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眼科医生的显微镜原理。

Principles of microscopy for ophthalmologists.

作者信息

Amos William Bradshaw

机构信息

Structural Studies Division, UKRI MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge, CB2 0QH, UK.

出版信息

Eye (Lond). 2025 Mar;39(4):635-643. doi: 10.1038/s41433-024-02970-0. Epub 2024 Feb 19.

Abstract

This short review begins with the theories of Airy, Rayleigh and Abbe on microscope resolution. Next, the principal developments in microscopy in the last half-century are examined for relevance to ophthalmology: confocal microscopy, photoactivation light microscopy (PALM), stochastic optical reconstruction microscopy (STORM), stimulated emission depletion (STED), structured illumination (SI), 2-photon and multiphoton excitation microscopy with a focused beam. Except for confocal, these are difficult to apply to the eye in vivo, as are the interference methods available in microscopes. However, interferometry in the form of coherence tomography is now a major ophthalmic method which has diverged from microscopy. Multiphoton excitation microscopy with an unfocussed beam is a new, low-damage microscope method so-far not exploited in ophthalmoscopy. The Mesolens, which throws off the historic limitations in microscopy set by the human eye, is described as a possible future aid to ophthalmology of the anterior eye.

摘要

这篇简短的综述首先介绍了艾里、瑞利和阿贝关于显微镜分辨率的理论。接下来,考察了过去半个世纪显微镜学的主要进展与眼科的相关性:共聚焦显微镜、光激活荧光显微镜(PALM)、随机光学重建显微镜(STORM)、受激发射损耗显微镜(STED)、结构照明(SI)、聚焦光束的双光子和多光子激发显微镜。除了共聚焦显微镜外,这些技术很难应用于活体眼睛,显微镜中的干涉方法也是如此。然而,相干断层扫描形式的干涉测量法现在是一种主要的眼科方法,它已从显微镜学中分化出来。非聚焦光束的多光子激发显微镜是一种新的、低损伤的显微镜方法,目前尚未在检眼镜检查中得到应用。摆脱了人眼所带来的显微镜学历史局限性的中焦透镜,被描述为未来可能有助于眼前部眼科检查的工具。

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