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Craig, Michael; Knowles, Christopher; Hill, Stephanie; Dewar, Michaela – Learning & Memory, 2021
Awake quiescence immediately after encoding is conducive to episodic memory consolidation. Retrieval can render episodic memories labile again, but reconsolidation can modify and restrengthen them. It remained unknown whether awake quiescence after retrieval supports episodic memory reconsolidation. We sought to examine this question via an…
Descriptors: Memory, Cognitive Processes, Recall (Psychology), Task Analysis
Derouet, Joffrey; Droit-Volet, Sylvie; Doyère, Valérie – Learning & Memory, 2021
The present study evaluates the updating of long-term memory for duration. After learning a temporal discrimination associating one lever with a standard duration (4 sec) and another lever with both a shorter (1-sec) and a longer (16-sec) duration, rats underwent a single session for learning a new standard duration. The temporal generalization…
Descriptors: Memory, Cognitive Processes, Time Factors (Learning), Task Analysis
Reichelt, Amy C.; Morris, Margaret J.; Westbrook, Reginald Frederick – Learning & Memory, 2016
High sugar diets reduce hippocampal neurogenesis, which is required for minimizing interference between memories, a process that involves "pattern separation." We provided rats with 2 h daily access to a sucrose solution for 28 d and assessed their performance on a spatial memory task. Sucrose consuming rats discriminated between objects…
Descriptors: Animals, Spatial Ability, Control Groups, Memory
Wang, Szu-Han; Tse, Dorothy; Morris, Richard G. M. – Learning & Memory, 2012
In humans and in animals, mental schemas can store information within an associative framework that enables rapid and efficient assimilation of new information. Using a hippocampal-dependent paired-associate task, we now report that the anterior cingulate cortex is part of a neocortical network of schema storage with NMDA receptor-mediated…
Descriptors: Animals, Learning Processes, Human Body, Brain
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