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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
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Forrest, Charlotte L. D.; Monsell, Stephen; McLaren, Ian P. L. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2014
Task-cuing experiments are usually intended to explore control of task set. But when small stimulus sets are used, they plausibly afford learning of the response associated with a combination of cue and stimulus, without reference to tasks. In 3 experiments we presented the typical trials of a task-cuing experiment: a cue (colored shape) followed,…
Descriptors: Experimental Psychology, Cues, Visual Stimuli, Color
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Murphy, Brian; Poesio, Massimo; Bovolo, Francesca; Bruzzone, Lorenzo; Dalponte, Michele; Lakany, Heba – Brain and Language, 2011
Achieving a clearer picture of categorial distinctions in the brain is essential for our understanding of the conceptual lexicon, but much more fine-grained investigations are required in order for this evidence to contribute to lexical research. Here we present a collection of advanced data-mining techniques that allows the category of individual…
Descriptors: Intervals, Semantics, Cognitive Processes, Brain Hemisphere Functions
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Matzel, Louis D.; Light, Kenneth R.; Wass, Christopher; Colas-Zelin, Danielle; Denman-Brice, Alexander; Waddel, Adam C.; Kolata, Stefan – Learning & Memory, 2011
Learning, attentional, and perseverative deficits are characteristic of cognitive aging. In this study, genetically diverse CD-1 mice underwent longitudinal training in a task asserted to tax working memory capacity and its dependence on selective attention. Beginning at 3 mo of age, animals were trained for 12 d to perform in a dual radial-arm…
Descriptors: Animals, Cues, Intervals, Training
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Sanderson, David J.; Good, Mark A.; Skelton, Kathryn; Sprengel, Rolf; Seeburg, Peter H.; Rawlins, J. Nicholas P.; Bannerman, David M. – Learning & Memory, 2009
The GluA1 AMPA receptor subunit is a key mediator of hippocampal synaptic plasticity and is especially important for a rapidly-induced, short-lasting form of potentiation. GluA1 gene deletion impairs hippocampus-dependent, spatial working memory, but spares hippocampus-dependent spatial reference memory. These findings may reflect the necessity of…
Descriptors: Animals, Intervals, Short Term Memory, Long Term Memory
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Yoon, Taejib; Okada, Jeffrey; Jung, Min W.; Kim, Jeansok J. – Learning & Memory, 2008
Both the medial prefrontal cortex (mPFC) and hippocampus are implicated in working memory tasks in rodents. Specifically, it has been hypothesized that the mPFC is primarily engaged in the temporary storage and processing of information lasting from a subsecond to several seconds, while the hippocampal function becomes more critical as the working…
Descriptors: Intervals, Memory, Brain Hemisphere Functions, Brain
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Jozefowiez, J.; Staddon, J. E. R.; Cerutti, D. T. – Psychological Review, 2009
The authors propose a simple behavioral economic model (BEM) describing how reinforcement and interval timing interact. The model assumes a Weber-law-compliant logarithmic representation of time. Associated with each represented time value are the payoffs that have been obtained for each possible response. At a given real time, the response with…
Descriptors: Intervals, Metacognition, Reinforcement, Time
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McNally, Gavan P.; Augustyn, Katarzyna A.; Richardson, Rick – Learning & Memory, 2008
Four experiments studied the role of GABA[subscript A] receptors in the temporal dynamics of memory retention. Memory for an active avoidance response was a nonmonotonic function of the retention interval. When rats were tested shortly (2 min) or some time (24 h) after training, retention was excellent, but when they were tested at intermediate…
Descriptors: Intervals, Memory, Brain, Neurological Organization
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Wright, Anthony A. – Journal of the Experimental Analysis of Behavior, 2007
Rhesus monkeys were trained and tested in visual and auditory list-memory tasks with sequences of four travel pictures or four natural/environmental sounds followed by single test items. Acquisitions of the visual list-memory task are presented. Visual recency (last item) memory diminished with retention delay, and primacy (first item) memory…
Descriptors: Memory, Test Items, Familiarity, Inhibition
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Cheng, Ruey-Kuang; Meck, Warren H.; Williams, Christina L. – Learning & Memory, 2006
We previously showed that prenatal choline supplementation could increase the precision of timing and temporal memory and facilitate simultaneous temporal processing in mature and aged rats. In the present study, we investigated the ability of adult rats to selectively control the reinforcement-induced resetting of an internal clock as a function…
Descriptors: Memory, Prenatal Influences, Organizational Change, Animals
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Ragozzino, Michael E.; Choi, Daniel – Learning & Memory, 2004
The present studies explored the role of the medial striatum in learning when task contingencies change. Experiment 1 examined whether the medial striatum is involved in place reversal learning. Testing occurred in a modified cross-maze across two consecutive sessions. Injections of the local anesthetic, bupivacaine, into the medial striatum, did…
Descriptors: Nonverbal Learning, Biochemistry, Neurological Impairments, Behavioral Science Research
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Bolding, Kevin; Rudy, Jerry W. – Learning & Memory, 2006
Although the Morris water task has been used in hundreds of studies of place learning, there have been no systematic studies of retention of the place memory. We report that retention, as measured by selective search behavior on a probe trial, is excellent when the retention interval is short (5-10 min). However, performance rapidly deteriorates,…
Descriptors: Cognitive Processes, Intervals, Retention (Psychology), Nonverbal Learning
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Ward, Ryan D.; Odum, Amy L. – Journal of the Experimental Analysis of Behavior, 2005
Discrepant effects of drugs on behavior maintained by temporal-discrimination procedures make conclusive statements about the neuropharmacological bases of timing difficult. The current experiment examined the possible contribution of a general, drug-induced disruption of stimulus control. Four pigeons responded on a three-component multiple…
Descriptors: Drug Use, Intervals, Disabilities, Pharmacology
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Hebda-Bauer, Elaine K.; Watson, Stanley J.; Akil, Huda – Learning & Memory, 2005
The impact of a previously successful or unsuccessful experience on the subsequent acquisition of a related task is not well understood. The nature of past experience may have even greater impact in individuals with learning deficits, as their cognitive processes can be easily disrupted. Mice with a targeted disruption of the [alpha] and [delta]…
Descriptors: Memory, Learning Experience, Intervals, Animals