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Jai S. Polepalli; Helen Gooch; Pankaj Sah – npj Science of Learning, 2020
The basolateral amygdala (BLA) is a temporal lobe structure that contributes to a host of behaviors. In particular, it is a central player in learning about aversive events and thus assigning emotional valence to sensory events. It is a cortical-like structure and contains glutamatergic pyramidal neurons and GABAergic interneurons. It is divided…
Descriptors: Brain Hemisphere Functions, Cytology, Stoichiometry, Diagnostic Tests
Hashimoto, Teruo; Yokota, Susumu; Matsuzaki, Yutaka; Kawashima, Ryuta – Autism: The International Journal of Research and Practice, 2021
Atypical learning and memory in early life can promote atypical behaviors in later life. Less relational learning and inflexible retrieval in childhood may enhance restricted and repeated behaviors in patients with autism spectrum disorder. The purpose of this study was to elucidate the mechanisms of atypical memory in children with autism…
Descriptors: Autism, Pervasive Developmental Disorders, Learning Processes, Memory
Marecka, Marta; McDonald, Alison; Madden, Gillian; Fosker, Tim – International Journal of Bilingual Education and Bilingualism, 2022
Research suggests that second language words are learned faster when they are similar in phonological structure or accent to the words of an individual's first language. Many major theories suggest this happens because of differences in frequency of exposure and context between first and second language words. Here, we examine the independent…
Descriptors: Pictorial Stimuli, Task Analysis, Phonology, Second Language Learning
Manelis, Anna; Reder, Lynne M. – Learning & Memory, 2012
Using a combination of eye tracking and fMRI in a contextual cueing task, we explored the mechanisms underlying the facilitation of visual search for repeated spatial configurations. When configurations of distractors were repeated, greater activation in the right hippocampus corresponded to greater reductions in the number of saccades to locate…
Descriptors: Spatial Ability, Learning Processes, Eye Movements, Cues
Sekiguchi, Tatsuhiko; Furudate, Hiroyuki; Kimura, Tetsuya – Learning & Memory, 2010
The terrestrial slug "Limax" exhibits a highly developed ability to learn odors with a small nervous system. When a fluorescent dye, Lucifer Yellow (LY), is injected into the slug's body cavity after odor-taste associative conditioning, a group of neurons in the procerebral (PC) lobe, an olfactory center of the slug, is labeled by LY. We examined…
Descriptors: Conditioning, Olfactory Perception, Physiology, Brain Hemisphere Functions
Roitman, Mitchell F.; Wheeler, Robert A.; Tiesinga, Paul H. E.; Roitman, Jamie D.; Carelli, Regina M. – Learning & Memory, 2010
The nucleus accumbens (NAc) plays a role in hedonic reactivity to taste stimuli. Learning can alter the hedonic valence of a given stimulus, and it remains unclear how the NAc encodes this shift. The present study examined whether the population response of NAc neurons to a taste stimulus is plastic using a conditioned taste aversion (CTA)…
Descriptors: Conditioning, Rewards, Brain Hemisphere Functions, Role
Collins, Peter; Hogan, Michael; Kilmartin, Liam; Keane, Michael; Kaiser, Jochen; Fischer, Kurt – Mind, Brain, and Education, 2010
One likely mechanism in learning new skills is change in synchronous connections between distributed neural networks, which can be measured by coherence analysis of electroencephalographic patterns. This study examined coherence changes during the learning of two tasks, a word association task and a figure association task. Although learning…
Descriptors: Learning Processes, Brain Hemisphere Functions, Vocabulary Development, Diagnostic Tests
Turk-Browne, Nicholas B.; Scholl, Brian J.; Chun, Marvin M.; Johnson, Marcia K. – Journal of Cognitive Neuroscience, 2009
Our environment contains regularities distributed in space and time that can be detected by way of statistical learning. This unsupervised learning occurs without intent or awareness, but little is known about how it relates to other types of learning, how it affects perceptual processing, and how quickly it can occur. Here we use fMRI during…
Descriptors: Familiarity, Associative Learning, Statistics, Responses
Armel, K. Carrie; Pulido, Carmen; Wixted, John T.; Chiba, Andrea A. – Learning and Motivation, 2009
We demonstrate here that initially neutral items can acquire "specific" value based on their associated outcomes, and that responses of physiological systems to such previously meaningless stimuli can rapidly reflect this associative history. Each participant participated in an associative learning task in which four neutral abstract pictures were…
Descriptors: Associative Learning, Human Body, Diagnostic Tests, Physiology
Garoff-Eaton, Rachel J.; Kensinger, Elizabeth A.; Schacter, Daniel L. – Learning & Memory, 2007
False recognition, broadly defined as a claim to remember something that was not encountered previously, can arise for multiple reasons. For instance, a distinction can be made between conceptual false recognition (i.e., false alarms resulting from semantic or associative similarities between studied and tested items) and perceptual false…
Descriptors: Semantics, Recognition (Psychology), Correlation, Neurological Organization
Villarreal, Ronald P.; Steinmetz, Joseph E. – Journal of the Experimental Analysis of Behavior, 2005
How the nervous system encodes learning and memory processes has interested researchers for 100 years. Over this span of time, a number of basic neuroscience methods has been developed to explore the relationship between learning and the brain, including brain lesion, stimulation, pharmacology, anatomy, imaging, and recording techniques. In this…
Descriptors: Brain Hemisphere Functions, Anatomy, Brain, Associative Learning