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Line-Scanning Microscopy for Time-Gated and Spectrally Resolved Fluorescence Imaging

机译:线扫描显微镜用于时间门控和光谱分辨荧光成像

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摘要

Laser-scanning fluorescence microscopy for efficient acquisition of time-gated and spectrally resolved fluorescence images was developed based on line illumination of the laser beam and detection of the fluorescence image through a slit. In this optical arrangement, the fluorescence image was obtained by scanning only one axis perpendicular to the excitation line, and the acquisition time was significantly reduced compared with conventional laser-scanning confocal microscopy. A multidimensional fluorescence dataset consisting of fluorescence intensities as a function of x-position, y-position, fluorescence wavelength, and delay time after photoexcitation was analyzed and decomposed based on the parallel factor analysis model. The performance of the line-scanning microscopy was examined by applying it to the analysis of one of the plant defense responses, accumulation of antimicrobial compounds of phytoalexin in oat (Avena sativa), induced by the elicitor treatment.
机译:基于激光束的线照射和通过狭缝对荧光图像的检测,开发了用于有效采集时间门控和光谱分辨的荧光图像的激光扫描荧光显微镜。在这种光学布置中,通过仅扫描垂直于激发线的一个轴来获得荧光图像,并且与传统的激光扫描共聚焦显微镜相比,采集时间大大减少。基于并行因子分析模型,对多维荧光数据集进行了分析和分解,该多维数据集由荧光强度作为光激发后x位置,y位置,荧光波长和延迟时间的函数组成。通过将线扫描显微镜应用于通过激发子处理诱导的植物防御反应之一,即燕麦(Avena sativa)中植物抗毒素的抗菌化合物的积累,分析了线扫描显微镜的性能。

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