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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Spectral Self-Interference Fluorescence Microscopy for Subcellular Imaging
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Spectral Self-Interference Fluorescence Microscopy for Subcellular Imaging

机译:光谱自干扰荧光显微镜用于亚细胞成像

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Spectral self-interference fluorescence microscopy (SSFM) has been recently developed to determine the axial position of fluorescent emitters placed on reflecting dielectric structures. In this paper, we review SSFM with emphasis on its axial localization capabilities. We show that there is a tradeoff between the numerical aperture (NA) of the microscopy system and the axial localization fidelity. To use high-NA objectives for better lateral resolution, we describe and demonstrate a high-NA 4Pi microscopy system that performs spectral self-interference microscopy for axial localization of less than 2 nm. We demonstrate axial localization by using artificial samples. We also probe the membrane topography of a Shigella flexneri bacterium, several micrometers away from a solid support.
机译:光谱自干涉荧光显微镜(SSFM)最近已经开发出来,用于确定放置在反射介电结构上的荧光发射器的轴向位置。在本文中,我们将重点介绍SSFM的轴向定位功能。我们表明,在显微镜系统的数值孔径(NA)与轴向定位保真度之间存在一个折衷。为了使用高NA物镜来获得更好的横向分辨率,我们描述并演示了一种高NA 4Pi显微镜系统,该系统执行光谱自干涉显微镜以进行小于2 nm的轴向定位。我们通过使用人工样品证明了轴向定位。我们还探测了一种志贺氏志贺氏菌细菌的膜形貌,距离固体支持物几微米。

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