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Showing 1 to 15 of 18 results Save | Export
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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
David Abugaber – ProQuest LLC, 2022
Learning new languages is a complex task involving both explicit and implicit processes (i.e., that do/do not involve awareness). Understanding how these processes interact is essential to a full account of second language (L2) learning, but accounts vary as to whether explicit processes help (e.g., DeKeyser, 2007), hinder (e.g., Ellis &…
Descriptors: Second Language Instruction, Second Language Learning, Artificial Languages, Task Analysis
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Lui, Kelvin F. H.; Lo, Jason C. M.; Maurer, Urs; Ho, Connie S.-H.; McBride, Catherine – Developmental Science, 2021
Research on what neural mechanisms facilitate word reading development in non-alphabetic scripts is relatively rare. The present study was among the first to adopt a multivariate pattern classification analysis to decode electroencephalographic signals recorded for primary school children (N = 236) while performing a Chinese character decision…
Descriptors: Decoding (Reading), Chinese, Cognitive Processes, Elementary School Students
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Ullman, Michael T.; Lovelett, Jarrett T. – Second Language Research, 2018
The declarative/procedural (DP) model posits that the learning, storage, and use of language critically depend on two learning and memory systems in the brain: declarative memory and procedural memory. Thus, on the basis of independent research on the memory systems, the model can generate specific and often novel predictions for language. Till…
Descriptors: Role, Memory, Second Language Learning, Prediction
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Halpern, David; Tubridy, Shannon; Wang, Hong Yu; Gasser, Camille; Popp, Pamela Osborn; Davachi, Lila; Gureckis, Todd M. – International Educational Data Mining Society, 2018
Knowledge tracing is a popular and successful approach to modeling student learning. In this paper we investigate whether the addition of neuroimaging observations to a knowledge tracing model enables accurate prediction of memory performance in held-out data. We propose a Hidden Markov Model of memory acquisition related to Bayesian Knowledge…
Descriptors: Learning Processes, Memory, Prediction, Second Language Learning
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Wigestrand, Mattis B.; Schiff, Hillary C.; Fyhn, Marianne; LeDoux, Joseph E.; Sears, Robert M. – Learning & Memory, 2017
Distinguishing threatening from nonthreatening stimuli is essential for survival and stimulus generalization is a hallmark of anxiety disorders. While auditory threat learning produces long-lasting plasticity in primary auditory cortex (Au1), it is not clear whether such Au1 plasticity regulates memory specificity or generalization. We used…
Descriptors: Memory, Brain Hemisphere Functions, Stimuli, Generalization
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Kersey, Alyssa J.; Emberson, Lauren L. – Developmental Science, 2017
Although infants begin learning about their environment before they are born, little is known about how the infant brain changes during learning. Here, we take the initial steps in documenting how the neural responses in the brain change as infants learn to associate audio and visual stimuli. Using functional near-infrared spectroscopy (fNRIS) to…
Descriptors: Infants, Child Development, Spectroscopy, Brain Hemisphere Functions
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Paul Marshall; Timothy W. Bredy – npj Science of Learning, 2016
A complete understanding of the fundamental mechanisms of learning and memory continues to elude neuroscientists. Although many important discoveries have been made, the question of how memories are encoded and maintained at the molecular level remains. So far, this issue has been framed within the context of one of the most dominant concepts in…
Descriptors: Learning Processes, Memory, Neurosciences, Brain Hemisphere Functions
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Singh, Sonia; Walk, Anne M.; Conway, Christopher M. – Annals of Dyslexia, 2018
Previous research suggests that individuals with developmental dyslexia perform below typical readers on non-linguistic cognitive tasks involving the learning and encoding of statistical-sequential patterns. However, the neural mechanisms underlying such a deficit have not been well examined. The aim of the present study was to investigate the…
Descriptors: Statistics, Dyslexia, Cognitive Processes, Brain Hemisphere Functions
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Bernier, Brian E.; Lacagnina, Anthony F.; Drew, Michael R. – Learning & Memory, 2015
Studies on the behavioral mechanisms underlying contextual fear conditioning (CFC) have demonstrated the importance of preshock context exposure in the formation of aversive context memories. However, there has been comparatively little investigation of the effects of context exposure immediately after the shock. Some models predict that…
Descriptors: Fear, Learning Processes, Brain Hemisphere Functions, Memory
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Worthy, Darrell A.; Markman, Arthur B.; Maddox, W. Todd – Brain and Cognition, 2013
We examined how feedback delay and stimulus offset timing affected declarative, rule-based and procedural, information-integration category-learning. We predicted that small feedback delays of several hundred milliseconds would lead to the best information-integration learning based on a highly regarded neurobiological model of learning in the…
Descriptors: Feedback (Response), Classification, Stimuli, Learning Processes
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Lee, Joanna C.; Tomblin, J. Bruce – Language Learning and Development, 2015
The aim of the current study was to examine different aspects of procedural memory in young adults who varied with regard to their language abilities. We selected a sample of procedural memory tasks, each of which represented a unique type of procedural learning, and has been linked, at least partially, to the functionality of the corticostriatal…
Descriptors: Memory, Individual Differences, Task Analysis, Prediction
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Sadeh, Talya; Shohamy, Daphna; Levy, Dana Rubi; Reggev, Niv; Maril, Anat – Journal of Cognitive Neuroscience, 2011
The hippocampus and the striatum are thought to play distinct roles in learning and memory, each supporting an independent memory system. A fundamental question is whether, and how, these systems interact to jointly contribute to learning and memory. In particular, it remains unknown whether the striatum contributes selectively to implicit,…
Descriptors: Brain Hemisphere Functions, Cognitive Processes, Memory, Learning Processes
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Cooper, Jeffrey C.; Dunne, Simon; Furey, Teresa; O'Doherty, John P. – Journal of Cognitive Neuroscience, 2012
The dorsal striatum plays a key role in the learning and expression of instrumental reward associations that are acquired through direct experience. However, not all learning about instrumental actions require direct experience. Instead, humans and other animals are also capable of acquiring instrumental actions by observing the experiences of…
Descriptors: Video Technology, Operant Conditioning, Observational Learning, Prediction
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Holtzman-Assif, Orit; Laurent, Vincent; Westbrook, R. Frederick – Learning & Memory, 2010
Three experiments used rats to investigate the role of dopamine activity in learning to inhibit conditioned fear responses (freezing) in extinction. In Experiment 1, rats systemically injected with the D2 dopamine antagonist, haloperidol, froze more across multiple extinction sessions and on a drug-free retention test than control rats. In…
Descriptors: Animals, Fear, Biochemistry, Conditioning
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