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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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Marchal, Paul; Villar, Maria Eugenia; Geng, Haiyang; Arrufat, Patrick; Combe, Maud; Viola, Haydée; Massou, Isabelle; Giurfa, Martin – Learning & Memory, 2019
Honeybees are a standard model for the study of appetitive learning and memory. Yet, fewer attempts have been performed to characterize aversive learning and memory in this insect and uncover its molecular underpinnings. Here, we took advantage of the positive phototactic behavior of bees kept away from the hive in a dark environment and…
Descriptors: Inhibition, Learning Processes, Memory, Molecular Structure
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Lotfipour, Shahrdad; Mojica, Celina; Nakauchi, Sakura; Lipovsek, Marcela; Silverstein, Sarah; Cushman, Jesse; Tirtorahardjo, James; Poulos, Andrew; Elgoyhen, Ana Belén; Sumikawa, Katumi; Fanselow, Michael S.; Boulter, Jim – Learning & Memory, 2017
The absence of a2* nicotinic acetylcholine receptors (nAChRs) in oriens lacunosum moleculare (OLM) GABAergic interneurons ablate the facilitation of nicotine-induced hippocampal CA1 long-term potentiation and impair memory. The current study delineated whether genetic mutations of a2* nAChRs ("Chrna2"[superscript L9'S/L9'S] and…
Descriptors: Brain, Brain Hemisphere Functions, Animals, Long Term Memory
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Bisby, Madelyne A.; Baker, Kathryn D.; Richardson, Rick – Learning & Memory, 2018
NMDA receptors (NMDARs) are considered critical for the consolidation of extinction but recent work challenges this assumption. Namely, NMDARs are not required for extinction retention in infant rats as well as when extinction training occurs for a second time (i.e., reextinction) in adult rats. In this study, a possible third instance of…
Descriptors: Fear, Learning Processes, Conditioning, Brain
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Chen Han-Ting; Chen, Jin-Chung – Learning & Memory, 2015
The molecular mechanisms underlying drug extinction remain largely unknown, although a role for medial prefrontal cortex (mPFC) glutamate neurons has been suggested. Considering that the mPFC sends glutamate efferents to the ventral tegmental area (VTA), we tested whether the VTA is involved in methamphetamine (METH) extinction via conditioned…
Descriptors: Stimulants, Brain, Conditioning, Learning Processes
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Goode, Travis D.; Maren, Stephen – Learning & Memory, 2017
Surviving threats in the environment requires brain circuits for detecting (or anticipating) danger and for coordinating appropriate defensive responses (e.g., increased cardiac output, stress hormone release, and freezing behavior). The bed nucleus of the stria terminalis (BNST) is a critical interface between the "affective…
Descriptors: Learning Processes, Fear, Brain, Neurology
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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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Stafford, James M.; Maughan, DeeAnna K.; Ilioi, Elena C.; Lattal, K. Matthew – Learning & Memory, 2013
An issue of increasing theoretical and translational importance is to understand the conditions under which learned fear can be suppressed, or even eliminated. Basic research has pointed to extinction, in which an organism is exposed to a fearful stimulus (such as a context) in the absence of an expected aversive outcome (such as a shock). This…
Descriptors: Memory, Fear, Learning Processes, Brain
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Blouin, Ashley M.; Han, Sungho; Pearce, Anne M.; Cheng, KaiLun; Lee, JongAh J.; Johnson, Alexander W.; Wang, Chuansong; During, Matthew J.; Holland, Peter C.; Shaham, Yavin; Baraban, Jay M.; Reti, Irving M. – Learning & Memory, 2013
Narp knockout (KO) mice demonstrate an impaired extinction of morphine conditioned place preference (CPP). Because the medial prefrontal cortex (mPFC) has been implicated in extinction learning, we tested whether Narp cells in this region play a role in the extinction of morphine CPP. We found that intracranial injections of adenoassociated virus…
Descriptors: Brain, Animals, Learning Processes, Narcotics
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Weidemann, Gabrielle; Antees, Cassandra – Learning & Memory, 2012
There is considerable debate about whether differential delay eyeblink conditioning can be acquired without awareness of the stimulus contingencies. Previous investigations of the relationship between differential-delay eyeblink conditioning and awareness of the stimulus contingencies have assessed awareness after the conditioning session was…
Descriptors: Investigations, Conditioning, Information Processing, Brain
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Gilmartin, Marieke R.; Helmstetter, Fred J. – Learning & Memory, 2010
The contribution of the medial prefrontal cortex (mPFC) to the formation of memory is a subject of considerable recent interest. Notably, the mechanisms supporting memory acquisition in this structure are poorly understood. The mPFC has been implicated in the acquisition of trace fear conditioning, a task that requires the association of a…
Descriptors: Animals, Conditioning, Memory, Brain
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Foster, Jennifer A.; Burman, Michael A. – Learning & Memory, 2010
Long-term memory for fear of an environment (contextual fear conditioning) emerges later in development (postnatal day; PD 23) than long-term memory for fear of discrete stimuli (PD 17). As contextual, but not explicit cue, fear conditioning relies on the hippocampus; this has been interpreted as evidence that the hippocampus is not fully…
Descriptors: Conditioning, Neurology, Long Term Memory, Developmental Stages
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Martig, Adria K.; Mizumori, Sheri J. Y. – Learning & Memory, 2011
The ventral tegmental area (VTA) and substantia nigra pars compacta (SNc) may provide modulatory signals that, respectively, influence hippocampal (HPC)- and striatal-dependent memory. Electrophysiological studies investigating neural correlates of learning and memory of dopamine (DA) neurons during classical conditioning tasks have found DA…
Descriptors: Classical Conditioning, Memory, Brain, Rewards
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Baran, Sarah E.; Armstrong, Charles E.; Niren, Danielle C.; Conrad, Cheryl D. – Learning & Memory, 2010
Electrolytic lesions of the medial prefrontal cortex (PFCX) were examined using fear conditioning to assess the recall of fear extinction and performance in the Y-maze, open field, and object location/recognition in male and female Sprague-Dawley rats. Rats were conditioned to seven tone/footshocks, followed by extinction after 1-h and 24-h…
Descriptors: Females, Conditioning, Fear, Males
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Knapska, Ewelina; Maren, Stephen – Learning & Memory, 2009
After extinction of conditioned fear, memory for the conditioning and extinction experiences becomes context dependent. Fear is suppressed in the extinction context, but renews in other contexts. This study characterizes the neural circuitry underlying the context-dependent retrieval of extinguished fear memories using c-Fos immunohistochemistry.…
Descriptors: Memory, Conditioning, Fear, Learning Processes
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