UCsim2:使用UC2的二维结构照明显微镜。

Haoran Wang, René Lachmann, Barbora Marsikova, Rainer Heintzmann, Benedict Diederich
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引用次数: 0

摘要

最先进的显微镜技术使亚衍射屏障生物结构的成像成本高或缺乏透明度的代价。我们试图通过对我们最近发布的开源光学工具箱UC2进行超分辨率升级来减少这些障碍。我们的新注塑零件允许更大的建筑与更高的精度。与三维打印相比,低4倍的制造公差使组件更具可重复性。通过添加消费级可用的开源硬件,如数字镜像设备和激光投影仪,我们展示了一个紧凑的三维多模态设置,结合了图像扫描显微镜和结构照明显微镜。通过成像Alexa Fluor®647和硅罗丹明染色的HeLa细胞,我们展示了与宽视场限制相比,使用两种不同模式的分辨率和光学切片的增益。我们比较不同的物镜,并通过分享我们的设置的设计和手册,我们使超分辨率成像人人可用。本文是Theo Murphy会议议题“超分辨率结构照明显微镜(第二部分)”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UCsim2: two-dimensionally structured illumination microscopy using UC2.

State-of-the-art microscopy techniques enable the imaging of sub-diffraction barrier biological structures at the price of high costs or a lack of transparency. We try to reduce some of these barriers by presenting a super-resolution upgrade to our recently presented open-source optical toolbox UC2. Our new injection moulded parts allow larger builds with higher precision. The 4× lower manufacturing tolerance compared to three-dimensional printing makes assemblies more reproducible. By adding consumer-grade available open-source hardware such as digital mirror devices and laser projectors, we demonstrate a compact three-dimensional multimodal setup that combines image scanning microscopy and structured illumination microscopy. We demonstrate a gain in resolution and optical sectioning using the two different modes compared to the widefield limit by imaging Alexa Fluor ® 647- and Silicon Rhodamine-stained HeLa cells. We compare different objective lenses and by sharing the designs and manuals of our setup, we make super-resolution imaging available to everyone. This article is part of the Theo Murphy meeting issue 'Super-resolution structured illumination microscopy (part 2)'.

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