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Oruro, Enver Miguel; Pardo, Grace V. E.; Lucion, Aldo Bolten; Calcagnotto, Maria Elisa; Idiart, Marco A. P. – Learning & Memory, 2020
During the first ten postnatal days (P), infant rodents can learn olfactory preferences for novel odors if they are paired with thermo-tactile stimuli that mimic components of maternal care. After P10, the thermo-tactile pairing becomes ineffective for conditioning. The current explanation for this change in associative learning is the alteration…
Descriptors: Neonates, Animals, Olfactory Perception, Brain Hemisphere Functions
Brown, Kevin L.; Freeman, John H. – Learning & Memory, 2014
Eyeblink conditioning is a well-established model for studying the developmental neurobiology of associative learning and memory. However, age differences in extinction and subsequent reacquisition have yet to be studied using this model. The present study examined extinction and reacquisition of eyeblink conditioning in developing rats. In…
Descriptors: Animals, Conditioning, Neurological Organization, Associative Learning
Tsui, David; van der Kooy, Derek – Learning & Memory, 2008
We utilized olfactory-mediated chemotaxis in "Caenorhabditis elegans" to examine the effect of aging on information processing and animal behavior. Wild-type (N2) young adults (day 4) initially approach and eventually avoid a point source of benzaldehyde. Aged adult animals (day 7) showed a stronger initial approach and a delayed avoidance to…
Descriptors: Animals, Associative Learning, Animal Behavior, Age Differences
Weiler, Julia A.; Bellebaum, Christian; Daum, Irene – Learning & Memory, 2008
Reward-based associative learning is mediated by a distributed network of brain regions that are dependent on the dopaminergic system. Age-related changes in key regions of this system, the striatum and the prefrontal cortex, may adversely affect the ability to use reward information for the guidance of behavior. The present study investigated the…
Descriptors: Stimuli, Transfer of Training, Associative Learning, Rewards