Department of Radioelectronics, Faculty of Electrical Engineering, Czech Technical University in Prague, Technická 2, 16627 Prague 6, Czech Republic.
Laboratory of Nanoscale Biology, École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Gigascience. 2019 Jan 1;8(1):giy126. doi: 10.1093/gigascience/giy126.
Structured illumination microscopy (SIM) is a family of methods in optical fluorescence microscopy that can achieve both optical sectioning and super-resolution effects. SIM is a valuable method for high-resolution imaging of fixed cells or tissues labeled with conventional fluorophores, as well as for imaging the dynamics of live cells expressing fluorescent protein constructs. In SIM, one acquires a set of images with shifting illumination patterns. This set of images is subsequently treated with image analysis algorithms to produce an image with reduced out-of-focus light (optical sectioning) and/or with improved resolution (super-resolution).
Five complete, freely available SIM datasets are presented including raw and analyzed data. We report methods for image acquisition and analysis using open-source software along with examples of the resulting images when processed with different methods. We processed the data using established optical sectioning SIM and super-resolution SIM methods and with newer Bayesian restoration approaches that we are developing.
Various methods for SIM data acquisition and processing are actively being developed, but complete raw data from SIM experiments are not typically published. Publically available, high-quality raw data with examples of processed results will aid researchers when developing new methods in SIM. Biologists will also find interest in the high-resolution images of animal tissues and cells we acquired. All of the data were processed with SIMToolbox, an open-source and freely available software solution for SIM.
结构光照明显微镜(SIM)是一种在光学荧光显微镜中使用的方法,可实现光学切片和超分辨率效果。SIM 是一种对用传统荧光染料标记的固定细胞或组织进行高分辨率成像的有效方法,也可用于对表达荧光蛋白构建体的活细胞的动力学进行成像。在 SIM 中,通过移动照明模式获取一组图像。然后,使用图像分析算法对这组图像进行处理,以生成减少离焦光(光学切片)和/或提高分辨率(超分辨率)的图像。
本文介绍了五个完整的、免费提供的 SIM 数据集,包括原始数据和分析后的数据。我们报告了使用开源软件进行图像采集和分析的方法,并提供了使用不同方法处理后得到的图像示例。我们使用已建立的光学切片 SIM 和超分辨率 SIM 方法以及我们正在开发的新的贝叶斯恢复方法来处理数据。
各种 SIM 数据采集和处理方法正在积极开发中,但通常不会发布完整的 SIM 实验原始数据。公开提供具有处理结果示例的高质量原始数据将有助于研究人员在 SIM 中开发新方法。生物学家也会对我们获得的动物组织和细胞的高分辨率图像感兴趣。所有数据均使用 SIMToolbox 进行处理,SIMToolbox 是一种用于 SIM 的开源且免费的软件解决方案。