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Core-Vision Processes

Core-Vision Processes
核心愿景流程
批准号:
8906858
负责人:
James J DiCarlo
金额:
$57.69万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-08-01 至 2016-06-30

项目摘要

项目成果

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中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Five years of renewed support are requested for three Core modules in the Department of Brain and Cognitive Sciences at the Massachusetts Institute of Technology: an Instrument Core, an Electronics Core, and an MR Imaging Core. We presently have twelve NEI-supported investigators who carry out research on vision, the visual system and the oculomotor system, with a total of 21 grants and two fellowships from NEI. Their research includes: (1) neurophysiological studies of the visual and oculomotor systems, (2) anatomical studies of the visual and oculomotor systems, (3) developmental studies of the vision and visuomotor function, (4) psychophysical studies of visual functions in non-human primates, (5) psychophysical studies of visual functions in normal human and patient populations, (6) computational analyses of vision and eye movement, and (7) imaging studies to elucidate the roles of various brain sub-regions in visual processing. Ours is a highly-productive, rapidly growing department with a longstanding focus on vision and eye-related research. The three Core Modules supported exclusively by this grant are the indispensable shared infrastructure of that productivity. Each Core has enabled the construction of novel devices and research methods that are not available off-the-shelf, facilitating interactions among the Core faculty as well as NEI investigators at other institutions. In addition, the Cores allow for rapid repair of equipment (often preventing significant down-time) and for training of students and postdoctoral fellows in design and fabrication constraints. We have a track-record of administering these Cores in ways that maximize their value, updating their resources and the training of their personnel as research demands have changed. NEI's continued support is essential to the operation and evolution of these Cores, which in turn are essential to our research. The collective value of the wide range of studies that depend upon these Cores represent an excellent return on NEI's investment.
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Computationally Enabled Integrative Neuroscience
Computationally Enabled Integrative Neuroscience
Post-natal development of high-level visual representation in primates
Time delimited neural silencing to dissect the basis of visual object perception
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