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Knox, Dayan; Stanfield, Briana R.; Staib, Jennifer M.; David, Nina P.; Keller, Samantha M.; DePietro, Thomas – Learning & Memory, 2016
Single prolonged stress (SPS) has been used to examine mechanisms via which stress exposure leads to post-traumatic stress disorder symptoms. SPS induces fear extinction retention deficits, but neural circuits critical for mediating these deficits are unknown. To address this gap, we examined the effect of SPS on neural activity in brain regions…
Descriptors: Learning Processes, Stress Variables, Stress Management, Fear
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Baker, Kathryn D.; Richardson, Rick – Learning & Memory, 2015
Fear inhibition is markedly impaired in adolescent rodents and humans. The present experiments investigated whether this impairment is critically determined by the animal's age at the time of fear learning or their age at fear extinction. Male rats (n = 170) were tested for extinction retention after conditioning and extinction at different ages.…
Descriptors: Fear, Inhibition, Adolescents, Animals
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Albrecht, Doris – Learning & Memory, 2007
It is known from studies outside the brain that upon binding to its receptor, angiotensin-(1-7) elicits the release of prostanoids and nitric oxide (NO). Cyclooxygenase (COX) is a key enzyme that converts arachidonic acid to prostaglandins. Since there are no data available so far on the role of COX-2 in the amygdala, in a first step we…
Descriptors: Stimulation, Brain, Animals, Memory
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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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Sisti, Helene M.; Glass, Arnold L.; Shors, Tracey J. – Learning & Memory, 2007
Information that is spaced over time is better remembered than the same amount of information massed together. This phenomenon, known as the spacing effect, was explored with respect to its effect on learning and neurogenesis in the adult dentate gyrus of the hippocampal formation. Because the cells are generated over time and because learning…
Descriptors: Time Factors (Learning), Animals, Retention (Psychology), Brain
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LeVere, T. E. – Psychological Review, 1975
The present article discusses the possibility that behavioral recovery following brain damage is not dependent on the functional reorganization of neural tissue but is rather the result of the continued normal operation of spared neural mechanisms. (Editor)
Descriptors: Animal Behavior, Behavior Patterns, Learning Processes, Neurological Organization
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Bourtchouladze, Rusiko; Patterson, Susan L.; Kelly, Michele P.; Kreibich, Arati; Kandel, Eric R.; Abel, Ted – Learning & Memory, 2006
The cAMP/PKA pathway plays a critical role in learning and memory systems in animals ranging from mice to "Drosophila" to "Aplysia." Studies of olfactory learning in "Drosophila" suggest that altered expression of either positive or negative regulators of the cAMP/PKA signaling pathway beyond a certain optimum range may be deleterious. Here we…
Descriptors: Memory, Exhibits, Animals, Associative Learning
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Holscher, Christian; Schmid, Susanne; Pilz, Peter K. D.; Sansig, Gilles; van der Putten, Herman; Plappert, Claudia F. – Learning & Memory, 2005
Metabotropic glutamate receptors (mGluRs) are known to play a role in synaptic plasticity and learning. We have previously shown that mGluR7 deletion in mice produces a selective working memory (WM) impairment, while other types of memory such as reference memory remain unaffected. Since WM has been associated with Theta activity (6-12 Hz) in…
Descriptors: Animals, Short Term Memory, Neurology, Neurological Organization
National Academy of Sciences - National Research Council, Washington, DC. Committee on International Nutrition Programs. – 1973
The physical, chemical, and physiological development of the brain and consequent behavior in all species of higher animals evolves from the continuous interaction of genetic and numerous environmental factors. Among the latter are nutritional, disease, psychological, learning, and cultural variables. Of these, nutrition is concerned directly with…
Descriptors: Academic Achievement, Animal Behavior, Behavior Development, Brain