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Developmental change in the acuity of the "number sense": The approximate number system in 3-, 4-, 5-, and 6-year-olds and adults.

Developmental Psychology · 2008 · Vol. 44(5) · pp. 1457–1465
Justin HalberdaLisa Feigenson

Abstract

Behavioral, neuropsychological, and brain imaging research points to a dedicated system for processing number that is shared across development and across species. This foundational Approximate Number System (ANS) operates over multiple modalities, forming representations of the number of objects, sounds, or events in a scene. This system is imprecise and hence differs from exact counting. Evidence suggests that the resolution of the ANS, as specified by a Weber fraction, increases with age such that adults can discriminate numerosities that infants cannot. However, the Weber fraction has yet to be determined for participants of any age between 9 months and adulthood, leaving its developmental trajectory unclear. Here we identify the Weber fraction of the ANS in 3-, 4-, 5-, and 6-year-old children and in adults. We show that the resolution of this system continues to increase throughout childhood, with adultlike levels of acuity attained surprisingly late in development.

Cognitive and developmental aspects of mathematical skillsMathematics Education and Teaching TechniquesReading and Literacy DevelopmentNumber sensePsychologyDevelopmental psychologyNeuropsychologyNumerosity adaptation effectFraction (chemistry)CognitionNeuroscienceCognitive science

MeSH terms

AdultAge FactorsChildChild DevelopmentChild, PreschoolConcept FormationDiscrimination LearningFemaleHumansMaleMathematicsOrientationPattern Recognition, VisualProblem SolvingYoung Adult
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References
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Cognition · 1992 · 1,373 citations
Core systems of number
Trends in Cognitive Sciences · 2004 · 2,418 citations
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