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研究球差在光片荧光显微镜中扩展聚焦能力以扩大视野的情况。

Investigation of the extended focusing capability of the spherical aberration to enlarge the field of view in light-sheet fluorescence microscopy.

作者信息

Deng Suhui, Ding Zijun, Yuan Deyi, Liu Mingping, Zhou Huilin

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2021 Jan 1;38(1):19-24. doi: 10.1364/JOSAA.410209.

Abstract

In light-sheet fluorescence microscopy (LSFM), using Gaussian beams for light-sheet generation results in a trade-off between the thickness and the field of view (FOV). Here we present a theoretical analysis of using spherical aberration to enlarge the FOV while keeping the light-sheet thickness small. Such spherical aberration can arise when focusing beams through an interface between materials of mismatched refractive indices. The depth-of-focus extension of the Gaussian beam is achieved when using air objectives to focus light into the samples dipped in the immersion medium with a higher refractive index. By scanning this elongated beam, a thin light sheet with a wide FOV can be used for LSFM imaging. Meanwhile, the accompanied sidelobes with the spherical aberrated light sheet, which are mainly distributed in the rear part of the light sheet, are also discussed. Simulation results show that an extended FOV of 64.4µ is possible for an objective lens of =0.3, which is about 5 times that of the unaberrated case. For such an extended FOV, a comparatively thin thickness of 1.38µ as well as the first sidelobe about 11.1% of the peak intensity in the center are also demonstrated.

摘要

在光片荧光显微镜(LSFM)中,使用高斯光束生成光片会导致厚度和视场(FOV)之间的权衡。在此,我们提出一种利用球差来扩大视场同时保持光片厚度较小的理论分析。当光束通过折射率不匹配的材料之间的界面聚焦时,会产生这种球差。使用空气物镜将光聚焦到浸入具有较高折射率的浸没介质中的样品时,可实现高斯光束焦深的扩展。通过扫描这种拉长的光束,可将具有宽视场的薄光片用于LSFM成像。同时,还讨论了球差光片伴随的旁瓣,其主要分布在光片的后部。模拟结果表明,对于数值孔径为0.3的物镜,扩展视场可达64.4µ,约为无像差情况的5倍。对于这种扩展视场,还展示了相对较薄的1.38µ厚度以及中心处第一个旁瓣约为峰值强度的11.1%。

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