Structure and function of the mouse parafasicular and entopeduncular nuclei
Structure and function of the mouse parafasicular and entopeduncular nuclei
批准号:
9921511
负责人:
Pavel Osten
金额:
$37.41万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-07-01 至 2022-04-30
关键词:
AddressAdoptedAnatomyAnimalsAttentionAxonBasal GangliaBehaviorBehavioralBehavioral ParadigmBrainBrain StemCell NucleusCellsCentromedian Thalamic NucleusCorpus striatum structureDataDiseaseDorsalDrug AddictionEatingElectrophysiology (science)ElementsEnvironmentEvaluationFoodFutureGeneticGilles de la Tourette syndromeGlobus PallidusGlutamatesGoalsHabenulaHeadHuntington DiseaseIndividualIntralaminar Nuclear GroupLateralLeftLiteratureLocomotionMapsMediatingMidbrain structureModelingMolecularMolecular ProfilingMotorMovementMusNeuronsObsessive-Compulsive DisorderOutcomeOutputParafascicular NucleusParkinson DiseasePathogenesisPathway interactionsPatternPrimatesProcessPropertyPsychological reinforcementRewardsRodentSensorySignal TransductionStereotypingStructureSubstantia nigra structureThalamic NucleiThalamic structureTrainingViralWorkbasebehavioral studycell typedrug actiondrug of abuseendopeduncular nucleusenvironmental changeexperienceflexibilitygamma-Aminobutyric Acidin vivomotivated behaviorneuropsychiatric disordernovelpreferencerelating to nervous systemsensory stimulustool
中文摘要
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英文摘要
Project Summary
On a moment-by-moment basis each animal must consider its environment, past experience, and
present goals to choose future actions. For example, presented with food a hungry animal will likely eat,
although not if a predator is near or if the context in which the food appears was previously associated
with an adverse output. The process of action selection depends on the proper function of the basal
ganglia (BG). Perturbations of BG contribute to many diseases including Parkinson's, Huntington's,
Tourette's, and obsessive-compulsive disorders as well as to drug addiction. How activity in the BG
mediates action selection and reinforces the repetition of actions associated with positive outcomes is
still unknown. Work from a variety of species, indicates that the entopeduncular (EP) and parafascicular
(PF) nuclei are important for these processes and contribution to action outcome evaluation and action
selection, respectively. Here we propose to carry out anatomical, functional, and behavioral studies in
mice to understand the circuitry of these nuclei and how their activity contributes to action selection and
evaluation. We make use of new tools and behavioral paradigms to address these unknowns and use
anatomical studies to guide our in vivo analyses.
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依托单位:
海外基金