Controlled neuronal firing in vivo using two photon spatially shaped optogenetics
Controlled neuronal firing in vivo using two photon spatially shaped optogenetics
批准号:
9770567
负责人:
Emily Gibson
金额:
$80.09万
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:
2017-09-30 至 2022-08-31
关键词:
3-DimensionalAnimal ModelAnimalsAreaBRAIN initiativeBehaviorBrainBrain imagingBrain regionCalciumCaliberCell Culture TechniquesCellsCoupledCustomDataDecision MakingDevicesDiseaseEngineeringFiberGenerationsHeadHealthHippocampus (Brain)ImageIndividualIntelligenceLabelLasersLateralLightLightingLocationMicroscopeMovementMusNervous system structureNeuronsNeurophysiology - biologic functionOperative Surgical ProceduresOpsinOpticsPatternPhenotypePhototoxicityPhysiologic pulseProcessPublicationsResolutionSiteSolidSongbirdsSystemTechnologyTestingThree-Dimensional ImagingTimeLineTissuesValidationWeightWorkawakebasebrain tissuecalcium indicatorconfocal imagingdesignflexibilityfluorescence imagingfluorescence microscopeimplantationimprovedin vivoinnovationinstrumentinterestlenslight scatteringlight weightmeetingsmind controlminiaturizemulti-electrode arraysmultidisciplinarymyelinationneural circuitnonhuman primatenovelolfactory bulboptical fiberoptical imagingoptogeneticsphotoactivationrelating to nervous systemresponsesensorsensory inputsocial communicationtwo photon microscopytwo-photonvocal learning
中文摘要
这是一个响应RFA-NS-17-00 4“Brain Initiative:优化变革性的
神经系统的大规模记录和调制技术(U01)“。在概念验证中
我们展示了一种新型的光纤耦合微型显微镜,它实现了三维共聚焦成像
使用电润湿透镜技术进行轴向聚焦的脑组织荧光标记神经元。这么低
重量仪(<;2g)适用于外科植入,实现全光清醒行为记录
由于轴向聚焦深入小鼠大脑,与商用设备相比,这是一个重大进步。
在这份提案中,我们展示了一项重大突破,展示了通过光纤耦合的成功成像
显微镜使用双光子显微镜。利用这一结果,我们建议优化我们的证明
使其兼容双光子激发的概念E-FCM
(2pE-FCM),适用于记录和调节清醒行为小鼠的神经活动。我们的2PE-FCM将
将全息双光子光刺激与空间光调制器(SLM)相结合实现快速3D
体积双光子成像和神经元活动的调节。2PE-FCM的优化将是
通过测试版用户与多学科的物理学家、工程师和
神经学家正在同时设计、实施和测试该设备。2PE-FCM的检测
将采用一种循序渐进的方法,旨在有效地产生适合于研究当地的设备
不同物种不同脑区的回路。我们提出了一个坚实的传播计划,与
智能成像创新公司将该设备商业化。2PE-FCM的验证将是一个主要的
神经回路全光询问的进展为理解神经基础创造了一个新的场所
关于行为的。
目的1.技术途径:光遗传激活和同时读出深度
新型变焦电润湿镜光纤耦合显微镜在脑神经元中的应用
不使用活动部件。
目标2.里程碑和时间表:验证和传播2PE-FCM设备
对自由行为动物行为的神经基础的研究。
英文摘要
This is an application in response to RFA-NS-17-00 4 “BRAIN Initiative: Optimization of Transformative
Technologies for Large Scale Recording and Modulation in the Nervous System (U01)”. In a proof-of-concept
publication we demonstrated a novel fiber-coupled miniature microscope that achieved 3D confocal imaging of
fluorescently labeled neurons in brain tissue using electrowetting lens technology for axial focusing. This low
weight instrument (<2 g) is suitable for surgical implantation to achieve all optical awake behaving recording
with axial focusing deep in the mouse brain, a significant advance compared to commercially available devices.
In this proposal we present a major breakthrough demonstrating successful imaging through the fiber coupled
microscope using two-photon microscopy. Leveraging on this result we propose to optimize our proof of
concept E-FCM (electrowetting-fiber coupled microscope) by making it compatible for two-photon excitation
(2PE-FCM) suitable for recording and modulating neural activity in awake behaving mice. Our 2PE-FCM will
incorporate holographic two-photon opsin stimulation with a spatial light modulator (SLM) for rapid 3D
volumetric two-photon imaging and modulation of neuronal activity. Optimization of the 2PE-FCM will be
achieved by regular interactions of beta users with a multidisciplinary group of physicists, engineers and
neuroscientists in a parallel process of design implementation and testing the device. Testing of the 2PE-FCM
will employ a step-by-step approach designed for effective generation of a device suitable for studying local
circuits in different brain areas in different species. We propose a solid dissemination plan partnering with
Intelligent Imaging Innovations Inc. to commercialize the device. Validation of the 2PE-FCM will be a major
advance in all-optical interrogation of neural circuits creating a new venue for understanding the neural basis
of behavior.
Aim 1. TECHNICAL APPROACH: Optogenetic activation and simultaneous readout of deep
brain neurons using a novel fiber coupled microscope with a variable focus electrowetting lens
using no moving parts.
Aim 2. MILESTONES AND TIMELINE: Validate and disseminate the 2PE-FCM device for
studies of the neural basis of behavior in freely behaving animals.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
High extinction ratio, low insertion loss, optical switch based on an electrowetting prism
高消光比、低插入损耗、基于电润湿棱镜的光开关
DOI:
10.1364/oe.381565
发表时间:
2020
期刊:
Optics Express
影响因子:
3.8
作者:
[Zohrabi, Mo, Yang Lim, Wei, Bright, Victor M., Gopinath, Juliet T.]
通讯作者:
Gopinath, Juliet T.
Development of 3D-FAST Optical Interface for Rapid Volumetric Neural Sensing and Modulation
-
批准号:10294019
-
项目类别:
-
资助金额:$266.58万
-
财政年份:2021
-
负责人:Emily Gibson
-
依托单位:
Shedding light on brain circuits mediating navigation of the odor plume in a natural environment
-
批准号:10241846
-
项目类别:
-
资助金额:$8.95万
-
财政年份:2020
-
负责人:Emily Gibson
-
依托单位:
Shedding light on brain circuits mediating navigation of the odor plume in a natural environment
-
批准号:10216476
-
项目类别:
-
资助金额:$27.18万
-
财政年份:2020
-
负责人:Emily Gibson
-
依托单位:
3D-Fast Optical Interface for Rapid Volumetric Neural Sensing and Modulation
-
批准号:9764370
-
项目类别:
-
资助金额:$18.97万
-
财政年份:2018
-
负责人:Emily Gibson
-
依托单位:
Controlled neuronal firing in vivo using two photon spatially shaped optogenetics
-
批准号:9404641
-
项目类别:
-
资助金额:$70.88万
-
财政年份:2017
-
负责人:Emily Gibson
-
依托单位:
海外基金