Biomolecular Photonics, Department of Physics, University of Bielefeld, Bielefeld, Germany.
Department of Radioelectronics, Faculty of Electrical Engineering, Czech Technical University in Prague, Technická 2, 166 27 Prague 6, Czech Republic.
Philos Trans A Math Phys Eng Sci. 2021 Jun 14;379(2199):20200300. doi: 10.1098/rsta.2020.0300. Epub 2021 Apr 26.
Fluorescence-based microscopy as one of the standard tools in biomedical research benefits more and more from super-resolution methods, which offer enhanced spatial resolution allowing insights into new biological processes. A typical drawback of using these methods is the need for new, complex optical set-ups. This becomes even more significant when using two-photon fluorescence excitation, which offers deep tissue imaging and excellent z-sectioning. We show that the generation of striped-illumination patterns in two-photon laser scanning microscopy can readily be exploited for achieving optical super-resolution and contrast enhancement using open-source image reconstruction software. The special appeal of this approach is that even in the case of a commercial two-photon laser scanning microscope no optomechanical modifications are required to achieve this modality. Modifying the scanning software with a custom-written macro to address the scanning mirrors in combination with rapid intensity switching by an electro-optic modulator is sufficient to accomplish the acquisition of two-photon striped-illumination patterns on an sCMOS camera. We demonstrate and analyse the resulting resolution improvement by applying different recently published image resolution evaluation procedures to the reconstructed filtered widefield and super-resolved images. This article is part of the Theo Murphy meeting issue 'Super-resolution structured illumination microscopy (part 1)'.
荧光显微镜作为生物医学研究中的标准工具之一,越来越多地受益于超分辨率方法,这些方法提供了增强的空间分辨率,使人们能够深入了解新的生物过程。使用这些方法的一个典型缺点是需要新的、复杂的光学设置。当使用双光子荧光激发时,情况更为严重,因为双光子荧光激发提供了深层组织成像和出色的 z 切片功能。我们展示了在双光子激光扫描显微镜中产生条纹照明模式可以利用开源图像重建软件来实现光学超分辨率和对比度增强。这种方法的特殊吸引力在于,即使在商业双光子激光扫描显微镜的情况下,也不需要进行光学机械修改即可实现这种模式。通过使用自定义宏修改扫描软件来解决扫描镜的问题,并结合电光调制器的快速强度切换,就足以在 sCMOS 相机上采集双光子条纹照明模式。我们通过应用不同的最近发表的图像分辨率评估程序来评估重建的滤波宽场和超分辨率图像,展示和分析了由此产生的分辨率提高。本文是 Theo Murphy 会议议题“超分辨率结构光照明显微镜(第 1 部分)”的一部分。