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Parallel confocal and complete spectrum imager for fluorescent detection of high-density microarray

机译:平行共聚焦全光谱成像仪用于高密度微阵列的荧光检测

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Abstract: Confined arrays of biochemical probes deposited on a solid support surface (analytical microarray or 'chip') provide an opportunity to analysis multiple reactions simultaneously. Microarrays are increasingly used in genetics, medicine and environment scanning as research and analytical instruments. A power of microarray technology comes from its parallelism which grows with array miniaturization, minimization of reagent volume per reaction site and reaction multiplexing. An optical detector of microarray signals should combine high sensitivity, spatial and spectral resolution. Additionally, low-cost and a high processing rate are needed to transfer microarray technology into biomedical practice. We designed an imager that provides confocal and complete spectrum detection of entire fluorescently-labeled microarray in parallel. Imager uses microlens array, non-slit spectral decomposer, and high- sensitive detector (cooled CCD). Two imaging channels provide a simultaneous detection of localization, integrated and spectral intensities for each reaction site in microarray. A dimensional matching between microarray and imager's optics eliminates all in moving parts in instrumentation, enabling highly informative, fast and low-cost microarray detection. We report theory of confocal hyperspectral imaging with microlenses array and experimental data for implementation of developed imager to detect fluorescently labeled microarray with a density approximately 10$+3$/ sites per cm$+2$/. !16
机译:摘要:沉积在固体支持物表面上的生化探针的受限阵列(分析微阵列或“芯片”)提供了同时分析多个反应的机会。微阵列作为研究和分析仪器越来越多地用于遗传学,医学和环境扫描中。微阵列技术的强大之处在于其并行性,这种并行性随着阵列小型化,每个反应位点试剂体积的最小化和反应多路复用而增长。微阵列信号的光学检测器应结合高灵敏度,空间和光谱分辨率。另外,需要低成本和高处理速率来将微阵列技术转移到生物医学实践中。我们设计了一种成像仪,可同时对整个荧光标记微阵列进行共聚焦和完整光谱检测。成像仪使用微透镜阵列,非狭缝光谱分解器和高灵敏度检测器(冷却的CCD)。两个成像通道可同时检测微阵列中每个反应位点的定位强度,积分强度和光谱强度。微阵列和成像器光学器件之间的尺寸匹配消除了仪器中所有移动部件,从而实现了信息量大,快速且低成本的微阵列检测。我们报告与微透镜阵列共焦高光谱成像的理论和实验数据,用于实施发达的成像仪,以检测荧光标记的微阵列,密度约为10 $ + 3 $ /个位置/ cm $ + 2 $ /。 !16

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