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首页> 外文期刊>Journal of Microscopy >Three-dimensional spectral imaging by hadamard transform spectroscopy in a programmable array microscope.
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Three-dimensional spectral imaging by hadamard transform spectroscopy in a programmable array microscope.

机译:在可编程阵列显微镜中通过哈达玛德变换光谱法进行三维光谱成像。

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摘要

We report the acquisition and deconvolution of three-dimensional spectrally resolved images in a programmable array microscope implementing a Hadamard transform fluorescence spectroscopy system with adjustable spectral resolution. A stack of 16 two-dimensional spectral images was collected at 400 nm intervals along the optical axis. The specimen consisted of a polytene chromosome spread from Drosophila melanogaster doubly labelled for the Polyhomeotic protein by indirect immunofluorescence labelling with Alexa594 and for DNA with YOYO-1. The resulting four-dimensional data set consisted of the xyz spatial dimensions (898 x 255 x 16) with a 26-point spectrum at each spatial location. The total exposure time to the sample was 34 min. The system requires the acquisition of multiple images, and thus works best with fluorophores that are resistant to photobleaching. Image deconvolution reduced the amount of out-of-focus blur by up to a factor of 8, resulting in a dramatic improvement in the visualization of the chromosome backbone and localization of the specific Polyhomeotic domains.
机译:我们报告了在实现具有可调光谱分辨率的Hadamard变换荧光光谱系统的可编程阵列显微镜中三维光谱分辨图像的采集和去卷积。沿光轴以400 nm的间隔收集了16张二维光谱图像。标本由从果蝇(Drosophila melanogaster)传播的多聚体染色体组成,通过用Alexa594间接免疫荧光标记和用YOYO-1 DNA双重标记了多同源蛋白。生成的四维数据集由xyz空间维(898 x 255 x 16)组成,每个空间位置都有26点光谱。样品的总暴露时间为34分钟。该系统需要采集多幅图像,因此最适合用于抗光漂白的荧光团。图像去卷积将离焦模糊的数量减少了多达8倍,从而使染色体主干的可视化和特定的多同源域的定位得到了显着改善。

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