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对称分散光谱单分子定位显微镜术

Symmetrically dispersed spectroscopic single-molecule localization microscopy.

作者信息

Song Ki-Hee, Zhang Yang, Brenner Benjamin, Sun Cheng, Zhang Hao F

机构信息

Department of Biomedical Engineering, Northwestern University, 2145 Sheridan Rd., Evanston, IL 60208 USA.

Department of Mechanical Engineering, Northwestern University, 2145 Sheridan Rd., Evanston, IL 60208 USA.

出版信息

Light Sci Appl. 2020 May 25;9:92. doi: 10.1038/s41377-020-0333-9. eCollection 2020.

Abstract

Spectroscopic single-molecule localization microscopy (sSMLM) was used to achieve simultaneous imaging and spectral analysis of single molecules for the first time. Current sSMLM fundamentally suffers from a reduced photon budget because the photons from individual stochastic emissions are divided into spatial and spectral channels. Therefore, both spatial localization and spectral analysis only use a portion of the total photons, leading to reduced precisions in both channels. To improve the spatial and spectral precisions, we present symmetrically dispersed sSMLM, or SDsSMLM, to fully utilize all photons from individual stochastic emissions in both spatial and spectral channels. SDsSMLM achieved 10-nm spatial and 0.8-nm spectral precisions at a total photon budget of 1000. Compared with the existing sSMLM using a 1:3 splitting ratio between spatial and spectral channels, SDsSMLM improved the spatial and spectral precisions by 42% and 10%, respectively, under the same photon budget. We also demonstrated multicolour imaging of fixed cells and three-dimensional single-particle tracking using SDsSMLM. SDsSMLM enables more precise spectroscopic single-molecule analysis in broader cell biology and material science applications.

摘要

光谱单分子定位显微镜(sSMLM)首次用于实现单分子的同步成像和光谱分析。目前的sSMLM从根本上存在光子预算减少的问题,因为来自单个随机发射的光子被分配到空间和光谱通道。因此,空间定位和光谱分析都只使用了总光子的一部分,导致两个通道的精度都降低。为了提高空间和光谱精度,我们提出了对称分散的sSMLM,即SDsSMLM,以充分利用空间和光谱通道中来自单个随机发射的所有光子。SDsSMLM在1000的总光子预算下实现了10纳米的空间精度和0.8纳米的光谱精度。与在空间和光谱通道之间使用1:3分光比的现有sSMLM相比,在相同的光子预算下,SDsSMLM的空间和光谱精度分别提高了42%和10%。我们还展示了使用SDsSMLM对固定细胞进行多色成像和对三维单粒子进行跟踪。SDsSMLM能够在更广泛的细胞生物学和材料科学应用中进行更精确的光谱单分子分析。

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