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Bi, Ai-Ling; Wang, Yue; Li, Bo-Qin; Wang, Qian-Qian; Ma, Ling; Yu, Hui; Zhao, Ling; Chen, Zhe-Yu – Learning & Memory, 2010
Actin rearrangement plays an essential role in learning and memory; however, the spatial and temporal regulation of actin dynamics in different phases of associative memory has not been fully understood. Here, using the conditioned taste aversion (CTA) paradigm, we investigated the region-specific involvement of actin rearrangement-related…
Descriptors: Inhibition, Short Term Memory, Long Term Memory, Models
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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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Graff, Johannes; Koshibu, Kyoko; Jouvenceau, Anne; Dutar, Patrick; Mansuy, Isabelle M. – Learning & Memory, 2010
Gene transcription is essential for the establishment and the maintenance of long-term memory (LTM) and for long-lasting forms of synaptic plasticity. The molecular mechanisms that control gene transcription in neuronal cells are complex and recruit multiple signaling pathways in the cytoplasm and the nucleus. Protein kinases (PKs) and…
Descriptors: Long Term Memory, Memorization, Brain, Neurological Organization
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Zhang, Yili; Smolen, Paul; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2010
Memory consolidation and reconsolidation require kinase activation and protein synthesis. Blocking either process during or shortly after training or recall disrupts memory stabilization, which suggests the existence of a critical time window during which these processes are necessary. Using a computational model of kinase synthesis and…
Descriptors: Inhibition, Genetics, Memory, Brain
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Tunur, Tumay; Dohanich, Gary P.; Schrader, Laura A. – Learning & Memory, 2010
The multiple memory systems hypothesis proposes that different types of learning strategies are mediated by distinct neural systems in the brain. Male and female mice were tested on a water plus-maze task that could be solved by either a place or response strategy. One group of mice was pre-exposed to the same context as training and testing (PTC)…
Descriptors: Animals, Learning Strategies, Cognitive Processes, Brain
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Federman, Noel; Fustinana, Maria Sol; Romano, Arturo – Learning & Memory, 2009
Gene expression is a key process for memory consolidation. Recently, the participation of epigenetic mechanisms like histone acetylation was evidenced in long-term memories. However, until now the training strength required and the persistence of the chromatin acetylation recruited are not well characterized. Here we studied whether histone…
Descriptors: Long Term Memory, Educational Change, Cognitive Processes, Training
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Verbitsky, Miguel; Yonan, Amanda L.; Malleret, Gael; Kandel, Eric R.; Gilliam, T. Conrad; Pavlidis, Paul – Learning & Memory, 2004
We have carried out a global survey of age-related changes in mRNA levels in the 57BL/6NIA mouse hippocampus and found a difference in the hippocampal gene expression profile between 2-month-old young mice and 15-month-old middle-aged mice correlated with an age-related cognitive deficit in hippocampal-based explicit memory formation. Middle-aged…
Descriptors: Profiles, Animals, Memory, Brain Hemisphere Functions