Novel method to quantify conditioned fear-based neuronal activity in rat brain in vivo using high-resolution photoacoustic imaging
Novel method to quantify conditioned fear-based neuronal activity in rat brain in vivo using high-resolution photoacoustic imaging
批准号:
10205958
负责人:
James Matchynski
金额:
$4.7万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-07-06 至 2024-07-05
关键词:
AddressAmygdaloid structureAnimal ModelAnteriorAreaAttenuatedBehaviorBehavioralBehavioral ModelBehavioral ResearchBloodBrainBrain regionCellsCerebrumChemicalsChromogenic SubstratesCleaved cellComplexConditioned StimulusContrast MediaCoupledDataDetectionDevelopmentDiseaseDorsalDyesEngineeringExonsExperimental DesignsExposure toFOS ProteinFOS geneFailureFemaleFrightFunctional Magnetic Resonance ImagingGenerationsGenesGoalsHandHemoglobinHippocampus (Brain)HomeHumanImageImaging TechniquesImmediate-Early GenesImmunofluorescence ImmunologicImpairmentKnowledgeLabelLacZ GenesLasersLearningLightMapsMeasurementMeasuresMedialMediatingMental disordersMethodologyMethodsMicroscopyModelingMolecularNeurodevelopmental DisorderNeuronsNeurosciencesNoiseOxygenPhysiciansPhysicsPhysiologic pulsePilot ProjectsPoisonPositioning AttributePost-Traumatic Stress DisordersPrefrontal CortexPrevalenceProcessRattusReporter GenesResolutionRodentRoleScienceScientistShockSignal TransductionSliceSpecificityTechniquesTechnologyTestingTimeTissuesTrainingTransgenic OrganismsUltrasonic waveValidationabsorptionaddictionautism spectrum disorderbehavioral responsebehavioral studybeta-Galactosidasecareerchromophorecingulate cortexclassical conditioningconditioned fearcostdisabling symptomeffective interventionhigh resolution imagingimage reconstructionimaging approachimaging capabilitiesimaging modalityimaging systemin vivoin vivo imagingindigo dyeinnovationinsightlongitudinal analysismalemembernervous system disorderneural circuitneuroimagingnovelphotoacoustic imagingportabilityprotein expressionresponseserial imagingtargeted treatmenttemporal measurementtheoriestherapy development
中文摘要
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英文摘要
Project Summary/Abstract
Mental health disorders, such as post-traumatic stress disorder (PTSD), are complex, leaving challenges
for the development of effective interventions. Increasing our detailed understanding of these disorders, by
studying the micro-neurocircuitry behind them, can help provide individualized solutions to these complicated
conditions. This micro-neurocircuitry can be investigated by studying small groups of highly-active neurons,
collectively known as neuronal ensembles, that are responsible for unique behavioral responses, e.g. fear
learning, in PTSD. Behavioral studies examining neuronal ensembles have thus far been largely ex vivo, using
immediate early genes associated with neuronal activity (e.g. c-Fos). In vivo imaging methods are currently
limited (very invasive or low resolution), and generally measure indirect neuronal activity, such as the blood
oxygen dependent response. To address this knowledge gap, we propose a new high-resolution imaging
approach to detect and quantify fear-related neuronal activity in vivo, with the goal of discovering more
detailed roles of the neuronal ensembles that mediate fear learning associated with PTSD.
Specifically, we propose using photoacoustic (PA) imaging to map activated neurons in a Fos/LacZ
transgenic rat model. Fusion of Fos, which is induced by neuronal activity, with the lacZ gene gives active (Fos+)
cells the ability to cleave pro-chromogenic substrates, such as X-Gal, enzymatically, into PA active dyes. My
phantom and ex vivo pilot studies in rat brains demonstrate high-contrast PA images using these dyes and image
reconstructions with a very high signal-to-noise ratio. We hypothesize that during fear acquisition, unique
neuronal ensembles will be activated and detectable in the medial prefrontal cortex (a region tightly
associated with fear behavior) using a novel Fos/LacZ PA imaging system, providing a means to track
longitudinal changes in these ensembles in vivo. To test this hypothesis, we will use male/female Fos/LacZ
transgenic rats that will be administered cortical X-Gal upon exposure to footshock (fear). The X-Gal product will
be PA imaged (Aim 1) and these images will be validated with traditional methods for immunohistochemical
detection of Fos and β-galactosidase in brain slices (Aim 2). Significance: This project will provide deeper
insight into the role of fear-related neuronal ensembles and provide a new, low cost, high-resolution
methodological approach to measure Fos expression longitudinally (representative of neuronal ensembles) in
vivo. This will be broadly useful for behavioral research, not only in PTSD, but also in a variety of psychiatric
science by allowing us to better define mechanisms behind complex mental health disorders.
My training will focus on three main areas: molecular neuroscience and microscopy (led by sponsor, Dr.
Conti), behavioral/animal modeling (led by co-sponsor, Dr. Perrine), and use of PA imaging (led by key training
team member, Dr. Avanaki), facilitating my path towards my neuroradiology physician-scientist career goal.
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Novel method to quantify conditioned fear-based neuronal activity in rat brain in vivo using high-resolution photoacoustic imaging
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批准号:10653944
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项目类别:
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资助金额:$5.52万
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财政年份:2020
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负责人:James Matchynski
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依托单位:
Novel method to quantify conditioned fear-based neuronal activity in rat brain in vivo using high-resolution photoacoustic imaging
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批准号:10437819
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项目类别:
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资助金额:$5.43万
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财政年份:2020
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负责人:James Matchynski
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依托单位: