全自动多色结构照明模块,用于超分辨率显微镜,具有两种激发色。

Haoran Wang, Peter T Brown, Jessica Ullom, Douglas P Shepherd, Rainer Heintzmann, Benedict Diederich
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引用次数: 0

摘要

在生物成像中,需要具有成本效益的高分辨率技术来研究动态细胞内过程。结构照明显微镜(SIM)是理想的实现高轴向和横向分辨率的活样品,由于其光学切片和低光毒性。然而,传统的SIM系统仍然昂贵且复杂。我们推出openSIMMO,这是一个开源的全自动SIM模块,与商用显微镜兼容,支持双色激发。我们的设计使用经济实惠的单模光纤耦合激光器和数字微镜设备(DMD),与开源的ImSwitch软件集成,用于实时超分辨率成像。这种设置提供了高达1.55倍的横向分辨率提高比宽视场显微镜。为了优化DMD衍射,我们开发了一个倾斜和滚动像素配置模型,可以在SIM设置中与各种低成本投影仪一起使用。我们的目标是通过提供开源文档和灵活的软件框架,适应各种硬件(例如,相机,舞台)和重建算法,使基于sim的超分辨率显微镜大众化,从而实现跨设备更广泛的超分辨率升级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully automated multicolour structured illumination module for super-resolution microscopy with two excitation colours.

In biological imaging, there is a demand for cost-effective, high-resolution techniques to study dynamic intracellular processes. Structured illumination microscopy (SIM) is ideal for achieving high axial and lateral resolution in live samples due to its optical sectioning and low phototoxicity. However, conventional SIM systems remain expensive and complex. We introduce openSIMMO, an open-source, fully-automated SIM module compatible with commercial microscopes, supporting dual-color excitation. Our design uses affordable single-mode fiber-coupled lasers and a digital micromirror device (DMD), integrated with the open-source ImSwitch software for real-time super-resolution imaging. This setup offers up to 1.55-fold improvement in lateral resolution over wide-field microscopy. To optimize DMD diffraction, we developed a model for tilt and roll pixel configurations, enabling use with various low-cost projectors in SIM setups. Our goal is to democratize SIM-based super-resolution microscopy by providing open-source documentation and a flexible software framework adaptable to various hardware (e.g., cameras, stages) and reconstruction algorithms, enabling more widespread super-resolution upgrades across devices.

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