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Laughlin, Lindsay C.; Moloney, Danielle M.; Samels, Shanna B.; Sears, Robert M.; Cain, Christopher K. – Learning & Memory, 2020
In signaled active avoidance (SigAA), rats learn to suppress Pavlovian freezing and emit actions to remove threats and prevent footshocks. SigAA is critical for understanding aversively motivated instrumental behavior and anxiety-related active coping. However, with standard protocols ~25% of rats exhibit high freezing and poor avoidance. This has…
Descriptors: Animals, Behavior Modification, Coping, Fear
Derman, Rifka C.; Schneider, Kevin; Juarez, Shaina; Delamater, Andrew R. – Learning & Memory, 2018
When discrete localizable stimuli are used during appetitive Pavlovian conditioning, "sign-tracking" and "goal-tracking" responses emerge. Sign-tracking is observed when conditioned responding is directed toward the CS, whereas goal-tracking manifests as responding directed to the site of expected reward delivery. These…
Descriptors: Conditioning, Responses, Stimuli, Rewards
Keller, Nicole E.; Dunsmoor, Joseph E. – Learning & Memory, 2020
Counterconditioning (CC) is a form of retroactive interference that inhibits expression of learned behavior. But similar to extinction, CC can be a fairly weak and impermanent form of interference, and the original behavior is prone to relapse. Research on CC is limited, especially in humans, but prior studies suggest it is more effective than…
Descriptors: Conditioning, Fear, Memory, Learning Processes
Jones, Carolyn E.; Monfils, Marie-H. – Learning & Memory, 2016
Traumatic experiences early in life can contribute to the development of mood and anxiety disorders that manifest during adolescence and young adulthood. In young rats exposed to acute fear or stress, alterations in neural development can lead to enduring behavioral abnormalities. Here, we used a modified extinction intervention…
Descriptors: Adolescents, Fear, Juvenile Justice, Classical Conditioning
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
Bouchet, Courtney A.; Lloyd, Brian A.; Loetz, Esteban C.; Farmer, Caroline E.; Ostrovskyy, Mykola; Haddad, Natalie; Foright, Rebecca M.; Greenwood, Benjamin N. – Learning & Memory, 2017
Fear extinction-based exposure therapy is the most common behavioral therapy for anxiety and trauma-related disorders, but fear extinction memories are labile and fear tends to return even after successful extinction. The relapse of fear contributes to the poor long-term efficacy of exposure therapy. A single session of voluntary exercise can…
Descriptors: Fear, Intervention, Behavior Modification, Anxiety
Jean-Richard-dit-Bressel , Philip; McNally, Gavan P. – Learning & Memory, 2016
Aversive outcomes punish behaviors that cause their occurrence. The prefrontal cortex (PFC) has been implicated in punishment learning and behavior, although the exact roles for different PFC regions in instrumental aversive learning and decision-making remain poorly understood. Here, we assessed the role of the orbitofrontal (OFC), rostral…
Descriptors: Human Body, Brain, Lateral Dominance, Brain Hemisphere Functions
Remmelink, Esther; Smit, August B.; Verhage, Matthijs; Loos, Maarten – Learning & Memory, 2016
Many neurological and psychiatric disorders are characterized by deficits in cognitive flexibility. Modeling cognitive flexibility in mice enables the investigation of mechanisms underlying these deficits. The majority of currently available behavioral tests targeting this cognitive domain are reversal learning tasks that require scheduled food…
Descriptors: Animals, Food, Sensory Experience, Models
Shields-Johnson, Maria E.; Hernandez, John S.; Torno, Cody; Adams, Katherine M.; Wainwright, Marcy L.; Mozzachiodi, Riccardo – Learning & Memory, 2013
In "Aplysia," repeated trials of aversive stimuli produce long-term sensitization (LTS) of defensive reflexes and suppression of feeding. Whereas the cellular underpinnings of LTS have been characterized, the mechanisms of feeding suppression remained unknown. Here, we report that LTS training induced a long-term decrease in the excitability of…
Descriptors: Animals, Stimuli, Neurology, Behavior Modification
Barker, Jacqueline M.; Taylor, Jane R.; Chandler, L. Judson – Learning & Memory, 2014
The infralimbic prefrontal cortex (IL) has been shown to be critical for the regulation of flexible behavior, but its precise function remains unclear. This region has been shown to be critical for the acquisition, consolidation, and expression of extinction learning, leading many to hypothesize that IL suppresses behavior as part of a…
Descriptors: Brain Hemisphere Functions, Behavioral Science Research, Knowledge Level, Anatomy
Gupta-Agarwal, Swati; Jarome, Timothy J.; Fernandez, Jordan; Lubin, Farah D. – Learning & Memory, 2014
It is well established that fear memory formation requires de novo gene transcription in the amygdala. We provide evidence that epigenetic mechanisms in the form of histone lysine methylation in the lateral amygdala (LA) are regulated by NMDA receptor (NMDAR) signaling and involved in gene transcription changes necessary for fear memory…
Descriptors: Memory, Genetics, Brain Hemisphere Functions, Neurological Organization
Abraham, Antony D.; Cunningham, Christopher L.; Lattal, K. Matthew – Learning & Memory, 2012
Methylphenidate (MPH, Ritalin) is a norepinephrine and dopamine transporter blocker that is widely used in humans for treatment of attention deficit disorder and narcolepsy. Although there is some evidence that targeted microinjections of MPH may enhance fear acquisition, little is known about the effect of MPH on fear extinction. Here, we show…
Descriptors: Animals, Attention Deficit Disorders, Patients, Drug Therapy
Liu, Rong-Yu; Shah, Shreyansh; Cleary, Leonard J.; Byrne, John H. – Learning & Memory, 2011
Long-term memory and plasticity, including long-term synaptic facilitation (LTF) of the "Aplysia" sensorimotor synapse, depend on the activation of transcription factors that regulate genes necessary for synaptic plasticity. In the present study we found that treatment with 5-HT and behavioral training produce biphasic changes in the expression of…
Descriptors: Memory, Cognitive Processes, Brain Hemisphere Functions, Genetics
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
Soeter, Marieke; Kindt, Merel – Learning & Memory, 2011
We previously demonstrated that disrupting reconsolidation by pharmacological manipulations "deleted" the emotional expression of a fear memory in humans. If we are to target reconsolidation in patients with anxiety disorders, the disruption of reconsolidation should produce content-limited modifications. At the same time, the fear-erasing effects…
Descriptors: Anxiety Disorders, Patients, Memory, Generalization

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