Novel optrodes for large-scale electrophysiology and site-specific stimulation
Novel optrodes for large-scale electrophysiology and site-specific stimulation
批准号:
9146713
负责人:
JOHN ASSAD
金额:
$46.85万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-30 至 2018-08-31
关键词:
AcuteAddressAnimalsAreaBRAIN initiativeBackBasal GangliaBehaviorBehavior ControlBehavior monitoringBiological feedbackBrainCaliberCellsChronicCollaborationsCommunitiesComputer softwareCouplingDevelopmentDevice or Instrument DevelopmentDevicesDistalElectrodesElectronicsElectrophysiology (science)ElementsEngineeringEnvironmentExtravasationFeedbackFiberGoalsGoldHeadHealthInstitutesIonsLaboratoriesLengthLightLightingLogicMammalsMemoryMicroelectrodesMonitorMonkeysMotorMusNeural InhibitionNeuronsNeurosciencesNoiseOpticsPerformancePopulationSamplingScheduleSensoryShapesSignal TransductionSiteSpecificitySpeedStagingStructureSystemTechnologyTestingThickTimeTissuesUnited States National Institutes of Healthanalogbasebrain cellconditioningdata acquisitiondesigndigitalimplantationin vivoinnovationinsightinterestlight emissionmedical schoolsminimally invasivemulti-electrode arraysneural circuitnew technologynext generationnoveloptical fiberoptogeneticsphotonicspreventprogramsrelating to nervous systemresearch studysensorspatiotemporaltool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The brains of mammals contain an extraordinarily large number of neurons whose activity and interconnections determine the function of circuits that monitor our sensory environment, dictate our motor choices, form memories, and guide all behavior. However we do not understand how the activity of these circuits governs brain activity. A fundamental limitation has been the inability to monitor and control the activity of a significan fraction of brain cells at any one time - thus typical studies of the neural underpinnings of behavior monitor at most ~100 cells simultaneously, or approximately one millionth of the total. In order to gain insight how circuit computations are carried out and subsequently control behavior, we will develop two novel technologies. The first is a radical new class of electrode with 50-100 times more recording sites than is typical and with on-board electronics, allowing unprecedented quality recordings of high number of neurons. The second is a novel way to deliver light into the brain in a controlled manner in order to be able to perturb the activity of neurons with high precision.
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PiNBAC: The Program in Neuroscience Post-Baccalaureate Training Program
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资助金额:$50.79万
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财政年份:2015
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Novel optrodes for large-scale electrophysiology and site-specific stimulation
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资助金额:$10.85万
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CORE--ELECTRONICS MODULE
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依托单位:
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BASAL GANGLIA FUNCTION--BASIC MECHANISMS AND EFFECTS
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依托单位:
BASAL GANGLIA FUNCTION--BASIC MECHANISMS AND EFFECTS
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项目类别:
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资助金额:$43.0万
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财政年份:2000
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依托单位:
BASAL GANGLIA FUNCTION--BASIC MECHANISMS AND EFFECTS
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项目类别:
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资助金额:$43.0万
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BASAL GANGLIA FUNCTION--BASIC MECHANISMS AND EFFECTS
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项目类别:
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资助金额:$43.0万
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负责人:JOHN ASSAD
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Predictive Representation of Motion in Visual Cortex
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项目类别:
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资助金额:$36.29万
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财政年份:1998
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负责人:JOHN ASSAD
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依托单位:
Predictive Representation of Motion in Visual Cortex
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批准号:7269858
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项目类别:
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资助金额:$37.03万
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财政年份:1998
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负责人:JOHN ASSAD
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依托单位:
PREDICTIVE REPRESENTATION OF MOTION IN VISUAL CORTEX
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批准号:6384731
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项目类别:
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资助金额:$24.03万
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财政年份:1998
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依托单位:
Predictive Representation of Motion in Visual Cortex
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资助金额:$37.03万
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依托单位:
海外基金