High-Resolution, High Speed, High-Throughput 3-Dimensional Detector for Biology
High-Resolution, High Speed, High-Throughput 3-Dimensional Detector for Biology
批准号:
7571690
负责人:
SHIMON WEISS
金额:
$47.37万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-04-01 至 2011-02-28
关键词:
3-DimensionalAnimalsAnisotropyAnodesArtsBehaviorBiochemicalBiologicalBiologyBiophysicsCaliberCell physiologyCellsCharacteristicsChargeComplexComputer softwareDataData AnalysesDetectionDevelopmentDevicesDiagnosisDimensionsDiseaseElectronicsElementsEventEvolutionFluorescenceFluorescence MicroscopyFluorescence Resonance Energy TransferFluorescence SpectroscopyFutureGenerationsHeightHumanImageInterdisciplinary StudyLasersLeadLifeMeasuresMedicalMedicineMethodologyMicrofluidicsMicroscopicMicroscopyMissionMolecularMolecular ProbesMonitorNIH Program AnnouncementsNational Institute of Biomedical Imaging and BioengineeringNational Institute of General Medical SciencesNoisePatientsPerformancePhotonsPhysicsPhysiologic pulsePositioning AttributeProtocols documentationPublic HealthResearchResearch PersonnelResearch ProposalsResolutionScientistSemiconductorsSignal TransductionSpectrum AnalysisSpeedSurfaceTechniquesTimeTissuesTrainingTubeVisionacronymsanimal tissuebasebioimagingdata acquisitiondesigndetectordigitalgallium arsenidein vivoinstrumentinstrumentationmacromoleculemultidisciplinarynanocrystalphotomultiplierprogramsprotein foldingprototypequantumsingle moleculesymposium
中文摘要
描述(申请人提供):这项提案的目标是开发一种高性能的光子计数三维成像器(2个空间,1个时间),用于生物学和利用其新功能的新方法和协议。该探测器将针对可见光和近红外光谱范围(500-850 nm)的超高灵敏度荧光光谱进行优化。它将具有:(I)基于快速GaAs光电阴极的高探测效率:~35%;(Ii)使用交叉条阳极设计,以高空间分辨率记录单光子:35um;(Iii)使用微通道板,高时间分辨率:250ps;以及(Iv)能够同时进行高局域和全局计数速率(100 kHz,20 MHz)。这些特征被缩写为“H33D”(发音为HEED),意为高空间、高时间分辨率和高吞吐量(3“H‘”S,因此称为H3)三维探测器。H33D探测器将适用于各种生物医学应用,如活细胞和组织中单分子、分子络合物和大分子的成像和光谱,以及活体动物成像,其中一些将在本研究计划的4年期间进行研究。最后一项应用将是使用H33D探测器对人类患者的荧光分子探测器进行生物医学成像的第一步,具有前所未有的灵敏度。我们的跨学科研究计划的这些特点将具有生物物理/生化背景的科学家和具有物理/仪器背景的科学家重新组合在一起,这与1999年由BECON组织的生物医学成像研讨会“可视化生物学和医学的未来”所表达的愿景完美匹配,并且特别适合NIGMS和NIBIB的使命,这两个机构是BRG计划公告PA-02-011的一部分。这项研究与公共健康的相关性:H33D探测器提供的更丰富的信息将导致在分子水平上更好地了解细胞过程,这是设计旨在通过医用化合物治疗异常细胞行为的智能对策的先决条件。H33D探测器在活体动物和人体成像中的长期应用将为在分子水平上诊断和监测疾病的演变提供亟需的高灵敏度仪器。
英文摘要
DESCRIPTION (provided by applicant): The objectives of this proposal are to develop a high-performance photon-counting 3-dimensional imager (2 spatial, 1 temporal) for biology and new methodologies and protocols taking advantage of its new capabilities. This detector will be optimized for ultrahigh sensitivity fluorescence spectroscopy in the visible and near-infrared spectral range (500-850 nm). It will have: (i) a high detection efficiency based on a fast GaAs photocathode: ~35 %, (ii) will register single-photons with high spatial resolution using a cross-strip anode design: 35 um, and (iii) high temporal resolution using microchannel plates: 250 ps, and (iv) be capable of both high local and global couting rates (100 kHz, 20 MHz). These characteristics are condensed in the acronym "H33D" (pronounced heed) for High-spatial, High-temporal resolution, and High throughput (the 3 "H'"s, hence H3) 3-Dimensional detector. The H33D detector will be suitable for a variety of biomedical applications, such as imaging and spectroscopy of single molecules, molecular complexes and macromolecules in living cells and tissues, as well as in vivo animal imaging, some of which will be studied during the proposed 4 year span of this research proposal. The last application will be a first step towards using the H33D detector for biomedical imaging of fluorescent molecular probes in human patients with unprecedented sensitivity. These characteristics of our interdisciplinary research proposal regrouping scientists with a biophysical/biochemical background and scientists with a physics/instrumentation background are in perfect match with the vision expressed during the Biomedical Imaging Symposium 'Visualizing the Future of Biology and Medicine" organized by the BECON in 1999, and fits particularly well within the mission of the NIGMS and the NIBIB, who are part of BRG program announcement PA-02-011. Relevance of this research to public health: The richer information provided by the H33D detector will lead to a better understanding of cellular processes at the molecular level, a prerequisite step to design intelligent counter-measures aimed at curing abnormal cellular behavior with medical compounds. The long-term application of the H33D detector for live animal and human imaging will provide a much needed high- sensitivity instrument for diagnosing and monitoring the evolution of diseases at the molecular level.
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SINGLE-MOLECULE FLUORESCENCE ANALYSIS OF TRANSCRIPTION
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Single-Molecule Fluoresence Analysis of Transcription
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