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Wong, J. Y. Hilary; Wan, Bo Angela; Bland, Tom; Montagnese, Marcella; McLachlan, Alex D.; O'Kane, Cahir J.; Zhang, Shuo Wei; Masuda-Nakagawa, Liria M. – Learning & Memory, 2021
Discrimination of sensory signals is essential for an organism to form and retrieve memories of relevance in a given behavioral context. Sensory representations are modified dynamically by changes in behavioral state, facilitating context-dependent selection of behavior, through signals carried by noradrenergic input in mammals, or octopamine (OA)…
Descriptors: Human Body, Olfactory Perception, Animal Behavior, Memory
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McManus, Jeffrey M.; Chiel, Hillel J.; Susswein, Abraham J. – Learning & Memory, 2019
Sensory feedback shapes ongoing behavior and may produce learning and memory. Motor responses to edible or inedible food in a reduced Aplysia preparation were examined to test how sensory feedback affects behavior and memory. Feeding patterns were initiated by applying a cholinomimetic onto the cerebral ganglion. Feedback from buccal muscles…
Descriptors: Feedback (Response), Motor Reactions, Sensory Experience, Behavior
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Weiglein, Alice; Gerstner, Florian; Mancini, Nino; Schleyer, Michael; Gerber, Bertram – Learning & Memory, 2019
Animals of many species are capable of "small data" learning, that is, of learning without repetition. Here we introduce larval "Drosophila melanogaster" as a relatively simple study case for such one-trial learning. Using odor-food associative conditioning, we first show that a sugar that is both sweet and nutritious…
Descriptors: Animals, Associative Learning, Conditioning, Memory
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Flores, Veronica L.; Parmet, Tamar; Mukherjee, Narendra; Nelson, Sacha; Katz, Donald B.; Levitan, David – Learning & Memory, 2018
The strength of learned associations between pairs of stimuli is affected by multiple factors, the most extensively studied of which is prior experience with the stimuli themselves. In contrast, little data is available regarding how experience with "incidental" stimuli (independent of any conditioning situation) impacts later learning.…
Descriptors: Sensory Experience, Memory, Incidental Learning, Neurology
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Cho, Jin-Hyung; Rendall, Sam D.; Gray, Jesse M. – Learning & Memory, 2017
"Fos" induction during learning labels neuronal ensembles in the hippocampus that encode a specific physical environment, revealing a memory trace. In the cortex and other regions, the extent to which "Fos" induction during learning reveals specific sensory representations is unknown. Here we generate high-quality brain-wide…
Descriptors: Brain, Fear, Recall (Psychology), Memory
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Kwon, Jeong-Tae; Nakajima, Ryuichi; Hyung-Su, Kim; Jeong, Yire; Augustine, George J.; Han, Jin-Hee – Learning & Memory, 2014
In Pavlovian fear conditioning, the lateral amygdala (LA) has been highlighted as a key brain site for association between sensory cues and aversive stimuli. However, learning-related changes are also found in upstream sensory regions such as thalamus and cortex. To isolate the essential neural circuit components for fear memory association, we…
Descriptors: Conditioning, Brain Hemisphere Functions, Sensory Experience, Cues
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Bisby, James A.; Burgess, Neil – Learning & Memory, 2014
The formation of associations between items and their context has been proposed to rely on mechanisms distinct from those supporting memory for a single item. Although emotional experiences can profoundly affect memory, our understanding of how it interacts with different aspects of memory remains unclear. We performed three experiments to examine…
Descriptors: Memory, Animals, Emotional Response, Affective Behavior
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Gerber, Bertram; Yarali, Ayse; Diegelmann, Sören; Wotjak, Carsten T.; Pauli, Paul; Fendt, Marcus – Learning & Memory, 2014
Memories relating to a painful, negative event are adaptive and can be stored for a lifetime to support preemptive avoidance, escape, or attack behavior. However, under unfavorable circumstances such memories can become overwhelmingly powerful. They may trigger excessively negative psychological states and uncontrollable avoidance of locations,…
Descriptors: Pain, Learning Processes, Memory, Emotional Disturbances
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Cui, Wen; Darby-King, Andrea; Grimes, Matthew T.; Howland, John G.; Wang, Yu Tian; McLean, John H.; Harley, Carolyn W. – Learning & Memory, 2011
An increase in synaptic AMPA receptors is hypothesized to mediate learning and memory. AMPA receptor increases have been reported in aversive learning models, although it is not clear if they are seen with memory maintenance. Here we examine AMPA receptor changes in a cAMP/PKA/CREB-dependent appetitive learning model: odor preference learning in…
Descriptors: Animals, Neonates, Memory, Learning Processes
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Stark, Craig E. L.; Okado, Yoko; Loftus, Elizabeth F. – Learning & Memory, 2010
Many current theories of false memories propose that, when we retrieve a memory, we are not reactivating a veridical, fixed representation of a past event, but are rather reactivating incomplete fragments that may be accurate or distorted and may have arisen from other events. By presenting the two phases of the misinformation paradigm in…
Descriptors: Brain Hemisphere Functions, Memory, Auditory Perception, Visual Perception
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McNamara, Ann Marie; Magidson, Phillip D.; Linster, Christiane; Wilson, Donald A.; Cleland, Thomas A. – Learning & Memory, 2008
Habituation is one of the oldest forms of learning, broadly expressed across sensory systems and taxa. Here, we demonstrate that olfactory habituation induced at different timescales (comprising different odor exposure and intertrial interval durations) is mediated by different neural mechanisms. First, the persistence of habituation memory is…
Descriptors: Persistence, Memory, Habituation, Brain
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Zong, Lin; Tanaka, Nobuaki K.; Ito, Kei; Davis, Ronald L.; Akalal, David-Benjamin G.; Wilson, Curtis F. – Learning & Memory, 2006
Olfactory learning assays in Drosophila have revealed that distinct brain structures known as mushroom bodies (MBs) are critical for the associative learning and memory of olfactory stimuli. However, the precise roles of the different neurons comprising the MBs are still under debate. The confusion surrounding the roles of the different neurons…
Descriptors: Memory, Associative Learning, Entomology, Sensory Experience
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Broadbent, Nicola J.; Squire, Larry R.; Clark, Robert E. – Learning & Memory, 2007
We explored the circumstances in which rats engage either declarative memory (and the hippocampus) or habit memory (and the dorsal striatum). Rats with damage to the hippocampus or dorsal striatum were given three different two-choice discrimination tasks (odor, object, and pattern). These tasks differed in the number of trials required for…
Descriptors: Memory, Discrimination Learning, Animals, Retention (Psychology)
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Brown, Richard E.; Wong, Aimee A. – Learning & Memory, 2007
We calculated visual ability in 13 strains of mice (129SI/Sv1mJ, A/J, AKR/J, BALB/cByJ, C3H/HeJ, C57BL/6J, CAST/EiJ, DBA/2J, FVB/NJ, MOLF/EiJ, SJL/J, SM/J, and SPRET/EiJ) on visual detection, pattern discrimination, and visual acuity and tested these and other mice of the same strains in a behavioral test battery that evaluated visuo-spatial…
Descriptors: Memory, Visual Acuity, Memorization, Animals
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Roullet, Florence; Lienard, Fabienne; Datiche, Frederique; Cattarelli, Martine – Learning & Memory, 2005
Fos protein immunodetection was used to investigate the neuronal activation elicited in some olfactory-related areas after either learning of an olfactory discrimination task or its reactivation 10 d later. Trained rats (T) progressively acquired the association between one odor of a pair and water-reward in a four-arm maze. Two groups of…
Descriptors: Memory, Brain, Discrimination Learning, Animals
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