0000000001330473

AUTHOR

Tracey J. Shors

showing 4 related works from this author

Learning to learn: Theta oscillations predict new learning, which enhances related learning and neurogenesis

2011

Animals in the natural world continuously encounter learning experiences of varying degrees of novelty. New neurons in the hippocampus are especially responsive to learning associations between novel events and more cells survive if a novel and challenging task is learned. One might wonder whether new neurons would be rescued from death upon each new learning experience or whether there is an internal control system that limits the number of cells that are retained as a function of learning. In this experiment, it was hypothesized that learning a task that was similar in content to one already learned previously would not increase cell survival. We further hypothesized that in situations in…

Malelcsh:MedicineHippocampusHippocampal formationHippocampusTask (project management)Rats Sprague-Dawleymemory0302 clinical medicineneurogeneesiTheta Rhythmlcsh:Scienceta515Neurons0303 health sciencesMultidisciplinary4. EducationNeurogenesisNoveltyneurogenesisEyeblink conditioningNeurologythetaMedicinePsychologyResearch ArticleVeterinary MedicineCell SurvivalNeurogenesiseducationclassical conditioningNeurophysiology03 medical and health sciencesDevelopmental NeuroscienceAnimalsLearninghippokampusBiology030304 developmental biologyDentate gyruslcsh:RClassical conditioningmuistiRatstheetalcsh:QVeterinary Scienceklassinen ehdollistaminenNeuroscience030217 neurology & neurosurgeryNeurosciencePLoS One
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Moderate drinking? Alcohol consumption significantly decreases neurogenesis in the adult hippocampus

2012

Drinking alcohol in moderation is often considered a health-conscious behavior, associated with improved cardiovascular and brain health. However, “moderate” amounts of alcohol include drinking 3-4 alcohol beverages in a day, which is closer to binge drinking and may do more harm than good. Here we examined how daily drinking of moderate-high alcohol alters the production of new neurons in the adult hippocampus. Male and female adult Sprague-Dawley rats were provided free access to a liquid replacement diet that was supplemented with either 4 % ethanol or Maltodextrin for a period of two weeks. Proliferating cells were labeled with 5-bromo-2-deoxyuridine (BrdU) and the number of BrdU-positi…

MaleAlcohol DrinkingNeurogenesisBinge drinkingPhysiologyPoison controlHippocampusAlcoholta3112HippocampusArticleDevelopmental psychologyRats Sprague-Dawleychemistry.chemical_compoundAnimalsLearningta515Cell ProliferationEthanolGeneral NeuroscienceDentate gyrusNeurogenesisImmunohistochemistryAssociative learningRatschemistryMotor SkillsFemalePsychology
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Chemotherapy disrupts learning, neurogenesis and theta activity in the adult brain

2012

Chemotherapy, especially if prolonged, disrupts attention, working memory and speed of processing in humans. Most cancer drugs that cross the blood–brain barrier also decrease adult neurogenesis. Because new neurons are generated in the hippocampus, this decrease may contribute to the deficits in working memory and related thought processes. The neurophysiological mechanisms that underlie these deficits are generally unknown. A possible mediator is hippocampal oscillatory activity within the theta range (3–12 Hz). Theta activity predicts and promotes efficient learning in healthy animals and humans. Here, we hypothesized that chemotherapy disrupts learning via decreases in hippocampal adult…

MaleMemory Long-TermNeurogenesisHippocampusAntineoplastic AgentsHippocampal formationHippocampusta3112ArticleRats Sprague-DawleymedicineTemozolomideAnimalsTheta RhythmAntineoplastic Agents Alkylatingta515TemozolomideWorking memoryGeneral NeuroscienceNeurogenesisClassical conditioningAssociation LearningNeurophysiologyConditioning EyelidAssociative learningRatsDacarbazineMemory Short-TermPsychologyNeurosciencemedicine.drugEuropean Journal of Neuroscience
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Learning to learn: Theta oscillations predict new learning, which enhances related learning and neurogenesis

2012

Animals in the natural world continuously encounter learning experiences of varying degrees of novelty. New neurons in the hippocampus are especially responsive to learning associations between novel events and more cells survive if a novel and challenging task is learned. One might wonder whether new neurons would be rescued from death upon each new learning experience or whether there is an internal control system that limits the number of cells that are retained as a function of learning. In this experiment, it was hypothesized that learning a task that was similar in content to one already learned previously would not increase cell survival. We further hypothesized that in situations in…

memoryneurogenesisneurogeneesihippocampusthetaeducationclassical conditioningtheetamuistihippokampusklassinen ehdollistaminen
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