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利用环形径向偏振光束产生长焦深的图像扫描显微镜。

Image scanning microscopy with a long depth of focus generated by an annular radially polarized beam.

作者信息

Wang Weibo, Zhang Baoyuan, Wu Biwei, Li Xiaojun, Ma Jie, Sun Pengyu, Zheng Shenghao, Tan Jiubin

出版信息

Opt Express. 2020 Dec 21;28(26):39288-39298. doi: 10.1364/OE.413292.

Abstract

Image scanning microscopy (ISM) is a promising tool for bioimaging owing to its integration of signal to noise ratio (SNR) and super resolution superior to that obtained in confocal scanning microscopy. In this paper, we introduce the annular radially polarized beam to the ISM, which yields an axially extended excitation focus and enhanced resolution, providing a new possibility to obtain the whole information of thick specimen with a single scan. We present the basic principle and a rigorous theoretical model for ISM with annular radially polarized beam (ISM-aRP). Results show that the resolution of ISM-aRP can be enhanced by 4% compared with that in conventional ISM, and the axial extent of the focus is longer than 6λ. The projected view of the simulated fluorescent beads suspension specimen demonstrates the validity of ISM-aRP to obtain the whole information of volume sample. Moreover, this simple method can be easily integrated into the commercial laser scanning microscopy systems.

摘要

图像扫描显微镜(ISM)因其在信噪比(SNR)和超分辨率方面的综合表现优于共聚焦扫描显微镜,而成为生物成像领域一种很有前景的工具。在本文中,我们将环形径向偏振光束引入到ISM中,该光束可产生轴向扩展的激发焦点并提高分辨率,为单次扫描获取厚样品的完整信息提供了新的可能性。我们介绍了带有环形径向偏振光束的ISM(ISM-aRP)的基本原理和严格的理论模型。结果表明,与传统ISM相比,ISM-aRP的分辨率可提高4%,且焦点的轴向范围超过6λ。模拟荧光珠悬浮样品的投影视图证明了ISM-aRP获取体积样品完整信息的有效性。此外,这种简单的方法可以很容易地集成到商业激光扫描显微镜系统中。

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