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Abreu-Mendoza, Roberto A.; Pincus, Melanie; Chamorro, Yaira; Jolles, Dietsje; Matute, Esmeralda; Rosenberg-Lee, Miriam – Developmental Science, 2022
Mathematical cognition requires coordinated activity across multiple brain regions, leading to the emergence of resting-state functional connectivity as a method for studying the neural basis of differences in mathematical achievement. Hyper-connectivity of the intraparietal sulcus (IPS), a key locus of mathematical and numerical processing, has…
Descriptors: Brain Hemisphere Functions, Mathematics Achievement, Secondary School Students, Cognitive Processes
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Kail, Robert V.; Lervåg, Arne; Hulme, Charles – Developmental Science, 2016
Age-related change in processing speed has been linked directly to increases in reasoning as well as indirectly via increases in the capacity of working memory (WM). Most of the evidence linking change in speed to reasoning has come from cross-sectional research; in this article we present the findings from a 2½-year longitudinal study of 277 6-…
Descriptors: Short Term Memory, Longitudinal Studies, Cognitive Processes, Thinking Skills
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Jeste, Shafali S.; Kirkham, Natasha; Senturk, Damla; Hasenstab, Kyle; Sugar, Catherine; Kupelian, Chloe; Baker, Elizabeth; Sanders, Andrew J.; Shimizu, Christina; Norona, Amanda; Paparella, Tanya; Freeman, Stephanny F. N.; Johnson, Scott P. – Developmental Science, 2015
Statistical learning is characterized by detection of regularities in one's environment without an awareness or intention to learn, and it may play a critical role in language and social behavior. Accordingly, in this study we investigated the electrophysiological correlates of visual statistical learning in young children with autism…
Descriptors: Autism, Pervasive Developmental Disorders, Young Children, Visual Learning
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Mackey, Allyson P.; Hill, Susanna S.; Stone, Susan I.; Bunge, Silvia A. – Developmental Science, 2011
The goal of this study was to determine whether intensive training can ameliorate cognitive skills in children. Children aged 7 to 9 from low socioeconomic backgrounds participated in one of two cognitive training programs for 60 minutes/day and 2 days/week, for a total of 8 weeks. Both training programs consisted of commercially available…
Descriptors: Standardized Tests, Cognitive Processes, Training, Computer Uses in Education
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Bergman Nutley, Sissela; Soderqvist, Stina; Bryde, Sara; Thorell, Lisa B.; Humphreys, Keith; Klingberg, Torkel – Developmental Science, 2011
Fluid intelligence (Gf) predicts performance on a wide range of cognitive activities, and children with impaired Gf often experience academic difficulties. Previous attempts to improve Gf have been hampered by poor control conditions and single outcome measures. It is thus still an open question whether Gf can be improved by training. This study…
Descriptors: Intelligence, Problem Solving, Short Term Memory, Science Education
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Karbach, Julia; Kray, Jutta – Developmental Science, 2009
Although executive functions can be improved by training, little is known about the extent to which these training-related benefits can be transferred to other tasks, or whether this transfer can be modulated by the type of training. This study investigated lifespan changes in near transfer of task-switching training to structurally similar tasks…
Descriptors: Intelligence, Older Adults, Age Differences, Cognitive Processes
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Michel, Fiona; Anderson, Mike – Developmental Science, 2009
A number of authors have proposed models of cognitive development that explain improvements in intelligence over the course of childhood via changes in the efficiency of inhibitory processes (Anderson, 2001; Bjorklund & Harnishfeger, 1990; Dempster, 1991, 1992; Dempster & Corkill, 1999a; Harnishfeger, 1995; Harnishfeger & Bjorklund, 1993). A…
Descriptors: Intelligence, Inhibition, Cognitive Development, Child Development
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Smith, Linda B.; Breazeal, Cynthia – Developmental Science, 2007
What are the essential properties of human intelligence, currently unparalleled in its power relative to other biological forms and relative to artificial forms of intelligence? We suggest that answering this question depends critically on understanding developmental process. This paper considers three principles potentially essential to building…
Descriptors: Intelligence, Artificial Intelligence, Child Development, Developmental Stages