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斜平面显微镜的最新进展

Recent advances in oblique plane microscopy.

作者信息

Kim Jeongmin

机构信息

Department of Applied Bioengineering, Graduate School of Convergence Science and Technology, Seoul National University, Seoul 08826, Republic of Korea.

Research Institute for Convergence Science, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

Nanophotonics. 2023 Apr 20;12(13):2317-2334. doi: 10.1515/nanoph-2023-0002. eCollection 2023 Jun.

Abstract

Oblique plane microscopy (OPM) directly captures object information in a plane tilted from the focal plane of the objective lens without the need for slow z-stack acquisition. This unconventional widefield imaging approach is made possible by using a remote focusing principle that eliminates optical aberrations for object points beyond the focal plane. Together with oblique lightsheet illumination, OPM can make conventional lightsheet imaging fully compatible with standard biological specimens prepared on microscope slides. OPM is not only an excellent high-speed volumetric imaging platform by sweeping oblique lightsheet illumination without mechanically moving either the sample or objective lens in sample space, but also provides a solution for direct oblique plane imaging along any orientation of interest on the sample in a single shot. Since its first demonstration in 2008, OPM has continued to evolve into an advanced microscope platform for biological, medical, and materials science applications. In recent years, many technological advances have been made in OPM with the goal of super-resolution, fast volumetric imaging, and a large imaging field of view, etc. This review gives an overview of OPM's working principle and imaging performance and introduces recent technical developments in OPM methods and applications. OPM has strong potential in a variety of research fields, including cellular and developmental biology, clinical diagnostics in histology and ophthalmology, flow cytometry, microfluidic devices, and soft materials.

摘要

斜平面显微镜(OPM)无需进行缓慢的z轴堆叠采集,就能直接在与物镜焦平面倾斜的平面上捕获物体信息。这种非常规的宽场成像方法通过使用远程聚焦原理得以实现,该原理消除了焦平面以外物体点的光学像差。与斜光片照明相结合,OPM可使传统光片成像与在显微镜载玻片上制备的标准生物样本完全兼容。OPM不仅是一个出色的高速体积成像平台,通过扫描斜光片照明,无需在样本空间中机械移动样本或物镜,而且还为在单次拍摄中沿样本上任何感兴趣的方向进行直接斜平面成像提供了解决方案。自2008年首次展示以来,OPM不断发展成为一个适用于生物、医学和材料科学应用的先进显微镜平台。近年来,OPM在超分辨率、快速体积成像和大成像视野等方面取得了许多技术进步。本文综述了OPM的工作原理和成像性能,并介绍了OPM方法和应用的最新技术进展。OPM在包括细胞与发育生物学、组织学和眼科临床诊断、流式细胞术、微流控装置以及软材料等各种研究领域具有强大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03fd/11501266/8b7d7ca5e4f4/j_nanoph-2023-0002_fig_001.jpg

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