Intraparietal Cortex , 2003, Neuron.
[7] Sharon L Thompson-Schill,et al. The Neural Correlates of Visual and Verbal Cognitive Styles , 2009, The Journal of Neuroscience.
[8] David G. Norris,et al. Functional connectivity between brain regions involved in learning words of a new language , 2010, Brain and Language.
[9] D. Small,et al. Relation of reward from food intake and anticipated food intake to obesity: a functional magnetic resonance imaging study. , 2008, Journal of abnormal psychology.
[10] Christina B. Young,et al. Functional dissociations between four basic arithmetic operations in the human posterior parietal cortex: A cytoarchitectonic mapping study , 2011, Neuropsychologia.
[11] Jamie I. D. Campbell. Architectures for numerical cognition , 1994, Cognition.
[12] S. Dehaene,et al. THREE PARIETAL CIRCUITS FOR NUMBER PROCESSING , 2003, Cognitive neuropsychology.
[13] Peter Thier,et al. Dissociable Roles of the Superior Temporal Sulcus and the Intraparietal Sulcus in Joint Attention: A Functional Magnetic Resonance Imaging Study , 2008, Journal of Cognitive Neuroscience.
[14] M. Hegarty,et al. Types of visual–spatial representations and mathematical problem solving. , 1999 .
[15] Eric Leuthardt,et al. Spatiotemporal dynamics of electrocorticographic high gamma activity during overt and covert word repetition , 2011, NeuroImage.
[16] T. Lehtimäki,et al. Behavioral and Brain Functions , 2008 .
[17] I. Deary,et al. Are intelligence and personality related to verbal-imagery and wholistic-analytic cognitive styles? , 2005 .
[18] R. Riding,et al. Towards a Categorisation of Cognitive Styles and Learning Styles , 1997 .
[19] Jason R. Tregellas,et al. Implicit phonological priming during visual word recognition , 2011, NeuroImage.
[20] C. Eriksen,et al. Implicit speech: Mechanism in perceptual encoding? , 1970 .
[21] M. McCloskey. Cognitive mechanisms in numerical processing: Evidence from acquired dyscalculia , 1992, Cognition.
[22] Elizabeth R. Peterson,et al. Researching the psychology of cognitive style and learning style: Is there really a future? , 2009 .
[23] D. LeBihan,et al. Modulation of Parietal Activation by Semantic Distance in a Number Comparison Task , 2001, NeuroImage.
[24] R. Ingham,et al. Stuttered and fluent speech production: An ALE meta‐analysis of functional neuroimaging studies , 2005, Human brain mapping.
[25] Juha Silvanto,et al. Double Dissociation of Format-Dependent and Number-Specific Neurons in Human Parietal Cortex , 2010, Cerebral cortex.
[26] P. Morosan,et al. Human Primary Auditory Cortex: Cytoarchitectonic Subdivisions and Mapping into a Spatial Reference System , 2001, NeuroImage.
[27] Stephen E. Fienberg,et al. Discrete Multivariate Analysis: Theory and Practice , 1976 .
[28] Stanislas Dehaene,et al. Dynamic representations underlying symbolic and nonsymbolic calculation: Evidence from the operational momentum effect , 2009, Attention, perception & psychophysics.
[29] Wim Fias,et al. The representation of multiplication facts: developmental changes in the problem size, five, and tie effects. , 2006, Journal of experimental child psychology.
[30] Marc Brysbaert,et al. About the influence of the presentation format on arithmetical-fact retrieval processes , 1997, Cognition.
[31] Valéria Csépe,et al. Access to numerical information is dependent on the modality of stimulus presentation in mental addition: a combined ERP and behavioral study. , 2004, Brain research. Cognitive brain research.
[32] V Menon,et al. Functional heterogeneity of inferior parietal cortex during mathematical cognition assessed with cytoarchitectonic probability maps. , 2009, Cerebral cortex.
[33] Christa Neuper,et al. To retrieve or to calculate? Left angular gyrus mediates the retrieval of arithmetic facts during problem solving , 2009, Neuropsychologia.
[34] A. Friederici,et al. Brain activity varies with modulation of dynamic pitch variance in sentence melody , 2004, Brain and Language.
[35] R. Riding,et al. Cognitive Styles—an overview and integration , 1991 .
[36] Jerry Lee Gray,et al. THE RELATIONSHIP BETWEEN COGNITIVE STYLE AND INTELLIGENCE , 1969 .
[37] R. Cohen Kadosh,et al. Numerical representation in the parietal lobes: abstract or not abstract? , 2009, The Behavioral and brain sciences.
[38] Stuart T. Klapp,et al. Syllable-dependent pronunciation latencies in number naming: A replication. , 1974 .
[39] Kai Alter,et al. Processing prosodic boundaries in natural and hummed speech: an FMRI study. , 2008, Cerebral cortex.
[40] R. Riding. On the Nature of Cognitive Style , 1997 .
[41] A. Nieder. Counting on neurons: the neurobiology of numerical competence , 2005, Nature Reviews Neuroscience.
[42] A. Engel,et al. Neuronal Synchronization along the Dorsal Visual Pathway Reflects the Focus of Spatial Attention , 2008, Neuron.
[43] R. Riding,et al. Cognitive Style and Pupil Learning Preferences , 1996 .
[44] Kyoung-Min Lee,et al. Arithmetic operation and working memory: differential suppression in dual tasks , 2002, Cognition.
[45] Joseph T. Devlin,et al. Supramarginal gyrus involvement in visual word recognition , 2009, Cortex.
[46] G. Fink,et al. REVIEW: The functional organization of the intraparietal sulcus in humans and monkeys , 2005, Journal of anatomy.
[47] 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.
[48] S. Dehaene. Varieties of numerical abilities , 1992, Cognition.
[49] J. Jay Todd,et al. Capacity limit of visual short-term memory in human posterior parietal cortex , 2004, Nature.
[50] Maria Kozhevnikov,et al. The new object‐spatial‐verbal cognitive style model: Theory and measurement , 2009 .
[51] N. Tzourio-Mazoyer,et al. Automated Anatomical Labeling of Activations in SPM Using a Macroscopic Anatomical Parcellation of the MNI MRI Single-Subject Brain , 2002, NeuroImage.
[52] D. V. von Cramon,et al. FMRI reveals brain regions mediating slow prosodic modulations in spoken sentences , 2002, Human brain mapping.
[53] D. Guehl,et al. A functional magnetic resonance imaging study of mental subtraction in human subjects , 1999, Neuroscience Letters.
[54] A. Friederici,et al. Investigating emotion with music: An fMRI study , 2006, Human brain mapping.
[55] P. Holland,et al. Discrete Multivariate Analysis. , 1976 .
[56] Colin Humphries,et al. Time course of semantic processes during sentence comprehension: An fMRI study , 2007, NeuroImage.
[57] P Hagoort,et al. A neural correlate of syntactic encoding during speech production , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[58] R. Marois,et al. "What" and "where" in the intraparietal sulcus: an FMRI study of object identity and location in visual short-term memory. , 2010, Cerebral cortex.
[59] Richard J. Riding,et al. Cognitive Styles and Preferred Learning Mode, Reading Attainment and Cognitive Ability in 11‐year‐old Children , 1991 .
[60] D. Zald,et al. Relation of obesity to consummatory and anticipatory food reward , 2009, Physiology & Behavior.