首页> 外文会议>Conference on Imaging, Manipulation, and Analysis of Biomolecules, Cell, and Tissues; 20080121-23; San Jose,CA(US) >Large Field of View Scanning Fluorescence Lifetime Imaging System for Multimode Optical Imaging of Small Animals
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Large Field of View Scanning Fluorescence Lifetime Imaging System for Multimode Optical Imaging of Small Animals

机译:小动物多模光学成像的大视野扫描荧光寿命成像系统

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摘要

We describe a scanning fluorescence lifetime imaging (SFLIM) system that provides a large field of view (LFOV), using a femtosecond (fs) pulsed laser, for multi-mode optical imaging of small animals. Fluorescence lifetime imaging (FLIM) can be a useful optical method to distinguish between fluorophores inside small animals. However, difficulty arises when LFOV is required in FLIM using a fs pulsed laser for the excitation of the fluorophores at low wavelengths (<500nm), primarily because the field of view of the pulsed blue excitation light generated from the second harmonic of the fs pulsed light is limited to about a centimeter in diameter due to the severe scattering and absorption of the light inside tissues. Here, we choose a scanning method in order to acquire a FLIM image with LFOV as one alternative. In the SFLIM system, we used a conventional cooled CCD camera coupled to an ultra-fast time-gated intensifier, a tunable femtosecond laser for the excitation of fluorophores, and an x-y moving stage for scanning. Images acquired through scanning were combined into a single image and then this reconstructed image was compared with images obtained by spectral imaging. The resulting SFLIM system is promising as an alternative method for the FLIM imaging of small animals, containing fluorophores exited by blue light, for LFOV applications such as whole animal imaging.
机译:我们描述了一种扫描荧光寿命成像(SFLIM)系统,该系统使用飞秒(fs)脉冲激光为小动物的多模式光学成像提供了大视野(LFOV)。荧光寿命成像(FLIM)可能是区分小动物内部荧光团的有用光学方法。但是,在使用fs脉冲激光在低波长(<500nm)激发荧光团的FLIM中需要LFOV时,会出现困难,这主要是因为由fs脉冲的二次谐波产生的脉冲蓝色激发光的视场由于组织内部光的严重散射和吸收,光的直径被限制为大约一厘米。在这里,我们选择一种扫描方法以获取以LFOV作为替代方案的FLIM图像。在SFLIM系统中,我们使用了传统的冷却CCD相机,超快时间选通的增强器,可调谐的飞秒激光来激发荧光团以及x-y移动台进行扫描。将通过扫描获取的图像合并为单个图像,然后将该重建图像与通过光谱成像获得的图像进行比较。所得的SFLIM系统有望作为小动物的FLIM成像的替代方法,其中包含蓝光出射的荧光团,用于LFOV应用(例如整个动物成像)。

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