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Wilkey, Eric D.; Shanley, Lina; Sabb, Fred; Ansari, Daniel; Cohen, Jason C.; Men, Virany; Heller, Nicole A.; Clarke, Ben – Developmental Science, 2022
Children's ability to discriminate nonsymbolic number (e.g., the number of items in a set) is a commonly studied predictor of later math skills. Number discrimination improves throughout development, but what drives this improvement is unclear. Competing theories suggest that it may be due to a sharpening numerical representation or an improved…
Descriptors: Numbers, Mathematics Skills, Predictor Variables, Number Concepts
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Smyth, Rachael E.; Ansari, Daniel – Developmental Science, 2020
Research demonstrating that infants discriminate between small (e.g., 1 vs. 3 dots) and large numerosities (e.g., 8 vs. 16 dots) is central to theories concerning the origins of human numerical abilities. To date, there has been no quantitative meta-analysis of the infant numerical competency data. Here, we quantitatively synthesize the evidential…
Descriptors: Infants, Visual Perception, Visual Stimuli, Numeracy
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Park, Joonkoo; van den Berg, Berry; Chiang, Crystal; Woldorff, Marty G.; Brannon, Elizabeth M. – Developmental Science, 2018
Adult neuroimaging studies have demonstrated dissociable neural activation patterns in the visual cortex in response to letters (Latin alphabet) and numbers (Arabic numerals), which suggest a strong experiential influence of reading and mathematics on the human visual system. Here, developmental trajectories in the event-related potential (ERP)…
Descriptors: Visual Perception, Neurological Organization, Brain Hemisphere Functions, Alphabets
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Edwards, Laura A.; Wagner, Jennifer B.; Simon, Charline E.; Hyde, Daniel C. – Developmental Science, 2016
Humans are born with the ability to mentally represent the approximate numerosity of a set of objects, but little is known about the brain systems that sub-serve this ability early in life and their relation to the brain systems underlying symbolic number and mathematics later in development. Here we investigate processing of numerical magnitudes…
Descriptors: Neurological Organization, Brain, Infants, Spectroscopy
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Libertus, Melissa E.; Brannon, Elizabeth M. – Developmental Science, 2010
Previous studies have shown that as a group 6-month-old infants successfully discriminate numerical changes when the values differ by at least a 1:2 ratio but fail at a 2:3 ratio (e.g. 8 vs. 16 but not 8 vs. 12). However, no studies have yet examined individual differences in number discrimination in infancy. Using a novel numerical change…
Descriptors: Infants, Visual Stimuli, Visual Discrimination, Numbers
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Spelke, Elizabeth S.; Kinzler, Katherine D. – Developmental Science, 2007
Human cognition is founded, in part, on four systems for representing objects, actions, number, and space. It may be based, as well, on a fifth system for representing social partners. Each system has deep roots in human phylogeny and ontogeny, and it guides and shapes the mental lives of adults. Converging research on human infants, non-human…
Descriptors: Infants, Knowledge Level, Cognitive Development, Animals
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Wood, Justin N.; Spelke, Elizabeth S. – Developmental Science, 2005
Are abstract representations of number--representations that are independent of the particular type of entities that are enumerated--a product of human language or culture, or do they trace back to human infancy? To address this question, four experiments investigated whether human infants discriminate between sequences of actions (jumps of a…
Descriptors: Numeracy, Infants, Numbers, Visual Stimuli