Massively Parallel Brain Imaging
Massively Parallel Brain Imaging
批准号:
7341396
负责人:
MARK J SCHNITZER
金额:
$79.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-30 至 2012-07-31
关键词:
AblationAdultAffectAlgorithmsAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAmplifiersAnimal BehaviorAnimal ModelAnimalsAreaAwardAxonBackBehaviorBehavior DisordersBehavioralBiological ModelsBiologyBiomedical EngineeringBiomedical ResearchBiomedical TechnologyBiotechnologyBrainBrain DiseasesBrain imagingBudgetsCaenorhabditis elegansCaliberCell physiologyCellsCharacteristicsChildhoodChromosome PairingClassClinicCocaineCollaborationsCommunitiesComplementComputer SimulationComputer Vision SystemsComputer-Aided DesignConditionCorneaCrack CocaineDataData AnalysesData SetData Storage and RetrievalDendritesDepositionDepthDevelopmentDevelopmental BiologyDevicesDiseaseDissectionDoctor of PhilosophyDrosophila genusDrosophila melanogasterElectrical EngineeringElectronicsElementsEmbryoEngineeringEnsureEventExhibitsFaceFailureFiber OpticsFigs - dietaryFive-Year PlansFluorescence MicroscopyFoundationsFunctional Magnetic Resonance ImagingFundingGenomeGenomicsGoalsGrantGreen Fluorescent ProteinsGrowthHandHeadHeartHeatingHourHousingHumanHuman ResourcesHuntington DiseaseImageImaging TechniquesImaging technologyIndividualIndustryInvasiveInvertebratesKnowledgeLabelLaboratoriesLarvaLaser Scanning MicroscopyLasersLeadLearningLeftLibrariesLifeLightLobeMagnetic ResonanceMammalsManualsMechanicsMediatingMedicalMethodsMicroscopeMicroscopyModelingMotionMotor NeuronsMovement DisordersMusNatureNematodaNerve DegenerationNeurobiologyNeurodegenerative DisordersNeuronsNeurosciencesNucleotidesNumbersOlfactory Receptor NeuronsOperating RoomsOperative Surgical ProceduresOphthalmologyOpticsOutcomePaperParkinson DiseasePathologyPatternPenetrationPersonal SatisfactionPharmacologic SubstancePhotoreceptorsPhysicsPhysiologic pulsePhysiologicalPigmentsPreclinical Drug EvaluationPrincipal InvestigatorProcessPropertyProteinsProteomicsPublishingPulse takingPurposeRateReporterResearchResearch PersonnelResolutionResourcesRetinaRiskRoleRotationRouteSafetySapphireScanningSchoolsScienceScreening procedureSenile PlaquesShapesSiliconSocietiesSolutionsSpecific qualifier valueSpecimenSpeedStandards of Weights and MeasuresStimulusStudy modelsSurfaceSurgeonSymptomsSynapsesSynchrotronsSyndromeSystemSystems BiologyTeaTechniquesTechnologyTestingTextbooksTimeTissuesTodayTrainingTriplet Multiple BirthTubeUnited States National Academy of SciencesUnited States National Institutes of HealthUniversitiesVariantVeteransVirionVisionVisualVisual FieldsVisual MotionVisual system structureWorkZebrafishaddictionage relatedbasebehavioral sensitizationbrain volumecareercellular imagingcommercializationcomputer sciencecostdata acquisitiondaydesigndesiredevelopmental diseasedevelopmental neurobiologydigitaldopamine systemdopaminergic neurondrug discoveryessaysexperiencefluorescence imagingfluorescence microscopeflygenetic manipulationgenetic strainhigh throughput screeninghigh throughput technologyin vivoinnovationinsightinstrumentinstrumentationlenslight microscopylight scatteringmembermouse genomemutantnanoscalenervous system disorderneural circuitneurogeneticsnovelnovel therapeuticsobject motionoptical imagingoptical trapspractical applicationpreventprofessorprogramsreconstructionrelating to nervous systemresearch studyresponseselective expressionsensory stimulussensory systemsizestructural biologysuccesstooltwo-photon
中文摘要
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英文摘要
Mark J. Schnitzer, Ph.D., is an assistant professor of biological sciences and applied physics at Stanford University. He received a Ph.D. in physics from Princeton University in 1999. Schnitzer's goal is to understand the large-scale dynamics of neural circuits. Toward this end, his lab has invented a number of minimally invasive brain-imaging techniques based on fiber-optics and has been investigating mammalian neural circuits underlying locomotor coordination using a multidisciplinary approach that combines imaging, behavioral, anatomical, and computational studies. With his Pioneer Award, Schnitzer is pursuing an understanding of neural dynamics in the fruit fly, with a focus on neural circuits involved in sensorimotor decision-making. His multidisciplinary approach makes use of new technology for automated, laser-based tissue dissection and brain imaging in large numbers of flies, allowing him to perform innovative analyses of the biological basis for decision-making. Schnitzer's honors include fellowships from the Beckman, Klingenstein, Sloan, and Packard foundations and a Presidential Early Career Award for Scientists and Engineers.
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依托单位:
Octopus microscopy for imaging multiple brain areas concurrently
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依托单位:
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依托单位:
Long-term kinetics of CA1 hippocampal place codes
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依托单位:
海外基金