首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A portable confocal hyperspectral microscope without any scan or tube lens and its application in fluorescence and Raman spectral imaging
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A portable confocal hyperspectral microscope without any scan or tube lens and its application in fluorescence and Raman spectral imaging

机译:一种便携式共聚焦高光谱显微镜,没有任何扫描或管镜头及其在荧光和拉曼光谱成像中的应用

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摘要

In this study, a portable confocal hyperspectral microscope is developed. In traditional confocal laser scanning microscopes, scan lens and tube lens are utilized to achieve a conjugate relationship between the galvanometer and the back focal plane of the objective, in order to achieve a better resolution. However, these lenses make it difficult to scale down the volume of the system. In our portable confocal hyperspectral microscope (PCHM), the objective is placed directly next to the galvomirror. Thus, scan lens and tube lens are not included in our system and the size of this system is greatly reduced. Furthermore, the resolution is also acceptable in many biomedical and food-safety applications. Through reducing the optical length of the system, the signal detection efficiency is enhanced. This is conducive to realizing both the fluorescence and Raman hyperspectral imaging. With a multimode fiber as a pinhole, an improved image contrast is also achieved. Fluorescent spectral images for HeLa cells/fingers and Raman spectral images of kumquat pericarp are present. The spectral resolution and spatial resolutions are about 0.4 nm and 2.19 mu m, respectively. These results demonstrate that this portable hyperspectral microscope can be used in in-vivo fluorescence imaging and in situ Raman spectral imaging.
机译:在该研究中,开发了一种便携式共聚焦高光谱显微镜。在传统的共聚焦激光扫描显微镜中,扫描透镜和管透镜用于在物镜的电流计和后焦平面之间实现共轭关系,以实现更好的分辨率。然而,这些镜头使得难以缩小系统的体积。在我们的便携式共聚焦高光谱显微镜(PCHM)中,该物镜直接放在电镜旁边。因此,扫描镜头和管透镜不包括在我们的系统中,并且该系统的尺寸大大降低。此外,在许多生物医学和食品安全应用中也可以接受该分辨率。通过减小系统的光学长度,提高了信号检测效率。这有利于实现荧光和拉曼高光谱成像。通过作为针孔的多模光纤,还实现了改进的图像对比度。存在用于Hela细胞/手指的荧光光谱图像和Kumquat Pericarp的RAMAN光谱图像。光谱分辨率和空间分辨率分别为约0.4nm和2.19μm。这些结果表明,该便携式高光谱显微镜可用于体内荧光成像和原位拉曼光谱成像。

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