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使用轴对称二元相位滤波器的光片荧光显微镜。

Light sheet fluorescence microscopy using axi-symmetric binary phase filters.

作者信息

Ryu Suho, Seong Baekcheon, Lee Chan-Wool, Ahn Min Yong, Kim Woo Taek, Choe Kwang-Min, Joo Chulmin

机构信息

Department of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 03722, South Korea.

These authors contributed equally to the work.

出版信息

Biomed Opt Express. 2020 Jun 23;11(7):3936-3951. doi: 10.1364/BOE.394841. eCollection 2020 Jul 1.

Abstract

Light sheet fluorescence microscopy (LSFM) has become an indispensable tool in biomedical studies owing to its depth-sectioning capability and low photo-bleaching. The axial resolution in LSFM is determined mainly by the thickness of the illumination sheet, and a high numerical-aperture lens is thus preferred in the illumination to increase the axial resolution. However, a rapid divergence of the illumination beam limits the effective field-of-view (FoV), that provides high-resolution images. Several strategies have been demonstrated for FoV enhancement, which involve the use of Bessel or Airy beams, for example. However, the generation of these beams requires complicated optical setup or phase filters with continuous phase distributions, which are difficult to manufacture. In contrast, a binary phase filter (BPF) comprising concentric rings with 0 or π phases produces a response similar to its continuous original and is easy to realize. Here, we present a novel form of LSFM that integrates BPFs derived from two representative axi-symmetric aberrations, including phase axicon and spherical aberrations, to improve the imaging performance. We demonstrate that these BPFs significantly increase the FoV, and those derived from axicon generate self-reconstructing beams, which are highly desirable in imaging through scattering specimens. We validate its high-contrast imaging capability over extended FoV by presenting three-dimensional images of microspheres, imaginal disc of Drosophila larva, and Arabidopsis.

摘要

光片荧光显微镜(LSFM)因其深度切片能力和低光漂白特性,已成为生物医学研究中不可或缺的工具。LSFM中的轴向分辨率主要由照明光片的厚度决定,因此在照明中首选高数值孔径透镜以提高轴向分辨率。然而,照明光束的快速发散限制了有效视场(FoV),而有效视场能提供高分辨率图像。已经展示了几种用于扩大视场的策略,例如涉及使用贝塞尔光束或艾里光束。然而,这些光束的产生需要复杂的光学装置或具有连续相位分布的相位滤波器,而这些难以制造。相比之下,由具有0或π相位的同心环组成的二元相位滤波器(BPF)产生的响应与其连续的原始滤波器相似,并且易于实现。在此,我们提出了一种新型的LSFM,它集成了源自两种代表性轴对称像差(包括相位轴锥镜和球差)的BPF,以提高成像性能。我们证明这些BPF显著增加了视场,并且源自轴锥镜的BPF产生自重建光束,这在通过散射样本成像中非常理想。我们通过展示微球、果蝇幼虫的成虫盘和拟南芥的三维图像,验证了其在扩展视场上的高对比度成像能力。

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