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Valle, Rebecca Della; Mohammadmirzaei, Negin; Knox, Dayan – Learning & Memory, 2019
Clinical and preclinical studies that have examined the neurobiology of persistent fear memory in posttraumatic stress disorder (PTSD) have focused on the medial prefrontal cortex, hippocampus, and amygdala. Sensory systems, the periaqueductal gray (PAG), and midline thalamic nuclei have been implicated in fear and extinction memory, but whether…
Descriptors: Stress Variables, Fear, Memory, Brain Hemisphere Functions
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Kalbe, Felix; Schwabe, Lars – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
Stimuli encoded shortly before an aversive event are typically well remembered. Traditionally, this emotional memory enhancement has been attributed to beneficial effects of physiological arousal on memory formation. Here, we proposed an additional mechanism and tested whether memory formation is driven by the unpredictable nature of aversive…
Descriptors: Prediction, Memory, Fear, Conditioning
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Satish S. Nair; Denis Paré; Aleksandra Vicentic – npj Science of Learning, 2016
The neuronal systems that promote protective defensive behaviours have been studied extensively using Pavlovian conditioning. In this paradigm, an initially neutral-conditioned stimulus is paired with an aversive unconditioned stimulus leading the subjects to display behavioural signs of fear. Decades of research into the neural bases of this…
Descriptors: Fear, Biology, Brain, Models
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Bernier, Brian E.; Lacagnina, Anthony F.; Drew, Michael R. – Learning & Memory, 2015
Studies on the behavioral mechanisms underlying contextual fear conditioning (CFC) have demonstrated the importance of preshock context exposure in the formation of aversive context memories. However, there has been comparatively little investigation of the effects of context exposure immediately after the shock. Some models predict that…
Descriptors: Fear, Learning Processes, Brain Hemisphere Functions, Memory
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Kim, Dongbeom; Pare, Denis; Nair, Satish S. – Learning & Memory, 2013
The relative contributions of plasticity in the amygdala vs. its afferent pathways to conditioned fear remain controversial. Some believe that thalamic and cortical neurons transmitting information about the conditioned stimulus (CS) to the lateral amygdala (LA) serve a relay function. Others maintain that thalamic and/or cortical plasticity is…
Descriptors: Fear, Brain Hemisphere Functions, Conditioning, Models
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Moustafa, Ahmed A.; Gilbertson, Mark W.; Orr, Scott P.; Herzallah, Mohammad M.; Servatius, Richard J.; Myers, Catherine E. – Brain and Cognition, 2013
Empirical research has shown that the amygdala, hippocampus, and ventromedial prefrontal cortex (vmPFC) are involved in fear conditioning. However, the functional contribution of each brain area and the nature of their interactions are not clearly understood. Here, we extend existing neural network models of the functional roles of the hippocampus…
Descriptors: Prediction, Animals, Fear, Classical Conditioning
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Dibbets, Pauline; Maes, Joseph H. R. – Learning and Motivation, 2011
The present human fear conditioning study examined whether the valence of an extinction cue has a differential effect on attenuating renewal that is induced by removal of the extinction context. Additionally, the study aimed to assess whether such attenuating effect is based on a modulatory or safety-signal role of the cue. In acquisition,…
Descriptors: Experimental Groups, Stimuli, Safety, Cues
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Laurent, Vincent; Westbrook, R. Frederick – Learning & Memory, 2010
Four experiments used rats to study the role of the basolateral amygdala (BLA) in the reinstatement and extinction of fear responses (freezing) to a previously extinguished conditioned stimulus (CS). In Experiment 1, BLA inactivation before pairing the extinguished CS with the shock unconditioned stimulus (US) or before US-alone exposure impaired…
Descriptors: Stimuli, Brain Hemisphere Functions, Inhibition, Fear
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Markham, Chris M.; Taylor, Stacie L.; Huhman, Kim L. – Learning & Memory, 2010
We examined the roles of the amygdala and hippocampus in the formation of emotionally relevant memories using an ethological model of conditioned fear termed conditioned defeat (CD). Temporary inactivation of the ventral, but not dorsal hippocampus (VH, DH, respectively) using muscimol disrupted the acquisition of CD, whereas pretraining VH…
Descriptors: Infants, Brain Hemisphere Functions, Role, Memory
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Knapska, Ewelina; Mikosz, Marta; Werka, Tomasz; Maren, Stephen – Learning & Memory, 2010
It is well known that emotions participate in the regulation of social behaviors and that the emotion displayed by a conspecific influences the behavior of other animals. In its simplest form, empathy can be characterized as the capacity to be affected by and/or share the emotional state of another. However, to date, relatively little is known…
Descriptors: Animals, Social Behavior, Learning Experience, Fear
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Lau, Jennifer Y. F.; Lissek, Shmuel; Nelson, Eric E.; Yoon, Lee; Roberson-Nay, Roxann; Poeth, Kaitlin; Jenness, Jessica; Ernst, Monique; Grillon, Christian; Pine, Daniel S. – Journal of the American Academy of Child & Adolescent Psychiatry, 2008
A novel paradigm is used to assess fear conditioning in adolescents with anxiety disorders. The results indicate that pediatric anxiety involves higher fear levels following conditioning.
Descriptors: Models, Conditioning, Adolescents, Fear
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Ito, Wataru; Pan, Bing-Xing; Yang, Chao; Thakur, Siddarth; Morozov, Alexei – Learning & Memory, 2009
Increased emotionality is a characteristic of human adolescence, but its animal models are limited. Here we report that generalization of auditory conditioned fear between a conditional stimulus (CS+) and a novel auditory stimulus is stronger in 4-5-wk-old mice (juveniles) than in their 9-10-wk-old counterparts (adults), whereas nonassociative…
Descriptors: Animals, Generalization, Fear, Conditioning
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Gao, Yu; Raine, Adrian; Venables, Peter H.; Dawson, Michael E.; Mednick, Sarnoff A. – Developmental Science, 2010
Although fear conditioning is an important psychological construct implicated in behavioral and emotional problems, little is known about how it develops in early childhood. Using a differential, partial reinforcement conditioning paradigm, this longitudinal study assessed skin conductance conditioned responses in 200 children at ages 3, 4, 5, 6,…
Descriptors: Emotional Problems, Models, Conditioning, Individual Differences
Venn, Jerry R. – 1970
To vicariously condition either fear or a positive emotional response, films in which a 5-year-old male model manifested one or the other response were shown to nursery school children. The measure of vicarious conditioning was the children's rate of response to the conditioned stimulus and a controlled stimulus in several operant situations after…
Descriptors: Conditioning, Emotional Response, Experimental Psychology, Fear
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Levenson, Jonathan M.; Sweatt, J. David; Chwang, Wilson B.; O'Riordan, Kenneth J. – Learning & Memory, 2006
Long-term memory formation is regulated by many distinct molecular mechanisms that control gene expression. An emerging model for effecting a stable, coordinated pattern of gene transcription involves epigenetic tagging through modifications of histones or DNA. In this study, we investigated the regulation of histone phosphorylation in the…
Descriptors: Conditioning, Animals, Brain, Context Effect
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