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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
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Gobin, Christina; Wu, Lizhen; Schwendt, Marek – Learning & Memory, 2020
The delayed match-to-sample task (DMS) is used to probe working memory (WM) across species. While the involvement of the PFC in this task has been established, limited information exists regarding the recruitment of broader circuitry, especially under the low- versus high-WM load. We sought to address this question by using a variable-delay…
Descriptors: Animals, Short Term Memory, Brain Hemisphere Functions, Training
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Ammassari-Teule, Martine – Learning & Memory, 2020
Largely inspired from clinical concepts like brain reserve, cognitive reserve, and neural compensation, here we review data showing how neural circuits reorganize in presymptomatic and early symptomatic hAPP mice to maintain memory intact. By informing on molecular alterations and compensatory adaptations which take place in the brain before mice…
Descriptors: Brain, Cognitive Processes, Neurological Organization, Animals
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Arkell, Daisy; Groves, Isabelle; Wood, Emma R.; Hardt, Oliver – Learning & Memory, 2021
Reducing sensory experiences during the period that immediately follows learning improves long-term memory retention in healthy humans, and even preserves memory in patients with amnesia. To date, it is entirely unclear why this is the case, and identifying the neurobiological mechanisms underpinning this effect requires suitable animal models,…
Descriptors: Sensory Experience, Long Term Memory, Learning, Neurological Organization
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Baram, Tallie Z.; Donato, Flavio; Holmes, Gregory L. – Learning & Memory, 2019
Spatial memory, the aspect of memory involving encoding and retrieval of information regarding one's environment and spatial orientation, is a complex biological function incorporating multiple neuronal networks. Hippocampus-dependent spatial memory is not innate and emerges during development in both humans and rodents. In children,…
Descriptors: Memory, Spatial Ability, Cognitive Processes, Neurological Organization
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Davies, Don A.; Greba, Quentin; Selk, Jantz C.; Catton, Jillian K.; Baillie, Landon D.; Mulligan, Sean J.; Howland, John G. – Learning & Memory, 2017
Working memory is involved in the maintenance and manipulation of information essential for complex cognition. While the neural substrates underlying working memory capacity have been studied in humans, considerably less is known about the circuitry mediating working memory capacity in rodents. Therefore, the present experiments tested the…
Descriptors: Short Term Memory, Animals, Cognitive Processes, Neurological Organization
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Vernon, Jeffrey; Irvine, Elaine E.; Peters, Marco; Jeyabalan, Jeshmi; Giese, K. Peter – Learning & Memory, 2016
Phosphorylation is a ubiquitous post-translational modification of proteins, and a known physiological regulator of K[superscript +] channel function. Phosphorylation of K[superscript +] channels by kinases has long been presumed to regulate neuronal processing and behavior. Although circumstantial evidence has accumulated from behavioral studies…
Descriptors: Physiology, Neurological Organization, Cognitive Processes, Genetics
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Maity, Sabyasachi; Rah, Sean; Sonenberg, Nahum; Gkogkas, Christos G.; Nguyen, Peter V. – Learning & Memory, 2015
Norepinephrine (NE) is a key modulator of synaptic plasticity in the hippocampus, a brain structure crucially involved in memory formation. NE boosts synaptic plasticity mostly through initiation of signaling cascades downstream from beta (ß)-adrenergic receptors (ß-ARs). Previous studies demonstrated that a ß-adrenergic receptor agonist,…
Descriptors: Brain Hemisphere Functions, Memory, Animals, Stimulation
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O'Dell, Thomas J.; Connor, Steven A.; Guglietta, Ryan; Nguyen, Peter V. – Learning & Memory, 2015
Encoding new information in the brain requires changes in synaptic strength. Neuromodulatory transmitters can facilitate synaptic plasticity by modifying the actions and expression of specific signaling cascades, transmitter receptors and their associated signaling complexes, genes, and effector proteins. One critical neuromodulator in the…
Descriptors: Cognitive Processes, Brain, Neurological Organization, Animals
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Luo, Minmin; Zhou, Jingfeng; Liu, Zhixiang – Learning & Memory, 2015
The dorsal raphe nucleus (DRN) represents one of the most sensitive reward sites in the brain. However, the exact relationship between DRN neuronal activity and reward signaling has been elusive. In this review, we will summarize anatomical, pharmacological, optogenetics, and electrophysiological studies on the functions and circuit mechanisms of…
Descriptors: Brain Hemisphere Functions, Neurological Organization, Rewards, Anatomy
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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
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Cullen, Patrick K.; Dulka, Brooke N.; Ortiz, Samantha; Riccio, David C.; Jasnow, Aaron M. – Learning & Memory, 2014
Though much attention has been given to the neural structures that underlie the long-term consolidation of contextual memories, little is known about the mechanisms responsible for the maintenance of memory precision. Here, we demonstrate a rapid time-dependent decline in memory precision in GABA [subscript B(1a)] receptor knockout mice. First, we…
Descriptors: Inhibition, Long Term Memory, Cognitive Psychology, Neurological Organization
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Jarome, Timothy J.; Kwapis, Janine L.; Hallengren, Jada J.; Wilson, Scott M.; Helmstetter, Fred J. – Learning & Memory, 2014
Numerous studies have suggested a role for ubiquitin-proteasome-mediated protein degradation in learning-dependent synaptic plasticity; however, very little is known about how protein degradation is regulated at the level of the proteasome during memory formation. The ubiquitin-specific protease 14 (USP14) is a proteasomal deubiquitinating enzyme…
Descriptors: Cognitive Processes, Cognitive Psychology, Brain Hemisphere Functions, Inhibition
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Kondo, Makoto; Nakamura, Yukiko; Ishida, Yusuke; Yamada, Takahiro; Shimada, Shoichi – Learning & Memory, 2014
The 5-HT [subscript 3] receptor, the only ionotropic 5-HT receptor, is expressed in limbic regions, including the hippocampus, amygdala, and cortex. However, it is not known whether it has a role in fear memory processes. Analysis of 5-HT [subscript 3A] receptor knockout mice in fear conditioning paradigms revealed that the 5-HT [subscript 3A]…
Descriptors: Fear, Memory, Cognitive Psychology, Cognitive Processes
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Kwon, Jeong-Tae; Nakajima, Ryuichi; Hyung-Su, Kim; Jeong, Yire; Augustine, George J.; Han, Jin-Hee – Learning & Memory, 2014
In Pavlovian fear conditioning, the lateral amygdala (LA) has been highlighted as a key brain site for association between sensory cues and aversive stimuli. However, learning-related changes are also found in upstream sensory regions such as thalamus and cortex. To isolate the essential neural circuit components for fear memory association, we…
Descriptors: Conditioning, Brain Hemisphere Functions, Sensory Experience, Cues
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