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Forsberg, Alicia; Guitard, Dominic; Adams, Eryn J.; Pattanakul, Duangporn; Cowan, Nelson – Developmental Science, 2022
We explored the causal role of individual and age-related differences in working memory (WM) capacity in long-term memory (LTM) retrieval. Our sample of 160 participants included 120 children (6-13-years old) and 40 young adults (18-24 years). Participants performed a WM task with images of unique everyday items, presented at varying set sizes.…
Descriptors: Long Term Memory, Short Term Memory, Individual Differences, Age Differences
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McKay, Courtney A.; Shing, Yee Lee; Rafetseder, Eva; Wijeakumar, Sobanawartiny – Developmental Science, 2021
Visual working memory (VWM) is reliably predictive of fluid intelligence and academic achievements. The objective of the current study was to investigate individual differences in pre-schoolers' VWM processing by examining the association between behaviour, brain function and parent-reported measures related to the child's environment. We used a…
Descriptors: Short Term Memory, Visual Perception, Preschool Children, Individual Differences
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Cubillo, Ana; Hermes, Henning; Berger, Eva; Winkel, Kirsten; Schunk, Daniel; Fehr, Ernst; Hare, Todd A. – Developmental Science, 2023
The potential benefits and mechanistic effects of working memory training (WMT) in children are the subject of much research and debate. We show that after five weeks of school-based, adaptive WMT 6-9 year-old primary school children had greater activity in prefrontal and striatal brain regions, higher task accuracy, and reduced intra-individual…
Descriptors: Individual Differences, Comparative Analysis, Academic Achievement, Well Being
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Albert, W. Dustin; Hanson, Jamie L.; Skinner, Ann T.; Dodge, Kenneth A.; Steinberg, Laurence; Deater-Deckard, Kirby; Bornstein, Marc H.; Lansford, Jennifer E. – Developmental Science, 2020
Children from families with low socioeconomic status (SES) earn lower grades, perform worse on achievement tests, and attain less education on average than their peers from higher-SES families. We evaluated neurocognitive mediators of SES disparities in achievement in a diverse sample of youth whose data were linked to administrative records of…
Descriptors: Individual Differences, Executive Function, Middle School Students, Academic Achievement
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Barnes, Jessica J.; Woolrich, Mark W.; Baker, Kate; Colclough, Giles L.; Astle, Duncan E. – Developmental Science, 2016
Functional connectivity is the statistical association of neuronal activity time courses across distinct brain regions, supporting specific cognitive processes. This coordination of activity is likely to be highly important for complex aspects of cognition, such as the communication of fluctuating task goals from higher-order control regions to…
Descriptors: Short Term Memory, Children, Brain, Cognitive Processes
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Bugden, Stephanie; Ansari, Daniel – Developmental Science, 2016
In the present study we examined whether children with Developmental Dyscalculia (DD) exhibit a deficit in the so-called "Approximate Number System" (ANS). To do so, we examined a group of elementary school children who demonstrated persistent low math achievement over 4 years and compared them to typically developing (TD), aged-matched…
Descriptors: Learning Disabilities, Children, Spatial Ability, Short Term Memory
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Cepeda, Nicholas J.; Blackwell, Katharine A.; Munakata, Yuko – Developmental Science, 2013
The rate at which people process information appears to influence many aspects of cognition across the lifespan. However, many commonly accepted measures of "processing speed" may require goal maintenance, manipulation of information in working memory, and decision-making, blurring the distinction between processing speed and executive…
Descriptors: Cognitive Processes, Individual Differences, Short Term Memory, Decision Making
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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