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Honda, Takato – Learning & Memory, 2022
Neural network dynamics underlying flexible animal behaviors remain elusive. The fruit fly "Drosophila" melanogaster is considered an excellent model in behavioral neuroscience because of its simple neuroanatomical architecture and the availability of various genetic methods. Moreover, "Drosophila" larvae's transparent body…
Descriptors: Neurological Organization, Animals, Neurosciences, Behavior
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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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Millin, Paula M.; Riccio, David C. – Learning & Memory, 2019
This paper examines recent evidence from behavioral and neuroscience research with nonhuman animals that suggests the intriguing possibility that they, like their human counterparts, are vulnerable to creating false memories. Once considered a uniquely human memory phenomenon, the creation of false memories in lower animals can be seen especially…
Descriptors: Memory, Animals, Trauma, Deception
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Papatheodoropoulos, Costas; Kouvaros, Stylianos – Learning & Memory, 2016
The ability of the ventral hippocampus (VH) for long-lasting long-term potentiation (LTP) and the mechanisms underlying its lower ability for shortlasting LTP compared with the dorsal hippocampus (DH) are unknown. Using recordings of field excitatory postsynaptic potentials (EPSPs) from the CA1 field of adult rat hippocampal slices, we found that…
Descriptors: Brain, Neurosciences, Stimulation, Animals
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Yu, Yang-Jung; Huang, Chien-Hsuan; Chang, Chih-Hua; Gean, Po-Wu – Learning & Memory, 2016
Destabilization refers to a memory that becomes unstable when reactivated and is susceptible to disruption by amnestic agents. Here we delineated the cellular mechanism underlying the destabilization of drug memory. Mice were conditioned with methamphetamine (MeAM) for 3 d, and drug memory was assessed with a conditioned place preference (CPP)…
Descriptors: Stimulants, Memory, Animals, Brain
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Tayler, Kaycie K.; Wiltgen, Brian J. – Learning & Memory, 2013
According to the standard model of systems consolidation (SMC), neocortical circuits are reactivated during the retrieval of declarative memories. This process initially requires the hippocampus. However, with the passage of time, neocortical circuits become strengthened and can eventually retrieve memory without input from the hippocampus.…
Descriptors: Brain, Memory, Neurosciences, Neurological Organization
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Zovkic, Iva B.; Guzman-Karlsson, Mikael C.; Sweatt, J. David – Learning & Memory, 2013
Understanding the cellular and molecular mechanisms underlying the formation and maintenance of memories is a central goal of the neuroscience community. It is well regarded that an organism's ability to lastingly adapt its behavior in response to a transient environmental stimulus relies on the central nervous system's capability for structural…
Descriptors: Memory, Learning, Genetics, Brain
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Silva, Alcino J.; Müller, Klaus-Robert – Learning & Memory, 2015
The sheer volume and complexity of publications in the biological sciences are straining traditional approaches to research planning. Nowhere is this problem more serious than in molecular and cellular cognition, since in this neuroscience field, researchers routinely use approaches and information from a variety of areas in neuroscience and other…
Descriptors: Molecular Biology, Molecular Structure, Neurosciences, Neurology