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Natasha Chaku; Kelly Barry – Infant and Child Development, 2024
During adolescence, increases in pubertal hormones lead to reproductive maturity as well as changes in cognitive development. Yet, little is known about how to best characterize interindividual differences in hormone concentrations. The goal of the current study was to examine the antecedents and consequences of membership in empirically derived…
Descriptors: Early Adolescents, Puberty, Physiology, Biochemistry
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Stern, Jessica A.; Botdorf, Morgan; Cassidy, Jude; Riggins, Tracy – Developmental Psychology, 2019
Empathic responding--the capacity to understand, resonate with, and respond sensitively to others' emotional experiences--is a complex human faculty that calls upon multiple social, emotional, and cognitive capacities and their underlying neural systems. Emerging evidence in adults has suggested that the hippocampus and its associated network may…
Descriptors: Empathy, Brain, Brain Hemisphere Functions, Young Children
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Crossland, John – School Science Review, 2017
Parts 1 and 2 in this four-part series of articles (Crossland, 2016, 2017) discussed the recent research from neuroscience linked to concepts from cognitive development that brought Piaget's theories into the 21st century and showed the most effective provision towards more optimal learning strategies. Then the discussion moved onto Demetriou's…
Descriptors: Science Instruction, Neurosciences, Educational Research, Scientific Research
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Urosevic, Snezana; Collins, Paul; Muetzel, Ryan; Lim, Kelvin; Luciana, Monica – Developmental Psychology, 2012
Adolescence is a period of radical normative changes and increased risk for substance use, mood disorders, and physical injury. Researchers have proposed that increases in reward sensitivity (i.e., sensitivity of the behavioral approach system [BAS]) and/or increases in reactivity to all emotional stimuli (i.e., reward and threat sensitivities)…
Descriptors: Brain, Neurological Organization, Behavior, Motivation
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Bull, Rebecca; Davidson, Wendy Anne; Nordmann, Emily – Learning and Individual Differences, 2010
Lateralization of the brain is strongly influenced by prenatal androgens, with differential exposure thought to account for cognitive sex differences. This study investigated sex and individual differences and relationships between 2D:4D (the ratio of the 2nd to 4th digit [digit ratio] as a proxy indicator of prenatal testosterone exposure),…
Descriptors: Females, Memory, Spatial Ability, Arithmetic
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Tang, C. Y.; Eaves, E. L.; Ng, J. C.; Carpenter, D. M.; Mai, X.; Schroeder, D. H.; Condon, C. A.; Colom, R.; Haier, R. J. – Intelligence, 2010
Neuro-imaging studies of intelligence implicate the importance of a parietal-frontal network. One unresolved issue is whether this network underlies a general factor of intelligence ("g") or other specific cognitive factors. A second unresolved issue is whether males and females use different parts of this network. Here we obtained intelligence…
Descriptors: Intelligence, Females, Integrity, Young Adults
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Santesso, L. Diane; Dana, L. Reker; Schmidt, Louis A.; Segalowitz, Sidney J. – Child Psychiatry and Human Development, 2006
The purpose of the present study was to examine the relations among resting frontal brain electrical activity (EEG) (hypothesized to reflect a predisposition to positive versus negative affect and ability to regulate emotions), emotional intelligence, and externalizing behaviors in a sample of non-clinical 10-year-old children. We found that boys…
Descriptors: Emotional Intelligence, Children, Brain, Gender Differences