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Sayegh, Fares; Herraiz, Laurie; Colom, Morgane; Lopez, Sébastien; Rampon, Claire; Dahan, Lionel – Learning & Memory, 2022
Dopamine participates in encoding memories and could either encode rewarding/aversive value of unconditioned stimuli or act as a novelty signal triggering contextual learning. Here we show that intraperitoneal injection of the dopamine D1/5R antagonist SCH23390 impairs contextual fear conditioning and tone-shock association, while intrahippocampal…
Descriptors: Cognitive Processes, Memory, Fear, Conditioning
Hellerstedt, Robin; Talmi, Deborah – Learning & Memory, 2022
Reward is thought to attenuate forgetting through the automatic effect of dopamine on hippocampal memory traces. Here we report a conceptual replication of previous results where we did not observe this effect of reward. Participants encoded eight lists of pictures and recalled picture content immediately or the next day. They were informed that…
Descriptors: Rewards, Recall (Psychology), Brain Hemisphere Functions, Memory
Park, Hyungju; Kaang, Bong-Kiun – Learning & Memory, 2019
Storage of long-term memory requires not only protein synthesis but also protein degradation. In this article, we overview recent publications related to this issue, stressing that the balanced actions of protein synthesis and degradation are critical for long-term memory formation. We particularly focused on the brain-derived neurotrophic factor…
Descriptors: Long Term Memory, Biochemistry, Brain, Cognitive Processes
Szollosi, Ágnes; Kéri, Szabolcs; Racsmány, Mihály – Learning & Memory, 2022
Some previous studies have shown that increased stress hormone levels have beneficial effects on memory encoding; however, there is no clear consensus on which encoding-related processes are affected by stress hormones. In the present study, we investigated the relationship between interindividual differences in neuroendocrine response to acute…
Descriptors: Memory, Cognitive Processes, Stress Variables, Recognition (Psychology)
Zerbes, Gundula; Schwabe, Lars – Learning & Memory, 2019
Successful episodic memory requires binding of event details across spatial and temporal gaps. The neural processes underlying mnemonic binding, however, are not fully understood. Moreover, although acute stress is known to modulate memory, if and how stress changes mnemonic integration across time and space is unknown. To elucidate these issues,…
Descriptors: Spatial Ability, Stress Variables, Cognitive Processes, Memory
Jia, Margaret; Travaglia, Alessio; Pollonini, Gabriella; Fedele, Giuseppe; Alberini, Cristina M. – Learning & Memory, 2018
The medial prefrontal cortex (mPFC) plays a critical role in complex brain functions including decision-making, integration of emotional, and cognitive aspects in memory processing and memory consolidation. Because relatively little is known about the molecular mechanisms underlying its development, we quantified rat mPFC basal expression levels…
Descriptors: Animals, Brain Hemisphere Functions, Biochemistry, Cognitive Processes
Ahmadiantehrani, Somayeh; Gores, Elisa O.; London, Sarah E. – Learning & Memory, 2018
Nonassociative learning is considered simple because it depends on presentation of a single stimulus, but it likely reflects complex molecular signaling. To advance understanding of the molecular mechanisms of one form of nonassociative learning, habituation, for ethologically relevant signals we examined song recognition learning in adult zebra…
Descriptors: Habituation, Associative Learning, Correlation, Singing
Campbell-Smith, Emma J.; Holmes, Nathan M.; Lingawi, Nura W.; Panayi, Marios C.; Westbrook, R. Frederick – Learning & Memory, 2015
The present study investigated how oxytocin (OT) signaling in the central (CeA) and basolateral (BLA) amygdala affects acquisition, expression, and extinction of context-conditioned fear (freezing) in rats. In the first set of experiments, acquisition of fear to a shocked context was impaired by a preconditioning infusion of synthetic OT into the…
Descriptors: Animals, Brain, Learning, Cognitive Processes
Merschbaecher, Katja; Hatko, Lucyna; Folz, Jennifer; Mueller, Uli – Learning & Memory, 2016
Acetylation of histones changes the efficiency of the transcription processes and thus contributes to the formation of long-term memory (LTM). In our comparative study, we used two inhibitors to characterize the contribution of different histone acetyl transferases (HATs) to appetitive associative learning in the honeybee. For one we applied…
Descriptors: Inhibition, Long Term Memory, Cognitive Processes, Comparative Analysis
Bowers, Mallory E.; Xia, Bing; Carreiro, Samantha; Ressler, Kerry J. – Learning & Memory, 2015
Evidence indicates that broad, nonspecific histone deacetylase (HDAC) inhibition enhances learning and memory, however, the contribution of the various HDACs to specific forms of learning is incompletely understood. Here, we show that the Class I HDAC inhibitor, RGFP963, enhances consolidation of cued fear extinction. However, RGFP966, a strong…
Descriptors: Inhibition, Memory, Cues, Cognitive Processes
Gazarini, Lucas; Stern, Cristina A. Jark; Carobrez, Antonio P.; Bertoglio, Leandro J. – Learning & Memory, 2013
Consolidation and reconsolidation are phases of memory stabilization that diverge slightly. Noradrenaline is known to influence both processes, but the relative contribution of alpha1- and beta-adrenoceptors is unclear. The present study sought to investigate this matter by comparing their recruitment to consolidate and/or reconsolidate a…
Descriptors: Memory, Fear, Generalization, Biochemistry
Connor, Steven A.; Maity, Sabyasachi; Roy, Birbickram; Ali, Declan W.; Nguyen, Peter V. – Learning & Memory, 2012
Encoding new information requires dynamic changes in synaptic strength. The brain can boost synaptic plasticity through the secretion of neuromodulatory substances, including acetylcholine and noradrenaline. Considerable effort has focused on elucidating how neuromodulatory substances alter synaptic properties. However, determination of the…
Descriptors: Animals, Cognitive Processes, Brain, Biochemistry
Navakkode, Sheeja; Sajikumar, Sreedharan; Korte, Martin; Soong, Tuck Wah – Learning & Memory, 2012
The dopaminergic modulation of long-term potentiation (LTP) has been studied well, but the mechanism by which dopamine induces LTP (DA-LTP) in CA1 pyramidal neurons is unknown. Here, we report that DA-LTP in basal dendrites is dependent while in apical dendrites it is independent of activation of L-type voltage-gated calcium channels (VDCC).…
Descriptors: Basal Reading, Logical Thinking, Neurological Organization, Cognitive Processes
Sanderson, David J.; Sprengel, Rolf; Seeburg, Peter H.; Bannerman, David M. – Learning & Memory, 2011
Deletion of the GluA1 AMPA receptor subunit selectively impairs short-term memory for spatial locations. We further investigated this deficit by examining memory for discrete nonspatial visual stimuli in an operant chamber. Unconditioned suppression of magazine responding to visual stimuli was measured in wild-type and GluA1 knockout mice.…
Descriptors: Short Term Memory, Biochemistry, Visual Stimuli, Animals
Truchet, Bruno; Manrique, Christine; Sreng, Leam; Chaillan, Franck A.; Roman, Francois S.; Mourre, Christiane – Learning & Memory, 2012
Kv4 channels regulate the backpropagation of action potentials (b-AP) and have been implicated in the modulation of long-term potentiation (LTP). Here we showed that blockade of Kv4 channels by the scorpion toxin AmmTX3 impaired reference memory in a radial maze task. In vivo, AmmTX3 intracerebroventricular (i.c.v.) infusion increased and…
Descriptors: Neurology, Memory, Brain, Cognitive Processes

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