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Brod, Garvin; Shing, Yee Lee – Mind, Brain, and Education, 2022
Humans accumulate knowledge throughout their entire lives. In what ways does this accumulation of knowledge influence learning of new information? Are there age-related differences in the way prior knowledge is leveraged for remembering new information? We review studies that have investigated these questions, focusing on those that have used the…
Descriptors: Age Differences, Prior Learning, Brain Hemisphere Functions, Memory
Shawn Kaplan – ProQuest LLC, 2024
This non-experimental, correlational, quantitative study sought to identify possible relationships between educators' beliefs in neuromyths - misconceptions or misunderstandings about how people learn - and the frequency in which instructional practices are used in the classroom. The prevalence and pervasiveness of neuromyth beliefs are well…
Descriptors: Correlation, Brain Hemisphere Functions, Misconceptions, Teaching Methods
Jake C. Crawley – ProQuest LLC, 2023
The purpose of this quantitative, correlational-predictive study was to understand if and to what extent the demographic variables Age, Gender, and Years of Experience individually or combined predict Belief in Neurological Myths among higher education faculty in the United States. The approach utilized is grounded in the ongoing study of belief…
Descriptors: Misconceptions, Neurosciences, Measurement Techniques, Age Differences
McHail, Daniel G.; Valibeigi, Nazanin; Dumas, Theodore C. – Learning & Memory, 2018
The neural bases of cognition may be greatly informed by relating temporally defined developmental changes in behavior with concurrent alterations in neural function. A robust improvement in performance in spatial learning and memory tasks occurs at 3 wk of age in rodents. We reported that the developmental increase of spontaneous alternation in a…
Descriptors: Spatial Ability, Memory, Animals, Brain Hemisphere Functions
Zhang, Xiaoqun; Yao, Ning; Chergui, Karima – Learning & Memory, 2016
Several forms of long-term depression (LTD) of glutamatergic synaptic transmission have been identified in the dorsal striatum and in the nucleus accumbens (NAc). Such experience-dependent synaptic plasticity might play important roles in reward-related learning. The GABA[subscript A] receptor agonist muscimol was recently found to trigger a…
Descriptors: Animals, Brain Hemisphere Functions, Age Differences, Neurological Organization
Baker, Kathryn D.; Richardson, Rick – Learning & Memory, 2015
Fear inhibition is markedly impaired in adolescent rodents and humans. The present experiments investigated whether this impairment is critically determined by the animal's age at the time of fear learning or their age at fear extinction. Male rats (n = 170) were tested for extinction retention after conditioning and extinction at different ages.…
Descriptors: Fear, Inhibition, Adolescents, Animals
Sanchez, Laura V. – ProQuest LLC, 2014
Adult literacy training is known to be difficult in terms of teaching and maintenance (Abadzi, 2003), perhaps because adults who recently learned to read in their first language have not acquired reading automaticity. This study examines fast word recognition process in neoliterate adults, to evaluate whether they show evidence of perceptual…
Descriptors: Spanish Speaking, Literacy, Adult Literacy, Task Analysis
Kaczorowski, Catherine C.; Disterhoft, John F. – Learning & Memory, 2009
Normal aging disrupts hippocampal neuroplasticity and learning and memory. Aging deficits were exposed in a subset (30%) of middle-aged mice that performed below criterion on a hippocampal-dependent contextual fear conditioning task. Basal neuronal excitability was comparable in middle-aged and young mice, but learning-related modulation of the…
Descriptors: Animals, Aging (Individuals), Memory, Fear