Nano- and Microelectronic Tools for Interrogating Neuronal Circuits and Networks
用于询问神经元电路和网络的纳米和微电子工具
基本信息
- 批准号:7918785
- 负责人:
- 金额:$ 84万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2008
- 资助国家:美国
- 起止时间:2008-09-30 至 2013-07-31
- 项目状态:已结题
- 来源:
- 关键词:AddressBiochemicalBiochemical GeneticsBiologicalBiological AssayBrainCellsChemicalsCodeDevelopmentDifferentiation and GrowthElementsImageMapsMicrofabricationMonitorNeurobiologyNeuronal DifferentiationNeuronsOpticsPathway interactionsPatternPreparationPropertyResearchRewardsSchemeSignal TransductionSliceStimulusSynapsesTimeTranslatingabstractingdesignnanonanomaterialsnanowirepatch clampspatiotemporalsynaptogenesistool
项目摘要
Abstract: The function of a biological neuronal network is determined by the intrinsic properties of its
constituent neurons, their spatial connectivity, and the adaptive strengthening/weakening of those connections
as informed by the network!s spatiotemporal pattern of electrical and chemical signaling. Deciphering the
neuronal code - the rules by which spatiotemporal connectivity translates to function - remains to be a major
scientific challenge, largely due to the lack of experimental tools that enable both the preparation of well-
defined neuronal circuits with controlled connections and the simultaneous mapping of physical connectivity
among, and signal propagation between, many neurons. The project proposed herein aims to develop new
nano- and microelectronic tools that address these particular issues. Specifically, we will develop: (1) planar
patch-clamp arrays (element number > 100, element pitch < 200 ?m) that enable the real-time monitoring of
multiple neurons in dissociated culture or slice preparations and (2) vertical nanowire arrays that can perturb
and modify neuronal differentiation and synapse formation through the controlled introduction of biochemical
signals in a cell-specific fashion. These new tools will then be used, in combination with optical excitation and
imaging schemes, to probe, at both the local and global levels, the real-time dynamics of constituent neurons
within a given neuronal network upon application of precisely defined perturbations. Combined together, these
tools will also provide a new platform for assaying, in a parallel fashion, the biochemical and genetic pathways
that govern neuronal differentiation and growth. The proposed research, which combines recent advances in
neurobiology with cutting-edge developments in nanomaterials synthesis and microfabrication, will allow for the
meticulous study of extant network connectivity and stimuli- and reward-induced synaptic adaptation. The
information gained through these studies will be crucial for systematically translating any network!s connectivity
to its function, and thus help to unravel the design principles of the brain.
摘要:生物神经网络的功能是由其内在特性决定的
项目成果
期刊论文数量(0)
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Hongkun Park其他文献
Hongkun Park的其他文献
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{{ truncateString('Hongkun Park', 18)}}的其他基金
Nano- and Microelectronic Tools for Interrogating Neuronal Circuits and Networks
用于询问神经元电路和网络的纳米和微电子工具
- 批准号:
8128692 - 财政年份:2008
- 资助金额:
$ 84万 - 项目类别:
Nano- and Microelectronic Tools for Interrogating Neuronal Circuits and Networks
用于询问神经元电路和网络的纳米和微电子工具
- 批准号:
8307813 - 财政年份:2008
- 资助金额:
$ 84万 - 项目类别:
Nano- and Microelectronic Tools for Interrogating Neuronal Circuits and Networks
用于询问神经元电路和网络的纳米和微电子工具
- 批准号:
7693808 - 财政年份:2008
- 资助金额:
$ 84万 - 项目类别:
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