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Real-time super-resolution imaging by high-speed fluorescence emission difference microscopy

机译:高速荧光发射差异显微镜实时超分辨率成像

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摘要

The recently proposed fluorescence emission difference (FED) microscopy has been demonstrated to be capable of breaking the diffraction barrier, which restricts the spatial resolution of far-field fluorescence microscopy. In this paper, we report a novel high-speed FED system that can realize real-time super-resolution imaging. By replacing the conventional nanopositioning stage with a galvo mirror, the temporal resolution of FED is improved to nearly one frame per second, which is 100 times faster than that of best existing FED, while the system maintains a super-high spatial resolution of 150 nm, which is far beyond the diffraction barrier. Therefore, the high-speed FED is suitable for large-area observations while avoiding photobleaching. Detailed theoretical analysis, simulations, and experimental real-time resolution tests on 100 nm nanoparticles and biological cells are reported.
机译:最近提出的荧光发射差异(FED)显微镜已被证明能够打破衍射屏障,从而限制了远场荧光显微镜的空间分辨率。在本文中,我们报告了一种可以实现实时超分辨率成像的新型高速FED系统。通过用振镜替换传统的纳米定位平台,FED的时间分辨率提高到每秒近一帧,这比现有的最佳FED的速度快100倍,而系统保持了150 nm的超高空间分辨率,这远远超出了衍射屏障。因此,高速FED适于大面积观察,同时避免了光漂白。报告了对100 nm纳米颗粒和生物细胞的详细理论分析,模拟和实验实时分辨率测试。

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