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Showing 1 to 15 of 49 results Save | Export
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Dunn, Tyler W.; Sossin, Wayne S. – Learning & Memory, 2021
A more thorough description of the changes in synaptic strength underlying synaptic plasticity may be achieved with quantal resolution measurements at individual synaptic sites. Here, we demonstrate that by using a membrane targeted genetic calcium sensor, we can measure quantal synaptic events at the individual synaptic sites of…
Descriptors: Neurological Organization, Animals, Measurement, Memory
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Jones, Samuel David; Brandt, Silke – Cognitive Science, 2020
High phonological neighborhood density has been associated with both advantages and disadvantages in early word learning. High density may support the formation and fine-tuning of new word sound memories--a process termed lexical configuration (e.g., Storkel, 2004). However, new high-density words are also more likely to be misunderstood as…
Descriptors: Emergent Literacy, Vocabulary Development, Toddlers, Phonology
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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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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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Kitamura, Takashi; Macdonald, Christopher J.; Tonegawa, Susumu – Learning & Memory, 2015
The entorhinal cortex (EC)-hippocampal (HPC) network plays an essential role for episodic memory, which preserves spatial and temporal information about the occurrence of past events. Although there has been significant progress toward understanding the neural circuits underlying the spatial dimension of episodic memory, the relevant circuits…
Descriptors: Brain Hemisphere Functions, Memory, Neurological Organization, Time
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Kim, Eun Joo; Pellman, Blake; Kim, Jeansok J. – Learning & Memory, 2015
Uncontrollable stress has been recognized to influence the hippocampus at various levels of analysis. Behaviorally, human and animal studies have found that stress generally impairs various hippocampal-dependent memory tasks. Neurally, animal studies have revealed that stress alters ensuing synaptic plasticity and firing properties of hippocampal…
Descriptors: Stress Variables, Brain Hemisphere Functions, Animals, Memory
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Frick, Karyn M.; Kim, Jaekyoon; Tuscher, Jennifer J.; Fortress, Ashley M. – Learning & Memory, 2015
Ample evidence has demonstrated that sex steroid hormones, such as the potent estrogen 17ß-estradiol (E[subscript 2]), affect hippocampal morphology, plasticity, and memory in male and female rodents. Yet relatively few investigators who work with male subjects consider the effects of these hormones on learning and memory. This review describes…
Descriptors: Metabolism, Brain Hemisphere Functions, Gender Differences, Animals
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Schacher, Samuel; Hu, Jiang-Yuan – Learning & Memory, 2014
An important cellular mechanism contributing to the strength and duration of memories is activity-dependent alterations in the strength of synaptic connections within the neural circuit encoding the memory. Reversal of the memory is typically correlated with a reversal of the cellular changes to levels expressed prior to the stimulation. Thus, for…
Descriptors: Brain Hemisphere Functions, Stimuli, Molecular Structure, Neurological Organization
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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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Li, Stella; Callaghan, Bridget L.; Richardson, Rick – Learning & Memory, 2014
Unlike adult memories that can be remembered for many years, memories that are formed early in life are more fragile and susceptible to being forgotten (a phenomenon known as "infantile" or "childhood" amnesia). Nonetheless, decades of research in both humans and nonhuman animals demonstrate the importance of early life…
Descriptors: Memory, Infants, Child Development, Recall (Psychology)
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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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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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Guven-Ozkan, Tugba; Davis, Ronald L. – Learning & Memory, 2014
New approaches, techniques and tools invented over the last decade and a half have revolutionized the functional dissection of neural circuitry underlying "Drosophila" learning. The new methodologies have been used aggressively by researchers attempting to answer three critical questions about olfactory memories formed with appetitive…
Descriptors: Animals, Olfactory Perception, Neurological Organization, Memory
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Kopec, Ashley M.; Carew, Thomas J. – Learning & Memory, 2013
Growth factor (GF) signaling is critically important for developmental plasticity. It also plays a crucial role in adult plasticity, such as that required for memory formation. Although different GFs interact with receptors containing distinct types of kinase domains, they typically signal through converging intracellular cascades (e.g.,…
Descriptors: Brain, Neurological Organization, Adults, Memory
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Parkel, Sven; Lopez-Atalaya, Jose P.; Barco, Angel – Learning & Memory, 2013
Recent research indicates that epigenetic mechanisms and, in particular, the post-translational modification (PTM) of histones may contribute to memory encoding and storage. Among the dozens of possible histone PTMs, the methylation/demethylation of lysines in the N-terminal tail of histone H3 exhibits particularly strong links with cognitive…
Descriptors: Mental Retardation, Metabolism, Memory, Cognitive Ability
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