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Anderson, Ross W.; Strowbridge, Ben W. – Learning & Memory, 2014
The hippocampus and dentate gyrus play critical roles in processing declarative memories and spatial information. Dentate granule cells, the first relay in the trisynaptic circuit through the hippocampus, exhibit low spontaneous firing rates even during locomotion. Using intracellular recordings from dentate neurons in awake mice operating a…
Descriptors: Animals, Brain Hemisphere Functions, Memory, Spatial Ability
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Seip-Cammack, Katharine M.; Shapiro, Matthew L. – Learning & Memory, 2014
Behavioral flexibility allows individuals to adapt to situations in which rewards and goals change. Potentially addictive drugs may impair flexible decision-making by altering brain mechanisms that compute reward expectancies, thereby facilitating maladaptive drug use. To investigate this hypothesis, we tested the effects of oxycodone exposure on…
Descriptors: Learning Processes, Cognitive Processes, Memory, Spatial Ability
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Holahan, Matthew R.; Honegger, Kyle S.; Tabatadze, Nino; Routtenberg, Aryeh – Learning & Memory, 2007
Previous reports have shown that overexpression of the growth- and plasticity-associated protein GAP-43 improves memory. However, the relation between the levels of this protein to memory enhancement remains unknown. Here, we studied this issue in transgenic mice (G-Phos) overexpressing native, chick GAP-43. These G-Phos mice could be divided at…
Descriptors: Animals, Alzheimers Disease, Memory, Animal Behavior
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Lee, Grace; Disterhoft, John F.; Kuo, Amy G. – Learning & Memory, 2006
A common cellular alteration, reduced post-burst afterhyperpolarization (AHP) in CA1 neurons, is associated with acquisition of the hippocampus-dependent tasks trace eyeblink conditioning and the Morris water maze. As a similar increase in excitability is correlated with these two learning paradigms, we sought to determine the interactive…
Descriptors: Behavioral Science Research, Conditioning, Neurological Organization, Brain
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O'Carroll, Colin M.; Martin, Stephen J.; Sandin, Johan; Frenguelli, Bruno; Morris, Richard G. M. – Learning & Memory, 2006
The persistence of new memory traces in the hippocampus, encoded following appropriate activation of glutamatergic receptors and the induction of synaptic plasticity, can be influenced by heterosynaptic activation of neuromodulatory brain systems. We therefore investigated the effects of a hippocampus-specific blockade of dopamine D1/D5 receptors…
Descriptors: Intervals, Brain, Animals, Animal Behavior
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Mitchell, Anna S.; Dalrymple-Alford, John C. – Learning & Memory, 2006
Damage to the medial region of the thalamus, both in clinical cases (e.g., patients with infarcts or the Korsakoff's syndrome) and animal lesion models, is associated with variable amnesic deficits. Some studies suggest that many of these memory deficits rely on the presence of lateral thalamic lesions (LT) that include the intralaminar nuclei,…
Descriptors: Neurological Impairments, Memory, Short Term Memory, Brain
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Yin, Henry H.; Knowlton, Barbara J. – Learning & Memory, 2004
The involvement of different subregions of the striatum in place and response learning was examined using a T-maze. Rats were given NMDA lesions of the dorsolateral striatum (DLS), anterior dorsomedial striatum (ADMS), posterior dorsomedial striatum (PDMS), or sham surgery. They were then trained to retrieve food from the west arm of the maze,…
Descriptors: Nonverbal Learning, Behavioral Science Research, Neurological Impairments, Spatial Ability
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Ergorul, Ceren; Eichenbaum, Howard – Learning & Memory, 2004
Previous studies have indicated that nonhuman animals might have a capacity for episodic-like recall reflected in memory for "what" events that happened "where" and "when". These studies did not identify the brain structures that are critical to this capacity. Here we trained rats to remember single training episodes, each composed of a series of…
Descriptors: Neurology, Cues, Spatial Ability, Neurological Impairments
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Ragozzino, Michael E.; Choi, Daniel – Learning & Memory, 2004
The present studies explored the role of the medial striatum in learning when task contingencies change. Experiment 1 examined whether the medial striatum is involved in place reversal learning. Testing occurred in a modified cross-maze across two consecutive sessions. Injections of the local anesthetic, bupivacaine, into the medial striatum, did…
Descriptors: Nonverbal Learning, Biochemistry, Neurological Impairments, Behavioral Science Research
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Sandi, Carmen; Cordero, M. Isabel; Merino, Jose J.; Kruyt, Nyika D.; Regan, Ciaran M.; Murphy, Keith J. – Learning & Memory, 2004
The polysialylated neural cell adhesion molecule (PSA-NCAM) has been implicated in activity-dependent synaptic remodeling and memory formation. Here, we questioned whether training-induced modulation of PSA-NCAM expression might be related to individual differences in spatial learning abilities. At 12 h posttraining, immunohistochemical analyses…
Descriptors: Memory, Slow Learners, Correlation, Neurological Organization
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Janus, Christopher – Learning & Memory, 2004
TgCRND8 mice represent a transgenic mouse model of Alzheimer's disease, with onset of cognitive impairment and increasing amyloid-[beta] plaques in their brains at 12 weeks of age. In this study, the spatial memory in 25- to 30-week-old TgCRND8 mice was analyzed in two reference and one working memory Morris water maze (MWM) tests. In reference…
Descriptors: Pathology, Nonverbal Learning, Spatial Ability, Learning Strategies
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Hebda-Bauer, Elaine K.; Watson, Stanley J.; Akil, Huda – Learning & Memory, 2005
The impact of a previously successful or unsuccessful experience on the subsequent acquisition of a related task is not well understood. The nature of past experience may have even greater impact in individuals with learning deficits, as their cognitive processes can be easily disrupted. Mice with a targeted disruption of the [alpha] and [delta]…
Descriptors: Memory, Learning Experience, Intervals, Animals