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Compact Image Slicing Spectrometer (ISS) for hyperspectral fluorescence microscopy

机译:紧凑型图像切片光谱仪(ISS)用于高光谱荧光显微镜

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摘要

An image slicing spectrometer (ISS) for microscopy applications is presented. Its principle is based on the redirecting of image zones by specially organized thin mirrors within a custom fabricated component termed an image slicer. The demonstrated prototype can simultaneously acquire a 140nm spectral range within its 2D field of view from a single image. The spectral resolution of the system is 5.6nm. The FOV and spatial resolution of the ISS depend on the selected microscope objective and for the results presented is 45×45μm2 and 0.45μm respectively. This proof-of-concept system can be easily improved in the future for higher (both spectral and spatial) resolution imaging. The system requires no scanning and minimal post data processing. In addition, the reflective nature of the image slicer and use of prisms for spectral dispersion make the system light efficient. Both of the above features are highly valuable for real time fluorescent-spectral imaging in biological and diagnostic applications.
机译:介绍了用于显微镜应用的图像切片光谱仪(ISS)。它的原理是基于在定制的称为图像切片器的制造组件内通过专门组织的薄镜对图像区域进行重定向的。演示的原型可以从单个图像同时在其2D视野内获取140nm光谱范围。该系统的光谱分辨率为5.6nm。国际空间站的视场和空间分辨率取决于所选择的显微镜物镜,其结果分别为45×45μm 2 和0.45μm。将来可以轻松改进此概念验证系统,以实现更高的分辨率(光谱和空间)成像。该系统不需要扫描,并且几乎不需要后期数据处理。此外,图像切片器的反射特性以及使用棱镜进行光谱色散使系统高效发光。以上两个功能对于生物学和诊断应用中的实时荧光光谱成像非常有价值。

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