Literature DB >> 33954927

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

Macarena Suárez-Pellicioni1, Ö Ece Demir-Lira2, James R Booth3.   

Abstract

Enhancing student's math achievement is a significant educational challenge. Numerous studies have shown that math attitudes can predict improvement in math performance, but no study has yet revealed the underlying neurocognitive mechanisms explaining this effect. To answer this question, 50 children underwent functional magnetic resonance imaging (fMRI) when they were 11 (time 1; T1) and 13 (time 2; T2) years old. Children solved a rhyming judgment and a single-digit multiplication task inside the scanner at T1. The rhyming task was used to independently define a verbal region of interest in the left inferior frontal gyrus (IFG). We focused on this region because of previous evidence showing math attitudes-related effects in the left IFG for children with low math skill (Demir-Lira et al., 2019). Children completed standardized testing of math attitudes at T1 and of multiplication skill both at T1 and T2. We performed a cluster-wise regression analysis to investigate the interaction between math attitudes and improvement in multiplication skill over time while controlling for the main effects of these variables, intelligence, and accuracy on the task. This analysis revealed a significant interaction in the left IFG, which was due to improvers with positive math attitudes showing enhanced activation. Our result suggests that IFG activation, possibly reflecting effort invested in retrieving multiplication facts, is one of the possible neurocognitive mechanism by which children with positive math attitudes improve in multiplication skill. Our finding suggests that teachers and parents can help children do better in math by promoting positive math attitudes.
© 2021. The Psychonomic Society, Inc.

Entities:  

Keywords:  Attitudes; Children; Longitudinal; Math; Multiplication; functional magnetic resonance imaging

Mesh:

Year:  2021        PMID: 33954927      PMCID: PMC8455431          DOI: 10.3758/s13415-021-00906-9

Source DB:  PubMed          Journal:  Cogn Affect Behav Neurosci        ISSN: 1530-7026            Impact factor:   3.526


  46 in total

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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.

Authors:  Mojtaba Soltanlou; Christina Artemenko; Thomas Dresler; Florian B Haeussinger; Andreas J Fallgatter; Ann-Christine Ehlis; Hans-Christoph Nuerk
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5.  Cognitive predictors of achievement growth in mathematics: a 5-year longitudinal study.

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

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7.  Listening under difficult conditions: An activation likelihood estimation meta-analysis.

Authors:  Claude Alain; Yi Du; Lori J Bernstein; Thijs Barten; Karen Banai
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Review 8.  Math anxiety: A review of its cognitive consequences, psychophysiological correlates, and brain bases.

Authors:  Macarena Suárez-Pellicioni; María Isabel Núñez-Peña; Àngels Colomé
Journal:  Cogn Affect Behav Neurosci       Date:  2016-02       Impact factor: 3.282

9.  Relation between brain activation and lexical performance.

Authors:  James R Booth; Douglas D Burman; Joel R Meyer; Darren R Gitelman; Todd B Parrish; M Marsel Mesulam
Journal:  Hum Brain Mapp       Date:  2003-07       Impact factor: 5.038

10.  Language-selective and domain-general regions lie side by side within Broca's area.

Authors:  Evelina Fedorenko; John Duncan; Nancy Kanwisher
Journal:  Curr Biol       Date:  2012-10-11       Impact factor: 10.834

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