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Sekeres, Melanie J.; Moscovitch, Morris; Grady, Cheryl L.; Sullens, D. Gregory; Winocur, Gordon – Learning & Memory, 2020
Conditioned fear memories that are context-specific shortly after conditioning generalize over time. We exposed rats to a context reminder 30 d after conditioning, which served to reinstate context-specificity, and investigated how this reminder alters retrieval-induced activity in the hippocampus and anterior cingulate cortex (aCC) relative to a…
Descriptors: Memory, Animals, Brain Hemisphere Functions, Conditioning
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Kats, Ilona R.; Klann, Eric – Learning & Memory, 2019
Formation of eukaryotic initiation factor 4F (eIF4F) is widely considered to be the rate-limiting step in cap-dependent translation initiation. Components of eIF4F are often up-regulated in various cancers, and much work has been done to elucidate the role of each of the translation initiation factors in cancer cell growth and survival. In fact,…
Descriptors: Cancer, Brain, Biochemistry, Cytology
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Allen, Brian D.; Singer, Annabelle C.; Boyden, Edward S. – Learning & Memory, 2015
Over the last decade, there has been much excitement about the use of optogenetic tools to test whether specific cells, regions, and projection pathways are necessary or sufficient for initiating, sustaining, or altering behavior. However, the use of such tools can result in side effects that can complicate experimental design or interpretation.…
Descriptors: Genetics, Experiments, Behavioral Science Research, Research Design
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Tabone, Christopher J.; de Belle, J. Steven – Learning & Memory, 2011
Associative conditioning in "Drosophila melanogaster" has been well documented for several decades. However, most studies report only simple associations of conditioned stimuli (CS, e.g., odor) with unconditioned stimuli (US, e.g., electric shock) to measure learning or establish memory. Here we describe a straightforward second-order conditioning…
Descriptors: Stimuli, Conditioning, Associative Learning, Memory
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Philips, Gary T.; Sherff, Carolyn M.; Menges, Steven A.; Carew, Thomas J. – Learning & Memory, 2011
The defensive withdrawal reflexes of "Aplysia californica" have provided powerful behavioral systems for studying the cellular and molecular basis of memory formation. Among these reflexes the (T-TWR) has been especially useful. In vitro studies examining the monosynaptic circuit for the T-TWR, the tail sensory-motor (SN-MN) synapses, have…
Descriptors: Memory, Genetics, Animals, Neurological Organization
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Papper, Marc; Kempter, Richard; Leibold, Christian – Learning & Memory, 2011
Long-term synaptic plasticity exhibits distinct phases. The synaptic tagging hypothesis suggests an early phase in which synapses are prepared, or "tagged," for protein capture, and a late phase in which those proteins are integrated into the synapses to achieve memory consolidation. The synapse specificity of the tags is consistent with…
Descriptors: Genetics, Memory, Rewards, Cognitive Processes
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Haettig, Jakob; Stefanko, Daniel P.; Multani, Monica L.; Figueroa, Dario X.; McQuown, Susan C.; Wood, Marcelo A. – Learning & Memory, 2011
Transcription of genes required for long-term memory not only involves transcription factors, but also enzymatic protein complexes that modify chromatin structure. Chromatin-modifying enzymes, such as the histone acetyltransferase (HAT) CREB (cyclic-AMP response element binding) binding protein (CBP), are pivotal for the transcriptional regulation…
Descriptors: Inhibition, Brain Hemisphere Functions, Long Term Memory, Spatial Ability
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Kubik, Stepan; Miyashita, Teiko; Guzowski, John F. – Learning & Memory, 2007
Different functions have been suggested for the hippocampus and its subdivisions along both transversal and longitudinal axes. Expression of immediate-early genes (IEGs) has been used to map specific functions onto neuronal activity in different areas of the brain including the hippocampus (IEG imaging). Here we review IEG studies on hippocampal…
Descriptors: Intervention, Inhibition, Memory, Brain
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Zearfoss, N. Ruth; Richter, Joel D.; Berger-Sweeney, Joanne – Learning & Memory, 2006
CPEB is a sequence-specific RNA binding protein that regulates translation at synapses. In neurons of CPEB knockout mice, synaptic efficacy is reduced. Here, we have performed a battery of behavioral tests and find that relative to wild-type animals, CPEB knockout mice, although similar on many baseline behaviors, have reduced extinction of…
Descriptors: Neurological Organization, Animal Behavior, Task Analysis, Cytology