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Liao, Ming-Ray; Anderson, Brian A. – Learning & Memory, 2020
Previously reward-associated stimuli persistently capture attention. We attempted to extinguish this attentional bias through a reversal learning procedure where the high-value color changed unexpectedly. Attentional priority shifted during training in favor of the currently high-value color, although a residual bias toward the original high-value…
Descriptors: Learning Processes, Rewards, Color, Task Analysis
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Grégoire, Laurent; Anderson, Brian A. – Learning & Memory, 2019
This study aimed to determine whether attentional prioritization of stimuli associated with reward transfers across conceptual knowledge independently of physical features. Participants successively performed two color-word Stroop tasks. In the learning phase, neutral words were associated with high, low, or no monetary reward. In the…
Descriptors: Correlation, Rewards, Comparative Analysis, Color
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Reichelt, Amy C.; Killcross, Simon; Hambly, Luke D.; Morris, Margaret J.; Westbrook, R. Fred – Learning & Memory, 2015
In this study we sought to determine the effect of daily sucrose consumption in young rats on their subsequent performance in tasks that involve the prefrontal cortex and hippocampus. High levels of sugar consumption have been associated with the development of obesity, however less is known about how sugar consumption influences behavioral…
Descriptors: Adolescents, Animals, Task Analysis, Brain Hemisphere Functions
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Mota, Theo; Giurfa, Martin; Sandoz, Jean-Christophe – Learning & Memory, 2011
A sophisticated form of nonelemental learning is provided by occasion setting. In this paradigm, animals learn to disambiguate an uncertain conditioned stimulus using alternative stimuli that do not enter into direct association with the unconditioned stimulus. For instance, animals may learn to discriminate odor rewarded from odor nonrewarded…
Descriptors: Animals, Stimuli, Entomology, Color
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Brembs, Bjorn; Wiener, Jan – Learning & Memory, 2006
In a permanently changing environment, it is by no means an easy task to distinguish potentially important events from negligible ones. Yet, to survive, every animal has to continuously face that challenge. How does the brain accomplish this feat? Building on previous work in "Drosophila melanogaster" visual learning, we have developed an…
Descriptors: Memory, Methods, Cues, Visual Stimuli