调制激发光谱显微镜:优越的解混和多路成像与最小的激发波长

IF 6.5 1区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Zhipeng Zhang, Yi He, Jinhong Yan, Jiayi Liu, Ruirong Wang, Jun Fan, Kun Chen
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引用次数: 0

摘要

激发光谱显微镜能够实现高时间分辨率的多目标成像,但从根本上受到一个长期存在的物理限制的限制:由于光谱分解的要求,成像目标的数量不能超过激发波长的数量。本文介绍了调制激发光谱显微镜(MoExSM),它通过在每帧中以特定比例调制每个波长的激发强度并将激发和采集通道解耦来克服这一限制。MoExSM通过仅使用三个激发波长和单个固定荧光发射探测波段,实现了固定细胞中多达五个亚细胞目标的多路成像,实现了最小的串扰。在活细胞成像中,它允许可视化四个细胞器之间复杂和动态的相互作用,由三个波长激发。通过打破激发波长的物理限制和简化系统设计,MoExSM为可视化具有更多颜色的复杂细胞成分提供了巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modulated Excitation Spectral Microscopy: Superior Unmixing and Multiplexed Imaging with Minimal Excitation Wavelengths

Modulated Excitation Spectral Microscopy: Superior Unmixing and Multiplexed Imaging with Minimal Excitation Wavelengths
Excitation spectral microscopy enables multitarget imaging with high temporal resolution but is fundamentally constrained by a long-standing physical limitation: the number of imaging targets cannot exceed the number of excitation wavelengths due to the requirement for spectral unmixing. Here, we introduce modulated excitation spectral microscopy (MoExSM), which overcomes this constraint by modulating the excitation intensity of each wavelength in a specific ratio for each frame and decoupling the excitation and acquisition channels. MoExSM enables multiplexed imaging of up to five subcellular targets in fixed cells by using only three excitation wavelengths and a single, fixed fluorescence emission detection band, achieving minimal crosstalk. In live-cell imaging, it allows visualization of complex and dynamic interactions among four organelles, excited by three wavelengths. By breaking the physical limitation imposed by excitation wavelengths and simplifying the system design, MoExSM offers tremendous potential for visualizing complex cellular components with more colors.
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来源期刊
ACS Photonics
ACS Photonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
11.90
自引率
5.70%
发文量
438
审稿时长
2.3 months
期刊介绍: Published as soon as accepted and summarized in monthly issues, ACS Photonics will publish Research Articles, Letters, Perspectives, and Reviews, to encompass the full scope of published research in this field.
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