Initial organization and progressive expansion of the math-responsive brain network during the first school years
Abstract
The neural mechanisms by which the developing brain acquires higher mathematical concepts from elementary intuitions remain poorly understood. Through a large-scale longitudinal functional MRI study of children from preschool through first and second grade, we tracked how neural responses to mathematical and nonmathematical statements change in the first 2 y of formal schooling, and we used these data to evaluate several theories of developmental change. Before school, when listening to math statements, children already engaged an adult-like cortical network, with partial specialization for geometry. Over the first 2 y of school, we observed an overall increase in math-related activation, a small recruitment of additional neural territory, reduced activation for facts that get better known, and a small overall increase in the dimensionality of representational space. fMRI responses to individual sentences suggest that these mechanisms, particularly in left inferior frontal gyrus and bilateral intraparietal sulcus, all contribute to children’s growing mastery of mathematical concepts.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (6)
Théo Morfoisse
Chair of Experimental Cognitive Psychology, Collège de France
Séverine Becuwe
Cognitive NeuroImaging Unit, Commissariat à l’Energie atomique et aux énergies alternatives, INSERM, Université Paris-Sud, Université Paris-Saclay, NeuroSpin Center
Marie Palu
Cognitive NeuroImaging Unit, Commissariat à l’Energie atomique et aux énergies alternatives, INSERM, Université Paris-Sud, Université Paris-Saclay, NeuroSpin Center
Cassandra Potier-Watkins
Chair of Experimental Cognitive Psychology, Collège de France
Ghislaine Dehaene-Lambertz
Cognitive Neuroimaging Unit, CNRS Equipe de recherche labellisée 9003, INSERM U1354, Commissariat à l’Energie Atomique et aux énergies alternatives, Université Paris-Saclay, NeuroSpin Center
Stanislas Dehaene