Weak task-related modulation and stimulus representations during arithmetic problem solving in children with developmental dyscalculia
- PMID: 22682904
- PMCID: PMC4353634
- DOI: 10.1016/j.dcn.2011.09.006
Weak task-related modulation and stimulus representations during arithmetic problem solving in children with developmental dyscalculia
Erratum in
- Dev Cogn Neurosci. 2012 Apr;2(2):291
Abstract
Developmental dyscalculia (DD) is a disability that impacts math learning and skill acquisition in school-age children. Here we investigate arithmetic problem solving deficits in young children with DD using univariate and multivariate analysis of fMRI data. During fMRI scanning, 17 children with DD (ages 7-9, grades 2 and 3) and 17 IQ- and reading ability-matched typically developing (TD) children performed complex and simple addition problems which differed only in arithmetic complexity. While the TD group showed strong modulation of brain responses with increasing arithmetic complexity, children with DD failed to show such modulation. Children with DD showed significantly reduced activation compared to TD children in the intraparietal sulcus, superior parietal lobule, supramarginal gyrus and bilateral dorsolateral prefrontal cortex in relation to arithmetic complexity. Critically, multivariate representational similarity revealed that brain response patterns to complex and simple problems were less differentiated in the DD group in bilateral anterior IPS, independent of overall differences in signal level. Taken together, these results show that children with DD not only under-activate key brain regions implicated in mathematical cognition, but they also fail to generate distinct neural responses and representations for different arithmetic problems. Our findings provide novel insights into the neural basis of DD.
Copyright © 2011 Elsevier Ltd. All rights reserved.
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References
-
- Amunts K., Malikovic A., Mohlberg H., Schormann T., Zilles K. Brodmann's areas 17 and 18 brought into stereotaxic space-where and how variable? Neuroimage. 2000;11:66–84. - PubMed
-
- Andres M., Pelgrims B., Michaux N., Olivier E., Pesenti M. Role of distinct parietal areas in arithmetic: an fMRI-guided TMS study. Neuroimage. 2011;54:3048–3056. - PubMed
-
- Ansari D., Dhital B. Age-related changes in the activation of the intraparietal sulcus during nonsymbolic magnitude processing: an event-related functional magnetic resonance imaging study. J. Cogn. Neurosci. 2006;18:1820–1828. - PubMed
-
- Arsalidou M., Taylor M.J. Is 2 + 2 = 4? Meta-analyses of brain areas needed for numbers and calculations. Neuroimage. 2011;54:2382–2393. - PubMed
-
- Ashcraft M.H., Battaglia J. Cognitive arithmetic – evidence for retrieval and decision-processes in mental addition. J. Exp. Psychol.: Hum. Learn. Memory. 1978;4:527–538.
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