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Tommasi, Luca; Thinus-Blanc, Catherine – Learning & Memory, 2004
Rats were trained to search for a food reward hidden under sawdust in the center of a square-shaped enclosure designed to force orientation on the basis of the overall geometry of the environment. They were then tested in a number of enclosures differing in shape and in size (rectangular-, double-side square-, and equilateral triangle-shaped…
Descriptors: Geometric Concepts, Geometry, Animals, Spatial Ability
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Rossato, Janine I.; Medina, Jorge H.; Izquierdo, Ivan; Cammarota, Martin; Bevilaqua, Lia R. M. – Learning & Memory, 2006
Nonreinforced retrieval can cause extinction and/or reconsolidation, two processes that affect subsequent retrieval in opposite ways. Using the Morris water maze task we show that, in the rat, repeated nonreinforced expression of spatial memory causes extinction, which is unaffected by inhibition of protein synthesis within the CA1 region of the…
Descriptors: Memory, Genetics, Inhibition, Spatial Ability
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Sandoz, Jean-Christophe; Pham-Delegue, Minh-Ha – Learning & Memory, 2004
In honeybees, the proboscis extension response (PER) can be conditioned by associating an odor stimulus (CS) to a sucrose reward (US). Conditioned responses to the CS, which are acquired by most bees after a single CS-US pairing, disappear after repeated unrewarded presentations of the CS, a process called extinction. Extinction is usually thought…
Descriptors: Intervals, Conditioning, Epidemiology, Responses
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Nader, Rebecca S.; Smith, Carlyle T.; Nixon, Margaret R. – Learning & Memory, 2004
Posttraining rapid eye movement (REM) sleep has been reported to be important for efficient memory consolidation. The present results demonstrate increases in the intensity of REM sleep during the night of sleep following cognitive procedural/implicit task acquisition. These REM increases manifest as increases in total number of rapid eye…
Descriptors: Eye Movements, Intelligence Quotient, Memory, Human Body
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Lunday, Lauren; Miner, Cathrine; Roth, Tania L.; Sullivan, Regina M.; Shionoya, Kiseko; Moriceau, Stephanie – Learning & Memory, 2006
Fetal and infant rats can learn to avoid odors paired with illness before development of brain areas supporting this learning in adults, suggesting an alternate learning circuit. Here we begin to document the transition from the infant to adult neural circuit underlying odor-malaise avoidance learning using LiCl (0.3 M; 1% of body weight, ip) and…
Descriptors: Body Weight, Conditioning, Animals, Brain
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Wiltgen, Brian J.; Sanders, Matthew J.; Ferguson, Carolyn; Homanics, Gregg E.; Fanselow, Michael S. – Learning & Memory, 2005
The [delta] subunit of the GABA[subscript [Alpha]] receptor (GABA[subscript [Alpha]]R) is highly expressed in the dentate gyrus of the hippocampus. Genetic deletion of this subunit reduces synaptic and extrasynaptic inhibition and decreases sensitivity to neurosteroids. This paper examines the effect of these changes on hippocampus-dependent trace…
Descriptors: Conditioning, Inhibition, Fear, Animals
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Pych, Jason C.; Chang, Qing; Colon-Rivera, Cynthia; Haag, Renee; Gold, Paul E. – Learning & Memory, 2005
These experiments examined the release of acetylcholine in the hippocampus and striatum when rats were trained, within single sessions, on place or response versions of food-rewarded mazes. Microdialysis samples of extra-cellular fluid were collected from the hippocampus and striatum at 5-min increments before, during, and after training. These…
Descriptors: Cues, Time Factors (Learning), Responses, Animals
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Donley, Melanie P.; Rosen, Jeffrey B.; Malkani, Seema; Wallace, Karin J. – Learning & Memory, 2004
Studies of gene expression following fear conditioning have demonstrated that the inducible transcription factor, "egr-1," is increased in the lateral nucleus of the amygdala shortly following fear conditioning. These studies suggest that "egr-1" and its protein product Egr-1 in the amygdala are important for learning and memory of fear. To…
Descriptors: Animals, Animal Behavior, Brain, Learning Processes
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Shors, Tracey J. – Learning & Memory, 2004
Stressful life events can have profound effects on our cognitive and motor abilities, from those that could be construed as adaptive to those not so. In this review, I discuss the general notion that acute stressful experience necessarily impairs our abilities to learn and remember. The effects of stress on operant conditioning, that is, learned…
Descriptors: Learning Processes, Operant Conditioning, Helplessness, Classical Conditioning
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Cohen, Marlene R.; Meissner, Geoffrey W.; Schafer, Robert J.; Raymond, Jennifer L. – Learning & Memory, 2004
Motor learning in the vestibulo-ocular reflex (VOR) and eyeblink conditioning use similar neural circuitry, and they may use similar cellular plasticity mechanisms. Classically conditioned eyeblink responses undergo extinction after prolonged exposure to the conditioned stimulus in the absence of the unconditioned stimulus. We investigated the…
Descriptors: Visual Stimuli, Stimulation, Eye Movements, Motor Development
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Christie, Michael A.; Hersch, Steven M. – Learning & Memory, 2004
In this paper, we demonstrate nondeclarative sequence learning in mice using an animal analog of the human serial reaction time task (SRT) that uses a within-group comparison of behavior in response to a repeating sequence versus a random sequence. Ten female B6CBA mice performed eleven 96-trial sessions containing 24 repetitions of a 4-trial…
Descriptors: Animal Behavior, Behavioral Science Research, Learning Processes, Sequential Learning
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Tinsley, Matthew R.; Quinn, Jennifer J.; Fanselow, Michael S. – Learning & Memory, 2004
Aversive conditioning is an ideal model for studying cholinergic effects on the processes of learning and memory for several reasons. First, deficits produced by selective lesions of the anatomical structures shown to be critical for Pavlovian fear conditioning and inhibitory avoidance (such as the amygdala and hippocampus) resemble those deficits…
Descriptors: Memory, Fear, Classical Conditioning, Inhibition
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Barad, Mark; Cain, Christopher K.; Blouin, Ashley M. – Learning & Memory, 2004
Extinction of classically conditioned fear, like its acquisition, is active learning, but little is known about its molecular mechanisms. We recently reported that temporal massing of conditional stimulus (CS) presentations improves extinction memory acquisition, and suggested that temporal spacing was less effective because individual CS…
Descriptors: Active Learning, Animals, Learning Processes, Cues
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Born, Jan; Gais, Steffen; Lucas, Brian – Learning & Memory, 2006
In recent years, the effect of sleep on memory consolidation has received considerable attention. In humans, these studies concentrated mainly on procedural types of memory, which are considered to be hippocampus-independent. Here, we show that sleep also has a persisting effect on hippocampus-dependent declarative memory. In two experiments, we…
Descriptors: Memory, Learning Processes, Recall (Psychology), High School Students
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Mauk, Michael D.; Ohyama, Tatsuya – Learning & Memory, 2004
Like many forms of Pavlovian conditioning, eyelid conditioning displays robust extinction. We used a computer simulation of the cerebellum as a tool to consider the widely accepted view that extinction involves new, inhibitory learning rather than unlearning of acquisition. Previously, this simulation suggested basic mechanistic features of…
Descriptors: Learning Processes, Neurological Impairments, Eye Movements, Behavioral Science Research
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