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Spectral domain fluorescence coherence phase microscopy

机译:光谱域荧光相干相显微镜

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摘要

Spectral domain phase microscopy (SDPM) has been reported in the literature as a functional extension to low-coherence interferometry, which enables nanoscale measurement of a scatter's displacement. The signal in SDPM is generated from structural images that lack molecular specificity. This paper investigates the expansion of phase analysis to fluorescence self-interference signals to provide functional information about a sample. Spectral domain fluorescence coherence phase microscopy is demonstrated for nanoscale resolution motion detection of fluorescent particles with a signal-to-noise ratio limited resolution of approx10 nm. This paper demonstrates the feasibility of combining phase processing with fluorescence self-interference, which may be useful for future applications such as cell rheology.
机译:光谱域相显微镜(SDPM)在文献中已有报道,是对低相干干涉测量的功能扩展,可以对散射位移进行纳米级测量。 SDPM中的信号是从缺乏分子特异性的结构图像生成的。本文研究了将相位分析扩展到荧光自干扰信号以提供有关样品的功能信息的方法。证明了光谱域荧光相干相显微镜可用于荧光粒子的纳米级分辨率运动检测,信噪比极限分辨率约为10 nm。本文证明了将相处理与荧光自干扰相结合的可行性,这可能对诸如细胞流变学的未来应用很有用。

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