Alsamsam Mohammad Nour, Kopūstas Aurimas, Jurevičiūtė Meda, Tutkus Marijonas
Department of Molecular Compound Physics, Center for Physical Sciences and Technology, Vilnius, Lithuania.
Institute of Biotechnology, Life Sciences Center, Vilnius University, Vilnius, Lithuania.
HardwareX. 2022 Oct 4;12:e00368. doi: 10.1016/j.ohx.2022.e00368. eCollection 2022 Oct.
Commercial super-resolution (SR) imaging systems require a high budget, while current more affordable open source microscopy systems lack modularity and sometimes are too complex or lack reliability. We present miEye - a cost-effective microscope designed for high-resolution wide-field fluorescence imaging. The build is constructed using a CNC milled aluminum microscope body and commercially available optomechanics, with open-source Python-based microscope control, data visualization, and analysis software integration. The data acquisition software works robustly with commonly used industrial-grade complementary metal oxide semiconductor (iCMOS) cameras, performs IR beam back-reflection-based automatic focus stabilization, and allows for laser control via an Arduino-based laser relay. The open-source nature of the design is aimed to facilitate adaptation by the community. The build can be constructed for a cost of roughly 50 k €. It contains SM-fiber and MM-fiber excitation paths that are easy to interchange and an adaptable emission path. Also, it ensures <5 nm/min stability of the sample on all axes, and allows achieving <30 nm lateral resolution for dSTORM and DNA-PAINT single-molecule localization microscopy (SMLM) experiments. Thus it serves as a cost-effective and adaptable addition to the open source microscopy community and potentially will allow high-quality SR imaging even for limited-budget research groups.
商业超分辨率(SR)成像系统需要高额预算,而目前价格更为亲民的开源显微镜系统缺乏模块化,有时过于复杂或缺乏可靠性。我们展示了miEye——一款专为高分辨率宽场荧光成像设计的经济高效型显微镜。该显微镜主体采用数控铣削铝制结构以及市售的光机部件构建而成,并集成了基于Python的开源显微镜控制、数据可视化和分析软件。数据采集软件能与常用的工业级互补金属氧化物半导体(iCMOS)相机稳定配合工作,通过基于红外光束背反射的方式实现自动聚焦稳定,并可通过基于Arduino的激光继电器进行激光控制。该设计的开源特性旨在便于社区进行适配。此构建成本约为5万欧元。它包含易于互换的单模光纤和多模光纤激发路径以及一个可适配的发射路径。此外,它能确保样品在所有轴向上的稳定性<5纳米/分钟,并能在直接随机光学重建显微镜(dSTORM)和DNA点积累成像及读出显微镜技术(DNA-PAINT)单分子定位显微镜(SMLM)实验中实现<30纳米的横向分辨率。因此,它是开源显微镜社区中一种经济高效且可适配的补充设备,甚至对于预算有限的研究团队而言,也有可能实现高质量的超分辨率成像。