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Domain-general cognitive functions fully explained growth in nonsymbolic magnitude representation but not in symbolic representation in elementary school children

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  • Yulia Kuzmina
  • Tatiana Tikhomirova
  • Irina Lysenkova
  • Sergey Malykh

Abstract

In this study, we aimed to compare developmental changes in nonsymbolic and symbolic magnitude representations across the elementary school years. For this aim, we used a four-wave longitudinal study with a one-year interval in schoolchildren in grades 1–4 in Russia and Kyrgyzstan (N = 490, mean age was 7.65 years at grade 1). The results of mixed-effects growth models revealed that growth in the precision of symbolic representation was larger than in the nonsymbolic representation. Moreover, growth in nonsymbolic representation was fully explained by growth in fluid intelligence (FI), visuospatial working memory (VSWM) and processing speed (PS). The analysis demonstrated that growth in nonsymbolic magnitude representation was significant only for pupils with a high level of FI and PS, whereas growth in precision of symbolic representation did not significantly vary across pupils with different levels of FI or VSWM.

Suggested Citation

  • Yulia Kuzmina & Tatiana Tikhomirova & Irina Lysenkova & Sergey Malykh, 2020. "Domain-general cognitive functions fully explained growth in nonsymbolic magnitude representation but not in symbolic representation in elementary school children," PLOS ONE, Public Library of Science, vol. 15(2), pages 1-23, February.
  • Handle: RePEc:plo:pone00:0228960
    DOI: 10.1371/journal.pone.0228960
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    References listed on IDEAS

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    1. Justin Halberda & Michèle M. M. Mazzocco & Lisa Feigenson, 2008. "Individual differences in non-verbal number acuity correlate with maths achievement," Nature, Nature, vol. 455(7213), pages 665-668, October.
    2. Anna A Matejko & Daniel Ansari, 2016. "Trajectories of Symbolic and Nonsymbolic Magnitude Processing in the First Year of Formal Schooling," PLOS ONE, Public Library of Science, vol. 11(3), pages 1-15, March.
    3. Liesje Coertjens & Vincent Donche & Sven De Maeyer & Gert Vanthournout & Peter Van Petegem, 2017. "To what degree does the missing-data technique influence the estimated growth in learning strategies over time? A tutorial example of sensitivity analysis for longitudinal data," PLOS ONE, Public Library of Science, vol. 12(9), pages 1-21, September.
    4. Julie Castronovo & Silke M Göbel, 2012. "Impact of High Mathematics Education on the Number Sense," PLOS ONE, Public Library of Science, vol. 7(4), pages 1-16, April.
    5. Lukowski, Sarah L. & Rosenberg-Lee, Miriam & Thompson, Lee A. & Hart, Sara A. & Willcutt, Erik G. & Olson, Richard K. & Petrill, Stephen A. & Pennington, Bruce F., 2017. "Approximate number sense shares etiological overlap with mathematics and general cognitive ability," Intelligence, Elsevier, vol. 65(C), pages 67-74.
    6. Camilla K. Gilmore & Shannon E. McCarthy & Elizabeth S. Spelke, 2007. "Symbolic arithmetic knowledge without instruction," Nature, Nature, vol. 447(7144), pages 589-591, May.
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