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Moscarello, Justin M. – Learning & Memory, 2020
Signaled active avoidance (SAA) behavior requires the suppression of defensive reactions, such as freezing, that conflict with the avoidance response. The neural mechanisms of this inhibitory process are not well understood. Here, we demonstrate that ventromedial prefrontal cortex projections to the nucleus reuniens of the thalamus are recruited…
Descriptors: Brain Hemisphere Functions, Coping, Responses, Inhibition
Nieto, Javier; Mason, Tere A.; Bernal-Gamboa, Rodolfo; Uengoer, Metin – Learning & Memory, 2020
In two instrumental conditioning experiments with rats, we examined the impacts of acquisition and extinction cues on ABC renewal of instrumental behavior. Animals were reinforced with food for lever pressing in one context, followed by extinction of the response in a second one. Presentations of a brief tone accompanied extinction in Experiment 1…
Descriptors: Cues, Conditioning, Animals, Animal Behavior
Mihaylova, Mariela; Vuilleumier, Patrik; Rimmele, Ulrike – Learning & Memory, 2019
Why we remember emotional events with an increased subjective sense of remembering (SSR) is unclear. SSR for neutral events is linked to memory for various kinds of details. Using the Remember/Know paradigm, participants provided written justifications of their Remember responses indicating what they specifically recollected about a negative or…
Descriptors: Memory, Emotional Response, Pictorial Stimuli, Photography
Krypotos, Angelos-Miltiadis; Moscarello, Justin M.; Sears, Robert M.; LeDoux, Joseph E.; Galatzer-Levy, Isaac – Learning & Memory, 2018
Signaled active avoidance (SigAA) is the key experimental procedure for studying the acquisition of instrumental responses toward conditioned threat cues. Traditional analytic approaches (e.g., general linear model) often obfuscate important individual differences, although individual differences in learned responses characterize both animal and…
Descriptors: Conditioning, Cues, Responses, Individual Differences
Piantadosi, Patrick T.; Lieberman, Abby G.; Pickens, Charles L.; Bergstrom, Hadley C.; Holmes, Andrew – Learning & Memory, 2019
Cognitive flexibility refers to various processes which enable behaviors to be modified on the basis of a change in the contingencies between stimuli or responses and their associated outcomes. Reversal learning is a form of cognitive flexibility which measures the ability to adjust responding based on a switch in the stimulus--outcome…
Descriptors: Animals, Cognitive Processes, Behavior Modification, Stimuli
Kehoe, E. James; Ludvig, Elliot A.; Sutton, Richard S. – Learning & Memory, 2014
The present experiment tested whether or not the time course of a conditioned eyeblink response, particularly its duration, would expand and contract, as the magnitude of the conditioned response (CR) changed massively during acquisition, extinction, and reacquisition. The CR duration remained largely constant throughout the experiment, while CR…
Descriptors: Conditioning, Eye Movements, Responses, Animals
Stamm, Andrew W.; Nguyen, Nam D.; Seicol, Benjamin J.; Fagan, Abigail; Oh, Angela; Drumm, Michael; Lundt, Maureen; Stickgold, Robert; Wamsley, Erin J. – Learning & Memory, 2014
Post-learning sleep is beneficial for human memory. However, it may be that not all memories benefit equally from sleep. Here, we manipulated a spatial learning task using monetary reward and performance feedback, asking whether enhancing the salience of the task would augment overnight memory consolidation and alter its incorporation into…
Descriptors: Sleep, Memory, Learning Processes, Spatial Ability
Perez, Margot; Rolland, Uther; Giurfa,, Martin; d'Ettorre, Patrizia – Learning & Memory, 2013
Social insects possess remarkable learning capabilities, which are crucial for their ecological success. They also exhibit interindividual differences in responsiveness to environmental stimuli, which underlie task specialization and division of labor. Here we investigated for the first time the relationships between sucrose responsiveness,…
Descriptors: Entomology, Responses, Olfactory Perception, Behavior
Singh, Teghpal; McDannald, Michael A.; Takahashi, Yuji K.; Haney, Richard Z.; Cooch, Nisha K.; Lucantonio, Federica; Schoenbaum, Geoffrey – Learning & Memory, 2011
While knowing what to expect is important, it is equally important to know when to expect it and to respond accordingly. This is apparent even in simple Pavlovian training situations in which animals learn to respond more strongly closer to reward delivery. Here we report that the nucleus accumbens core, an area well-positioned to represent…
Descriptors: Rewards, Classical Conditioning, Behavior Modification, Operant Conditioning
Tinsley, Matthew R.; Quinn, Jennifer J.; Fanselow, Michael S. – Learning & Memory, 2004
Aversive conditioning is an ideal model for studying cholinergic effects on the processes of learning and memory for several reasons. First, deficits produced by selective lesions of the anatomical structures shown to be critical for Pavlovian fear conditioning and inhibitory avoidance (such as the amygdala and hippocampus) resemble those deficits…
Descriptors: Memory, Fear, Classical Conditioning, Inhibition

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