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Kikas, Katarina; Westbrook, R. Frederick; Holmes, Nathan M. – Learning & Memory, 2021
Four experiments examined the effects of a dangerous context and a systemic epinephrine injection on sensory preconditioning in rats. In each experiment, rats were exposed to presentations of a tone and light in stage 1, light-shock pairings in stage 2, and test presentations of the tone alone and light alone in stage 3. Presentations of the tone…
Descriptors: Sensory Experience, Conditioning, Animals, Visual Stimuli
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Scott, Gavin A.; Liu, Max C.; Tahir, Nimra B.; Zabder, Nadine K.; Song, Yuanyi; Greba, Quentin; Howland, John G. – Learning & Memory, 2020
Working memory (WM), the capacity for short-term storage of small quantities of information for immediate use, is thought to depend on activity within the prefrontal cortex. Recent evidence indicates that the prefrontal neuronal activity supporting WM is driven by thalamocortical connections arising in mediodorsal thalamus (mdThal). However, the…
Descriptors: Role, Animals, Brain Hemisphere Functions, Short Term Memory
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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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Graham, Bronwyn M.; Richardson, Rick – Learning & Memory, 2016
These experiments examined the relationship between the neurotrophic factor fibroblast growth factor 2 (FGF2) and individual differences in the expression of conditioned fear. Experiments 1 and 2 demonstrated that rats naturally expressing low levels of contextual or cued fear have higher levels of hippocampal FGF2 relative to rats that express…
Descriptors: Individual Differences, Correlation, Fear, Animals
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Lykken, Christine; Kentros, Clifford G. – Learning & Memory, 2014
Understanding the neural mechanisms underlying learning and memory in the entorhinal-hippocampal circuit is a central challenge of systems neuroscience. For more than 40 years, electrophysiological recordings in awake, behaving animals have been used to relate the receptive fields of neurons in this circuit to learning and memory. However, the…
Descriptors: Learning, Memory, Neurology, Physiology
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Haaker, Jan; Golkar, Armita; Hermans, Dirk; Lonsdorf, Tina B. – Learning & Memory, 2014
In human research, studies of return of fear (ROF) phenomena, and reinstatement in particular, began only a decade ago and recently are more widely used, e.g., as outcome measures for fear/extinction memory manipulations (e.g., reconsolidation). As reinstatement research in humans is still in its infancy, providing an overview of its stability and…
Descriptors: Literature Reviews, Fear, Animals, Theories
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McKinney, Brandon C.; Sze, Wilson; White, Jessica A.; Murphy, Geoffrey G. – Learning & Memory, 2008
Using pharmacological approaches, others have suggested that L-type voltage-gated calcium channels (L-VGCCs) mediate both consolidation and extinction of conditioned fear. In the absence of L-VGCC isoform-specific antagonists, we have begun to investigate the subtype-specific role of LVGCCs in consolidation and extinction of conditioned fear…
Descriptors: Animals, Genetics, Fear, Pharmacology
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Perez-Cuesta, Luis Maria; Hepp, Yanil; Pedreira, Maria Eugenia; Maldonado, Hector – Learning & Memory, 2007
Prior work with the crab's contextual memory model showed that CS-US conditioned animals undergoing an unreinforced CS presentation would either reconsolidate or extinguish the CS-US memory, depending on the length of the reexposure to the CS. Either memory process is only triggered once the CS is terminated. Based on these results, the following…
Descriptors: Memory, Animals, Stimuli, Pharmacology
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Waltereit, Robert; Mannhardt, Sonke; Nescholta, Sabine; Maser-Gluth, Christiane; Bartsch, Dusan – Learning & Memory, 2008
Memory extinction, defined as a decrease of a conditioned response as a function of a non-reinforced conditioned stimulus presentation, has high biological and clinical relevance. Extinction is not a passive reversing or erasing of the plasticity associated with acquisition, but a novel, active learning process. Nifedipine blocks L-type voltage…
Descriptors: Stimuli, Pharmacology, Active Learning, Animals
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Ris, Laurence; Capron, Brigitte; Sclavons, Coralie; Liegeois, Jean-Francois; Seutin, Vincent; Godaux, Emile – Learning & Memory, 2007
In area CA1 of hippocampal slices, a single 1-sec train of 100-Hz stimulation generally triggers a short-lasting long-term potentiation (S-LTP) of 1-2 h. Here, we found that when such a train was applied 45 min after application of the small conductance Ca[superscript 2+]-activated K[superscript +] (SK) channel blocker apamin, it induced a…
Descriptors: Stimulation, Laboratory Procedures, Drug Use, Animals
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Davis, Adeola R.; Shields, Angela D.; Brigman, Jonathan L.; Norcross, Maxine; McElligott, Zoe A.; Holmes, Andrew; Winder, Danny G. – Learning & Memory, 2008
Extinction, a form of learning that has the ability to reshape learned behavior based on new experiences, has been heavily studied utilizing fear learning paradigms. Mechanisms underlying extinction of positive-valence associations, such as drug self-administration and place preference, are poorly understood yet may have important relevance to…
Descriptors: Animals, Substance Abuse, Cocaine, Fear
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McKinney, Brandon C.; Murphy, Geoffrey G. – Learning & Memory, 2006
Using pharmacological techniques, it has been demonstrated that both consolidation and extinction of Pavlovian fear conditioning are dependent to some extent upon L-type voltage-gated calcium channels (LVGCCs). Although these studies have successfully implicated LVGCCs in Pavlovian fear conditioning, they do not provide information about the…
Descriptors: Classical Conditioning, Fear, Pharmacology, Genetics
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Simon, Barbara B.; Knuckley, Bryan; Powell, Donald A. – Learning & Memory, 2004
Previous work has demonstrated that drugs increasing brain concentrations of acetylcholine can enhance cognition in aging and brain-damaged organisms. The present study assessed whether galantamine (GAL), an allosteric modulator of nicotinic cholinergic receptors and weak acetylcholinesterase inhibitor, could improve acquisition and retention of…
Descriptors: Classical Conditioning, Animals, Eye Movements, Biochemistry
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Blouin, Ashley M.; Cain, Chris K.; Barad, Mike – Learning & Memory, 2004
Having recently shown that extinction of conditioned fear depends on L-type voltage-gated calcium channels (LVGCCs), we have been seeking other protocols that require this unusual induction mechanism. We tested latent inhibition (LI) of fear, because LI resembles extinction except that cue exposures precede, rather than follow, cue-shock pairing.…
Descriptors: Conditioning, Animals, Cytology, Neurology
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Weible, Aldis P.; Oh, M. Matthew; Lee, Grace; Disterhoft, John F. – Learning & Memory, 2004
Cholinergic systems are critical to the neural mechanisms mediating learning. Reduced nicotinic cholinergic receptor (nAChR) binding is a hallmark of normal aging. These reductions are markedly more severe in some dementias, such as Alzheimer's disease. Pharmacological central nervous system therapies are a means to ameliorate the cognitive…
Descriptors: Conditioning, Animals, Eye Movements, Pharmacology
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