课题基金 / 基金详情

项目摘要

项目成果

KENNETH D MILLER的其他基金

相似基金

相关文献

中文摘要
翻译
摘要-管理核心(哥伦比亚大学) 行政核心将是整合多机构,跨学科的V1团队的关键促进者, 理论家和实验家,其中包括来自五个机构的研究人员:哥伦比亚大学、加州 加州大学伯克利分校、加州大学弗朗西斯科分校和 匹兹堡大学。为了实现这一目标,行政核心将协调和整合所有U19 项目职能;指导和促进项目与核心领导人、负责人 研究者和研究人员;确保U19 V1团队最大限度地利用现有和 建立资源;促进与NIH BRAIN倡议主要利益相关者的数据共享和合作, 更大的神经科学研究界;并提供严格和定期的财政监督, 研究项目和核心。行政核心领导人将召集内部咨询委员会成员, 委员会和外部科学顾问委员会,他们是经验丰富的研究科学家, 领导记录,为U19计划的基础设施、科学方向和 为研究界开发资源。行政核心还将开发一个网站, 作为与我们的计划组件和更大的研究进行沟通和协作的工具, 社区
英文摘要
Abstract - Administrative Core (Columbia University) The Administrative Core will be a key facilitator in integrating the multi-institutional, interdisciplinary V1 team of theorists and experimentalists that includes researchers from five institutions: Columbia University, California Institute of Technology, University of California, Berkley, University of California, San Francisco and the University of Pittsburgh. To meet this goal, the Administrative Core will coordinate and integrate all U19 Program functions; guide and facilitate interactions between the Project and Core leaders, Principal Investigators, and research staff; ensure that the U19 V1 Team maximizes the utilization of existing and established resources; facilitate data sharing and collaboration with key NIH BRAIN Initiative stakeholders and the greater neuroscience research community; and provide rigorous and regular fiscal oversight of the research projects and cores. The Administrative Core leaders will convene members of the Internal Advisory Committee and External Scientific Advisory Board, who are experienced research scientists with proven track records of leadership, to provide expert oversight of the U19 Program’s infrastructure, scientific direction, and resource development for the research community. The Administrative Core will also develop a website to use as a tool for communication and collaboration with our program components and the larger research community.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Modeling V1 circuit dynamics
Modeling V1 circuit dynamics
Understanding V1 circuit dynamics and computations
CRCNS: Theory-guided studies of cortical mechanisms of multi-input integration
海外基金