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Austin L. Boroshok; Anne T. Park; Panagiotis Fotiadis; Gerardo H. Velasquez; Ursula A. Tooley; Katrina R. Simon; Jasmine C. P. Forde; Lourdes M. Delgado Reyes; M. Dylan Tisdall; Dani S. Bassett; Emily A. Cooper; Allyson P. Mackey – npj Science of Learning, 2022
Neuroplasticity, defined as the brain's "potential" to change in response to its environment, has been extensively studied at the cellular and molecular levels. Work in animal models suggests that stimulation to the ventral tegmental area (VTA) enhances plasticity, and that myelination constrains plasticity. Little is known, however,…
Descriptors: Individual Differences, Brain Hemisphere Functions, Learning Processes, Correlation
Anna C. K. van Duijvenvoorde; Lucy B. Whitmore; Bianca Westhoff; Kathryn L. Mills – npj Science of Learning, 2022
The brain undergoes profound development across childhood and adolescence, including continuous changes in brain morphology, connectivity, and functioning that are, in part, dependent on one's experiences. These neurobiological changes are accompanied by significant changes in children's and adolescents' cognitive learning. By drawing from studies…
Descriptors: Children, Adolescents, Learning, Brain
Yoann Stussi; Aude Ferrero; Gilles Pourtois; David Sander – npj Science of Learning, 2019
Pavlovian aversive conditioning is a fundamental form of learning helping organisms survive in their environment. Previous research has suggested that organisms are prepared to preferentially learn to fear stimuli that have posed threats to survival across evolution. Here, we examined whether enhanced Pavlovian aversive conditioning can occur to…
Descriptors: Academic Achievement, Classical Conditioning, Learning Processes, Individual Differences