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Showing 1 to 15 of 142 results Save | Export
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Vasudevan, Krithika; Ramanathan, Karthik R.; Vierkant, Valerie; Maren, Stephen – Learning & Memory, 2022
Recent data reveal that the thalamic nucleus reuniens (RE) has a critical role in the extinction of conditioned fear. Muscimol (MUS) infusions into the RE impair within-session extinction of conditioned freezing and result in poor long-term extinction memories in rats. Although this suggests that RE inactivation impairs extinction learning, it is…
Descriptors: Brain Hemisphere Functions, Conditioning, Fear, Animals
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Nagayoshi, Taikai; Ishikawa, Rie; Kida, Satoshi – Learning & Memory, 2022
Fear generalization is one of the main symptoms of posttraumatic stress disorder. In rodents, the anterior cingulate cortex (ACC) and the hippocampus (HPC) control the expression of contextual fear memory generalization. Consistently, ACC projections to the ventral HPC contribute to contextual fear generalization. However, the roles of ACC…
Descriptors: Brain Hemisphere Functions, Fear, Generalization, Animals
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Samifanni, Rojina; Zhao, Mudi; Cruz-Sanchez, Arely; Satheesh, Agarsh; Mumtaz, Unza; Arruda-Carvalho, Maithe – Learning & Memory, 2021
The ability to generate memories that persist throughout a lifetime (that is, memory persistence) emerges in early development across species. Although it has been shown that persistent fear memories emerge between late infancy and adolescence in mice, it is unclear exactly when this transition takes place, and whether two major fear conditioning…
Descriptors: Memory, Animals, Fear, Conditioning
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Hernández-Matias, Arturo; Bermúdez-Rattoni, Federico; Osorio-Gómez, Daniel – Learning & Memory, 2021
It has been reported that during chemotherapy treatment, some patients can experience nausea before pharmacological administration, suggesting that contextual stimuli are associated with the nauseating effects. There are attempts to reproduce with animal models the conditions under which this phenomenon is observed to provide a useful paradigm for…
Descriptors: Context Effect, Animals, Drug Therapy, Brain Hemisphere Functions
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Martin, Kiley; Musaus, Madeline; Navabpour, Shaghayegh; Gustin, Aspen; Ray, W. Keith; Helm, Richard F.; Jarome, Timothy J. – Learning & Memory, 2021
Strong evidence supports a role for protein degradation in fear memory formation. However, these data have been largely done in only male animals. Here, we found that following contextual fear conditioning, females, but not males, had increased levels of proteasome activity and K48 polyubiquitin protein targeting in the dorsal hippocampus, the…
Descriptors: Fear, Memory, Gender Differences, Animals
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Judd, Jessica M.; Smith, Elliot A.; Kim, Jinah; Shah, Vrishti; Sanabria, Federico; Conrad, Cheryl D. – Learning & Memory, 2020
Chronic stress typically leads to deficits in fear extinction when tested soon after chronic stress ends. Given the importance of extinction in updating fear memories, the current study examined whether fear extinction was impaired in rats that were chronically stressed and then given a break from the end of chronic stress to the start of fear…
Descriptors: Stress Variables, Fear, Memory, Cues
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Costa, Renan M.; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2020
Operant reward learning of feeding behavior in "Aplysia" increases the frequency and regularity of biting, as well as biases buccal motor patterns (BMPs) toward ingestion-like BMPs (iBMPs). The engram underlying this memory comprises cells that are part of a central pattern generating (CPG) circuit and includes increases in the intrinsic…
Descriptors: Memory, Brain Hemisphere Functions, Neurological Organization, Operant Conditioning
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Binder, Matthew S.; Kim, Andrew D.; Lugo, Joaquin N. – Learning & Memory, 2020
Memory deficits significantly decrease an individual's quality of life and are a pervasive comorbidity of epilepsy. Despite the various distinct processes of memory, the majority of epilepsy research has focused on seizures during the encoding phase of memory, therefore the effects of a seizure on other memory processes is relatively unknown. In…
Descriptors: Seizures, Memory, Neurological Impairments, Epilepsy
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Flavell, Charlotte R.; Gascoyne, Rebecca M.; Lee, Jonathan L. C. – Learning & Memory, 2020
The efficacy of pharmacological disruption of fear memory reconsolidation depends on several factors, including memory strength and age. We built on previous observations that systemic treatment with the nootropic nefiracetam potentiates cued fear memory destabilization to facilitate mifepristone-induced reconsolidation impairment. Here, we…
Descriptors: Fear, Drug Use, Memory, Age Differences
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da Silva, Thiago Rodrigues; Sohn, Jeferson Machado Batista; Andreatini, Roberto; Stern, Cristina Aparecida – Learning & Memory, 2020
Reconsolidation is a time-limited process under which reactivated memory content can be modified. Works focused on studying reconsolidation mainly restrict intervention to the moments immediately after reactivation and to recently acquired memories. However, the brain areas activated during memory retrieval depend on when it was acquired, and it…
Descriptors: Brain, Brain Hemisphere Functions, Fear, Memory
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Engin, Elif; Sigal, Maksim; Benke, Dietmar; Zeller, Anja; Rudolph, Uwe – Learning & Memory, 2020
Reduction in the expression or function of [alpha]5-subunit-containing GABA[subscript A] receptors ([alpha]5GABA[subscript A]Rs) leads to improvement in several hippocampus-dependent memory domains. However, studies thus far mostly lack anatomical specificity in terms of neuronal circuits and populations. We demonstrate that mice with a selective…
Descriptors: Brain Hemisphere Functions, Memory, Animals, Spatial Ability
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Opalka, Ashley N.; Wang, Dong V. – Learning & Memory, 2020
Learning and memory involves a large neural network of many brain regions, including the notable hippocampus along with the retrosplenial cortex (RSC) and lateral septum (LS). Previous studies have established that the dorsal hippocampus (dHPC) plays a critical role during the acquisition and retrieval/expression of episodic memories. However, the…
Descriptors: Learning Processes, Memory, Brain Hemisphere Functions, Fear
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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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Yang, Qizong; Antonov, Igor; Castillejos, David; Nagaraj, Anagha; Bostwick, Caleb; Kohn, Andrea; Moroz, Leonid; Hawkins, Robert D. – Learning & Memory, 2018
Long-term but not short-term memory and synaptic plasticity in many brain areas require neurotrophin signaling, transcription, and epigenetic mechanisms including DNA methylation. However, it has been difficult to relate these cellular mechanisms directly to behavior because of the immense complexity of the mammalian brain. To address that…
Descriptors: Memory, Animals, Genetics, Brain
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Quintana, Gonzalo R.; Jackson, Misha; Nasr, Mojdeh; Pfaus, James G. – Learning & Memory, 2018
Early experiences with sexual reward play a pivotal role in the formation of sexual behavior and partner preference. Associations of salient partner cues, or even neutral cues on a partner, with sexual reward states are a product of Pavlovian learning. However, the extent to which first experiences that associate a neutral stimulus with no…
Descriptors: Memory, Animals, Sexuality, Cues
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