Neuroreport · 2005 · 330 citations · 21 references
NeuropsychologyBrain FunctionDevelopmental Cognitive NeuroscienceSymbolic Number ProcessingNeurolinguisticsAffective NeuroscienceCognitionBrain OrganizationSocial SciencesPsychologyCognitive DevelopmentNumerical CompetenceCognitive NeuroscienceCognitive ScienceBrain StructureSymbolic DistanceBrain AreasNumeracyNeuroscience
Using functional magnetic resonance imaging, we examined developmental differences in the functional neuroanatomy underlying symbolic number processing. Twelve adults and 12 children had to judge the relative magnitude of two single-digit Arabic numerals. We investigated which brain areas were significantly (P<0.005, uncorrected) more activated during processing of number pairs with small relative to large numerical distances. In the adult group, symbolic distance modulated bilateral parietal regions. In contrast, the group of children primarily engaged frontal regions. We conclude that the functional neuroanatomy underlying symbolic numerical magnitude processing undergoes an ontogenetic shift towards greater parietal engagement. This change may reflect maturation of underlying representations and increasing automaticity in mapping between numerical symbols and the magnitudes they represent.
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Co-planar stereotaxic atlas of the human brain
Lauri A. Laitinen · Clinical Neurology and Neurosurgery · 1989 · 7.6K citations
THREE PARIETAL CIRCUITS FOR NUMBER PROCESSING
Stanislas Dehaene, Manuela Piazza, Philippe Pinel et al. · Cognitive Neuropsychology · 2003 · 2.5K citations
Linear Systems Analysis of Functional Magnetic Resonance Imaging in Human V1
Geoffrey M. Boynton, Stephen A. Engel, Gary H. Glover et al. · Journal of Neuroscience · 1996 · 2.4K citations · Full text
Time required for Judgements of Numerical Inequality
Robert S. Moyer, Thomas K. Landauer · Nature · 1967 · 2.1K citations
Numerical Analysis, Mathematical Programming, Engineering +8