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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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Schwartz, Flora; Epinat-Duclos, Justine; Noveck, Ira; Prado, Jérôme – Developmental Science, 2018
Older interlocutors are more likely than younger ones to make pragmatic inferences, that is, inferences that go beyond the linguistically encoded meaning of a sentence. Here we ask whether pragmatic development is associated with increased activity in brain structures associated with inference-making or in those associated with Theory of Mind. We…
Descriptors: Neurological Organization, Brain, Inferences, Cognitive Structures
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Park, Joonkoo; Li, Rosa; Brannon, Elizabeth M. – Developmental Science, 2014
In early childhood, humans learn culturally specific symbols for number that allow them entry into the world of complex numerical thinking. Yet little is known about how the brain supports the development of the uniquely human symbolic number system. Here, we use functional magnetic resonance imaging along with an effective connectivity analysis…
Descriptors: Brain, Numbers, Cognitive Processes, Mathematics Achievement
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Lackner, Christine; Sabbagh, Mark A.; Hallinan, Elizabeth; Liu, Xudong; Holden, Jeanette J. A. – Developmental Science, 2012
Individual differences in preschoolers' understanding that human action is caused by internal mental states, or representational theory of mind (RTM), are heritable, as are developmental disorders such as autism in which RTM is particularly impaired. We investigated whether polymorphisms of genes affecting dopamine (DA) utilization and metabolism…
Descriptors: Theory of Mind, Cognitive Development, Individual Differences, Preschool Education
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Lipina, Sebastián; Segretin, Soledad; Hermida, Julia; Prats, Lucía; Fracchia, Carolina; Camelo, Jorge López; Colombo, Jorge – Developmental Science, 2013
Tests of attentional control, working memory, and planning were administered to compare the non-verbal executive control performance of healthy children from different socioeconomic backgrounds. In addition, mediations of several sociodemographic variables, identified in the literature as part of the experience of child poverty, between…
Descriptors: Foreign Countries, Poverty, Cognitive Development, Attention
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Hyde, Daniel C.; Spelke, Elizabeth S. – Developmental Science, 2011
Behavioral research suggests that two cognitive systems are at the foundations of numerical thinking: one for representing 1-3 objects in parallel and one for representing and comparing large, approximate numerical magnitudes. We tested for dissociable neural signatures of these systems in preverbal infants by recording event-related potentials…
Descriptors: Numbers, Infants, Brain, Number Concepts
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Kadosh, Roi Cohen; Henik, Avishai; Walsh, Vincent – Developmental Science, 2009
The question why synaesthesia, an atypical binding within or between modalities, occurs is both enduring and important. Two explanations have been provided: (1) a congenital explanation: we are all born as synaesthetes but most of us subsequently lose the experience due to brain development; (2) a learning explanation: synaesthesia is related to…
Descriptors: Perception, Language, Color, Sensory Experience
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Crone, Eveline A.; Wendelken, Carter; van Leijenhorst, Linda; Honomichl, Ryan D.; Christoff, Kalina; Bunge, Silvia A. – Developmental Science, 2009
Relational reasoning is an essential component of fluid intelligence, and is known to have a protracted developmental trajectory. To date, little is known about the neural changes that underlie improvements in reasoning ability over development. In this event-related functional magnetic resonance imaging (fMRI) study, children aged 8-12 and adults…
Descriptors: Children, Preadolescents, Young Adults, Thinking Skills
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Richardson, Fiona M.; Thomas, Michael S. C. – Developmental Science, 2008
The use of self-organizing feature maps (SOFM) in models of cognitive development has frequently been associated with explanations of "critical" or "sensitive periods". By contrast, error-driven connectionist models of development have been linked with "catastrophic interference" between new knowledge and old knowledge. We introduce a set of…
Descriptors: Maps, Cognitive Processes, Cognitive Development, Concept Mapping
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Samuelson, Larissa K.; Horst, Jessica S. – Developmental Science, 2008
Young children tend to generalize novel names for novel solid objects by similarity in shape, a phenomenon dubbed "the shape bias". We believe that the critical insights needed to explain the shape bias in particular, and cognitive development more generally, come from Dynamic Systems Theory. We present two examples of recent work focusing on the…
Descriptors: Neurological Organization, Novelty (Stimulus Dimension), Cognitive Development, Cognitive Processes
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Siegler, Robert S. – Developmental Science, 2007
Children's thinking is highly variable at every level of analysis, from neural and associative levels to the level of strategies, theories, and other aspects of high-level cognition. This variability exists within people as well as between them; individual children often rely on different strategies or representations on closely related problems…
Descriptors: Thinking Skills, Cognitive Processes, Children, Neurological Organization
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Westermann, Gert; Mareschal, Denis; Johnson, Mark H.; Sirois, Sylvain; Spratling, Michael W.; Thomas, Michael S. C. – Developmental Science, 2007
Neuroconstructivism is a theoretical framework focusing on the construction of representations in the developing brain. Cognitive development is explained as emerging from the experience-dependent development of neural structures supporting mental representations. Neural development occurs in the context of multiple interacting constraints acting…
Descriptors: Brain, Cognitive Development, Neurological Organization, Developmental Stages
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Posner, Michael I.; Rothbart, Mary K.; Sheese, Brad E. – Developmental Science, 2007
A major problem for developmental science is understanding how the cognitive and emotional networks important in carrying out mental processes can be related to individual differences. The last five years have seen major advances in establishing links between alleles of specific genes and the neural networks underlying aspects of attention. These…
Descriptors: Individual Differences, Cognitive Development, Emotional Development, Cognitive Processes
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Carlson, Stephanie M.; Meltzoff, Andrew N. – Developmental Science, 2008
Advanced inhibitory control skills have been found in bilingual speakers as compared to monolingual controls ( Bialystok, 1999 ). We examined whether this effect is generalized to an unstudied language group (Spanish-English bilingual) and multiple measures of executive function by administering a battery of tasks to 50 kindergarten children drawn…
Descriptors: Educational Attainment, Family Income, Monolingualism, Raw Scores
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Meltzoff, Andrew N. – Developmental Science, 2007
Infants represent the acts of others and their own acts in commensurate terms. They can recognize cross-modal equivalences between acts they see others perform and their own felt bodily movements. This recognition of self-other equivalences in action gives rise to interpreting others as having similar psychological states such as perceptions and…
Descriptors: Social Cognition, Infants, Cognitive Development, Social Development
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