Literature DB >> 25089323

Developmental dissociation in the neural responses to simple multiplication and subtraction problems.

Jérôme Prado, Rachna Mutreja, James R Booth.   

Abstract

Mastering single-digit arithmetic during school years is commonly thought to depend upon an increasing reliance on verbally memorized facts. An alternative model, however, posits that fluency in single-digit arithmetic might also be achieved via the increasing use of efficient calculation procedures. To test between these hypotheses, we used a cross-sectional design to measure the neural activity associated with single-digit subtraction and multiplication in 34 children from 2nd to 7th grade. The neural correlates of language and numerical processing were also identified in each child via localizer scans. Although multiplication and subtraction were undistinguishable in terms of behavior, we found a striking developmental dissociation in their neural correlates. First, we observed grade-related increases of activity for multiplication, but not for subtraction, in a language-related region of the left temporal cortex. Second, we found grade-related increases of activity for subtraction, but not for multiplication, in a region of the right parietal cortex involved in the procedural manipulation of numerical quantities. The present results suggest that fluency in simple arithmetic in children may be achieved by both increasing reliance on verbal retrieval and by greater use of efficient quantity-based procedures, depending on the operation.

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Year:  2014        PMID: 25089323      PMCID: PMC4122319          DOI: 10.1111/desc.12140

Source DB:  PubMed          Journal:  Dev Sci        ISSN: 1363-755X


  60 in total

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Review 9.  Methodological approaches in developmental neuroimaging studies.

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  31 in total

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Authors:  Özlem Ece Demir; Jérôme Prado; James R Booth
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3.  Children with mathematical learning disability fail in recruiting verbal and numerical brain regions when solving simple multiplication problems.

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4.  Increased arithmetic complexity is associated with domain-general but not domain-specific magnitude processing in children: A simultaneous fNIRS-EEG study.

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5.  The differential role of verbal and spatial working memory in the neural basis of arithmetic.

Authors:  Özlem Ece Demir; Jérôme Prado; James R Booth
Journal:  Dev Neuropsychol       Date:  2014       Impact factor: 2.253

6.  Strategy over operation: neural activation in subtraction and multiplication during fact retrieval and procedural strategy use in children.

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7.  How number line estimation skills relate to neural activations in single digit subtraction problems.

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8.  Lack of improvement in multiplication is associated with reverting from verbal retrieval to numerical operations.

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9.  Neurocognitive mechanisms explaining the role of math attitudes in predicting children's improvement in multiplication skill.

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10.  Gray matter volume in left intraparietal sulcus predicts longitudinal gains in subtraction skill in elementary school.

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Journal:  Neuroimage       Date:  2021-04-06       Impact factor: 6.556

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