课题基金 / 基金详情

CENTER FOR NEURAL COMMUNICATION TECHNOLOGY

CENTER FOR NEURAL COMMUNICATION TECHNOLOGY
神经通信技术中心
批准号:
6188381
负责人:
DAVID JAMES ANDERSON
金额:
$104.93万
依托单位国家:
美国
项目类别:
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-05-15 至 2004-07-31

项目摘要

项目成果

DAVID JAMES ANDERSON的其他基金

相关文献

中文摘要
翻译
该中心提案的主要目的是使系统神经生物学研究人员、神经假体设计人员和其他电生理学家能够使用在硅衬底上构建的多通道薄膜器件与可兴奋组织进行通信。具有数十至数百个记录或刺激位点的一维、二维和三维阵列可以被定制设计以适应特定组织通信应用的需求。该中心有一个重要的服务和技术转让组成部分。该中心通过多种媒体对调查人员进行技术及其使用方面的教育。新用户首先获得中心发布的目录中的库存设备,然后与中心工作人员合作设计新探头,并将互连技术与其应用相匹配。该中心的服务部分和研究项目旨在在未来五年内将技术推向三个主要方向:1)通过开发数据库和模型使探针的设计更加合理,这些数据库和模型将定量地指导研究人员和设计人员,2)扩大中心的分销产品,包括流体输送探针,有源电路探针,涂覆有生物活性材料的探针和三维探针,以及3)将制造从大学实验室转移到商业制造设施。三个内部研究项目推动这些推力。这些项目涵盖器械技术的扩展,通过实验和建模,更全面地了解器械的记录和刺激特性,以及开发方法,通过这些方法可以在死后确认组织和器械之间的精确几何关系。除了这些项目外,我们还与大学和工业界的研究人员开展了几个合作项目,涉及我们所有的主要应用领域。
英文摘要
The major thrust of this Center proposal is to enable research investigators in systems neurobiology, neuroprosthesis designers and other electrophysiologists to communicate with excitable tissue using multichannel thin-film devices constructed on silicon substrates. One, two and three dimensional arrays with tens to hundreds of recording or stimulation sites can be custom designed to fit the needs of specific tissue communication applications. There is a significant service and technology transfer component to this center. The Center educates investigators on the technology and its use through a number of media. New users are first given stock devices found in a catalog published by the Center and proceed to working with the Center staff to design new probes and matching an interconnect technology to their application. The service component and the research projects of the Center are designed to move the technology in three major directions over the next five years: 1) make the design of probes more rational by developing a data base and models will quantitatively guide researchers and designers, 2) broaden the distribution offerings of the Center include fluid delivery probes, probes with active circuits, probes coated with bioactive materials and three dimensional probes and 3) move the fabrication from University Laboratories to commercial fabrication facilities. Three internal research projects drive these thrusts. These projects cover extensions of the device technology, through experimentation and modeling, understand more fully the recording and stimulation characteristics of the devices, and development of methods by which exact geometrical relationships between tissue and devices can be confirmed postmortem. In addition to these projects there are several collaborative projects with investigators in universities and industry involving all of our major application areas.
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会议论文
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MULTICHANNEL ARRAY TECHNIQUES: MULTICHANNEL RECORDING & ELECTRODES
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