No Difference in the Neural Underpinnings of Number and Letter Copying in Children: Bayesian Analysis of Functional Near-Infrared Spectroscopy Data

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Bibliographic Details
Title: No Difference in the Neural Underpinnings of Number and Letter Copying in Children: Bayesian Analysis of Functional Near-Infrared Spectroscopy Data
Language: English
Authors: Soltanlou, Mojtaba (ORCID 0000-0003-1959-1384), Coldea, Andra, Artemenko, Christina, Ehlis, Ann-Christine, Fallgatter, Andreas J., Nuerk, Hans-Christoph, Dresler, Thomas
Source: Mind, Brain, and Education. Nov 2019 13(4):313-325.
Availability: Wiley-Blackwell. 350 Main Street, Malden, MA 02148. Tel: 800-835-6770; Tel: 781-388-8598; Fax: 781-388-8232; e-mail: cs-journals@wiley.com; Web site: http://www.wiley.com/WileyCDA
Peer Reviewed: Y
Page Count: 13
Publication Date: 2019
Document Type: Journal Articles
Reports - Research
Education Level: Elementary Education
Grade 5
Intermediate Grades
Middle Schools
Grade 6
Descriptors: Brain Hemisphere Functions, Spectroscopy, Numbers, Alphabets, Grade 5, Grade 6, Elementary School Students, Diagnostic Tests, Computer Assisted Testing, Bayesian Statistics, Duplication
DOI: 10.1111/mbe.12225
ISSN: 1751-2271
Abstract: It is under debate whether the neural representation of numbers and letters might rely on distinct neural correlates, or on a mostly shared neural network. In the present study, a total of 47 children in fifth grade (Experiment 1) and sixth grade (Experiment 2) simply copied numbers and letters on a touch screen while brain activation changes were recorded by means of functional near-infrared spectroscopy (fNIRS). fNIRS data of both experiments and a joint analysis revealed that a shared neural network, particularly in the left hemisphere, was activated in response to both number and letter copying. Interestingly, no difference was observed in brain activation patterns between these two stimuli, as revealed by Bayesian analysis. Our findings indicate that both number and letter copying lead to similar brain activation in children. We further suggest methodological and applied applications of these findings in the frame of educational neuroscience.
Abstractor: As Provided
Entry Date: 2019
Accession Number: EJ1235058
Database: ERIC
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Abstract:It is under debate whether the neural representation of numbers and letters might rely on distinct neural correlates, or on a mostly shared neural network. In the present study, a total of 47 children in fifth grade (Experiment 1) and sixth grade (Experiment 2) simply copied numbers and letters on a touch screen while brain activation changes were recorded by means of functional near-infrared spectroscopy (fNIRS). fNIRS data of both experiments and a joint analysis revealed that a shared neural network, particularly in the left hemisphere, was activated in response to both number and letter copying. Interestingly, no difference was observed in brain activation patterns between these two stimuli, as revealed by Bayesian analysis. Our findings indicate that both number and letter copying lead to similar brain activation in children. We further suggest methodological and applied applications of these findings in the frame of educational neuroscience.
ISSN:1751-2271
DOI:10.1111/mbe.12225