NEUROPHYSIOLOGY DATABASE OF INBRED MUTANT STRAINS
NEUROPHYSIOLOGY DATABASE OF INBRED MUTANT STRAINS
批准号:
6074862
负责人:
Jeffrey Noebels
金额:
$20.4万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-09-30 至 2002-06-30
关键词:
Internet behavioral /social science research tag biological models circadian rhythms electrodes electroencephalography electrophysiology gene mutation genetic models genetic strain genotype implant inbreeding information dissemination information retrieval laboratory mouse molecular biology information system mutant neurophysiology phenotype
中文摘要
在近交系小鼠中确定的基因突变的神经感觉评价是大脑和行为的遗传分析的重要组成部分,并且是评估对药物治疗的反应的关键工具。 该项目的具体目标是开发和实施快速,高通量的电生理调查方法和一个开放的电子参考数据库,包含标准化的近交系和突变体的神经生理学评价,包括表面皮层脑电图,深度记录海马脑电图,视觉诱发电位,脑干听觉诱发电位,在清醒和行为小鼠。 具体目标包括:1)技术部分,涉及开发用于长期植入的重量更轻、电极密度更高的硬膜外和深部电极阵列。 目前的技术将通过实施非创伤性,灵活的零插入力微型连接器和校准,区域特定的位置得到加强。电生理数据将以数字方式获取,并与分屏数字视频相结合,并将实施通过互联网快速显示和在线共享的程序。 2)一个定量数据分析组件,涉及应用自发性皮层电图和平均诱发电位的频谱和拓扑分析,以目录近交系。 3)表型筛选标准组成部分:将进行多参数研究,以评估与昼夜节律、一天中的时间和重复采样相关的变异性;年龄和行为状态;以及技术伪影的表征,以优化所有基础和诱发数据样本的重现性和验证。 4)一个教学部分:所有的技术将被标准化,定量分析和筛选的方法将被充分详细地描述和传播,以供所有NIH诱变中心和其他实验室采用。 5)科学数据库和信息学部分:关于近交系的所有原始数据和分析数据的存储和检索将存放在一个开放的参考数据库中,可从互联网上的一个专门网站访问,并公布摘要结果。 验证后,研究者筛选的特定突变体数据将在研究后不久通过同意获得。 来自多个中心的近交系和定义突变体的参考数据将在一个公共访问数据库中启动,允许实验室随后存款、检索甚至重新分析来自所有中心筛选的小鼠的参考数据。 将创建与其他数据库的超链接。 该项目将提供用于近交系小鼠品系和定义的基因突变的比较电生理学、行为学和实验药理学的规范性数据的框架。
英文摘要
Neurosensory evaluation of defined gene mutations in inbred strains of mice is an essential component of the genetic analysis of brain and behavior, and a critical tool in assessing responses to pharmacological treatment. The specific aims of this project are to develop and implement rapid, high-throughput electrophysiologic survey methods and an open electronic reference database containing standardized neurophysiological evaluation of inbred strains and mutants, including surface cortical EEG, depth-recorded hippocampal EEG, visual evoked potentials, and brainstem auditory evoked potentials, in awake and behaving mice. The specific aims include: 1) A technological component, involving development of lighter-weight, higher- electrode density epidural and depth electrode arrays for chronic implantation. Current techniques will be enhanced by implementation of non-traumatic, flexible zero-insertion force microconnectors and calibrated, region-specific placement. Electrophysiological data will be acquired digitally, combined with split-screen digital video, and programs to rapidly display and share online over the internet will be implemented. 2) A quantitative data analysis component, involving application of spectral and topological analysis of spontaneous electrocorticograms and averaged evoked potentials to catalog inbred strains. 3) A phenotypic screening standards component: Multi-parametric studies will be performed to assess variability related to diurnal rhythm, time of day, and repeated sampling; age and behavioral state; and characterization of technical artifacts in order to optimize reproducibility and validation of all basal and evoked data samples. 4) An instructional component: all technqiues will be standardized and methods for quantitative analysis and screening will be fully detailed and disseminated for adoption by all NIH mutagenesis centers and other laboratories. 5) A scientific database and informatics component: Storage and retrieval of all raw and analyzed data on inbred strains will be deposited in an open reference database accessible from a dedicated website over the Internet, and summary results published. Following validation, data on specific mutants screened for individual investigators will be available by consent shortly after study. The reference data on inbred strains and defined mutants from multiple centers will be initiated in a common access database, allowing laboratories to subsequently deposit, retrieve, and even reanalyze reference data from mice screened by all centers. Hyperlinks will be created with other databases. This project will provide the framework for normative data to be used for comparative electrophysiological, behavioral and experimental pharmacology on inbred mouse strains and defined gene mutations.
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会议论文
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资助金额:$10.63万
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Course Development in the Neurobiology of Disease
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财政年份:2005
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依托单位:
Course Development in the Neurobiology of Disease
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批准号:7071576
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资助金额:$6.83万
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Parallel Sequence Profiling of Ion Channels in Epilepsy
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Parallel Sequence Profiling of Ion Channels in Epilepsy
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Parallel Sequence Profiling of Ion Channels in Epilepsy
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