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Mitchell, Julia R.; Trettel, Sean G.; Li, Anna J.; Wasielewski, Sierra; Huckleberry, Kylie A.; Fanikos, Michaela; Golden, Emily; Laine, Mikaela A.; Shansky, Rebecca M. – Learning & Memory, 2022
Pavlovian fear conditioning is a widely used behavioral paradigm for studying associative learning in rodents. Despite early recognition that subjects may engage in a variety of both conditioned and unconditioned responses, the last several decades have seen the field narrow its focus to measure freezing as the sole indicator of conditioned fear.…
Descriptors: Fear, Animals, Gender Differences, Responses
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Vasudevan, Krithika; Ramanathan, Karthik R.; Vierkant, Valerie; Maren, Stephen – Learning & Memory, 2022
Recent data reveal that the thalamic nucleus reuniens (RE) has a critical role in the extinction of conditioned fear. Muscimol (MUS) infusions into the RE impair within-session extinction of conditioned freezing and result in poor long-term extinction memories in rats. Although this suggests that RE inactivation impairs extinction learning, it is…
Descriptors: Brain Hemisphere Functions, Conditioning, Fear, Animals
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Alice Vidal; Albert Costa; Alice Foucart – Journal of Multilingual and Multicultural Development, 2024
Our preferences and evaluations are often affected by contextual factors. One unavoidable context is language. We used an evaluative conditioning (EC) paradigm (pairing neutral stimuli with emotional or neutral stimuli) to investigate whether our evaluations are equally conditioned in a first (L1) and a second language (L2). An EC effect was…
Descriptors: Preferences, Context Effect, Evaluation, Native Language
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Zimmermann, Josua; Bach, Dominik R. – Learning & Memory, 2020
A reminder can render consolidated memory labile and susceptible to amnesic agents during a reconsolidation window. For the case of threat memory (also termed fear memory), it has been suggested that extinction training during this reconsolidation window has the same disruptive impact. This procedure could provide a powerful therapeutic principle…
Descriptors: Physiology, Responses, Conditioning, Eye Movements
Michael Domjan; Andrew R. Delamater – APA Books, 2023
Through four previous editions, students and instructors have relied on this book's clear, concise, and highly accessible overview of the processes and mechanisms responsible for conditioning and learning. Domjan and Delamater summarize major theories of how humans and nonhuman animals learn, along with the classic experiments that support these…
Descriptors: Conditioning, Learning Processes, Video Technology, Neurosciences
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Luck, Camilla C.; Lipp, Ottmar V. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
In evaluative conditioning, if one shape (conditional stimulus [CS]; CSp) is paired with pleasant unconditional stimulus (US) images and another (CSu) is paired with unpleasant US images differential CS valence and US expectancy develops, such that participants evaluate the CSp as more pleasant and more predictive of pleasant images than the CSu.…
Descriptors: Learning, Conditioning, Learning Processes, Evaluative Thinking
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Taylor, William W.; Imhoff, Barry R.; Sathi, Zakia Sultana; Liu, Wei Y.; Garza, Kristie M.; Dias, Brian G. – Learning & Memory, 2021
Dysfunctions in memory recall lead to pathological fear; a hallmark of trauma-related disorders, like posttraumatic stress disorder (PTSD). Both, heightened recall of an association between a cue and trauma, as well as impoverished recall that a previously trauma-related cue is no longer a threat, result in a debilitating fear toward the cue.…
Descriptors: Brain, Memory, Recall (Psychology), Brain Hemisphere Functions
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Opalka, Ashley N.; Wang, Dong V. – Learning & Memory, 2020
Learning and memory involves a large neural network of many brain regions, including the notable hippocampus along with the retrosplenial cortex (RSC) and lateral septum (LS). Previous studies have established that the dorsal hippocampus (dHPC) plays a critical role during the acquisition and retrieval/expression of episodic memories. However, the…
Descriptors: Learning Processes, Memory, Brain Hemisphere Functions, Fear
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Mancini, Nino; Hranova, Sia; Weber, Julia; Weiglein, Alice; Schleyer, Michael; Weber, Denise; Thum, Andreas S.; Gerber, Bertram – Learning & Memory, 2019
Adjusting behavior to changed environmental contingencies is critical for survival, and reversal learning provides an experimental handle on such cognitive flexibility. Here, we investigate reversal learning in larval "Drosophila." Using odor-taste associations, we establish olfactory reversal learning in the appetitive and the aversive…
Descriptors: Learning Processes, Olfactory Perception, Rewards, Punishment
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Bjorni, Max; Rovero, Natalie G.; Yang, Elissa R.; Holmes, Andrew; Halladay, Lindsay R. – Learning & Memory, 2020
While results from many past studies have implicated the bed nucleus of the stria terminalis (BNST) in mediating the expression of sustained negative affect, recent studies have highlighted a more complex role for BNST that includes aspects of fear learning in addition to defensive responding. As BNST is thought to encode ambiguous or…
Descriptors: Fear, Cues, Brain Hemisphere Functions, Learning Processes
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Piantadosi, Patrick T.; Yeates, Dylan C. M.; Floresco, Stan B. – Learning & Memory, 2020
Fear can potently inhibit ongoing behavior, including reward-seeking, yet the neural circuits that underlie such suppression remain to be clarified. Prior studies have demonstrated that distinct subregions of the rodent medial prefrontal cortex (mPFC) differentially affect fear behavior, whereby fear expression is promoted by the more dorsal…
Descriptors: Learning Processes, Brain Hemisphere Functions, Fear, Conditioning
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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
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Temme, Stephanie J.; Murphy, Geoffrey G. – Learning & Memory, 2017
L-type voltage-gated calcium channels (LVGCCs) have been implicated in both the formation and the reduction of fear through Pavlovian fear conditioning and extinction. Despite the implication of LVGCCs in fear learning and extinction, studies of the individual LVGCC subtypes, Ca[subscript V]1.2 and Ca[subscript V] 1.3, using transgenic mice have…
Descriptors: Fear, Brain Hemisphere Functions, Animals, Anxiety
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Oruro, Enver Miguel; Pardo, Grace V. E.; Lucion, Aldo B.; Calcagnotto, Maria Elisa; Idiart, Marco A. P. – Learning & Memory, 2020
Studies have shown that neonate rodents exhibit high ability to learn a preference for novel odors associated with thermo-tactile stimuli that mimics maternal care. Artificial odors paired with vigorous strokes in rat pups younger than 10 postnatal days (P), but not older, rapidly induce an orientation-approximation behavior toward the conditioned…
Descriptors: Animal Behavior, Cytology, Learning Processes, Preferences
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Voulo, Meagan E.; Parsons, Ryan G. – Learning & Memory, 2017
Fear conditioning studies in rodents allow us to assess vulnerability factors which might underlie fear-based psychopathology such as post-traumatic stress disorder (PTSD). Despite PTSD being more prevalent in females than males, very few fear conditioning studies in rodents have tested females. Our study assessed fear conditioning and extinction…
Descriptors: Gender Differences, Retention (Psychology), Fear, Learning Processes
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