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Spectrally resolved fluorescence correlation spectroscopy based on global analysis

机译:基于全局分析的光谱分辨荧光相关光谱

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Multicolor fluorescence correlation spectroscopy has been recently developed to study chemical interactions of multiple chemical species labeled with spectrally distinct fluorophores. In the presence of spectral overlap, there exists a lower detectability limit for reaction products with multicolor fluorophores. In addition, the ability to separate bound product from reactants allows thermodynamic properties such as dissociation constants to be measured for chemical reactions. In this report, we utilize a spectrally resolved two-photon microscope with single-photon counting sensitivity to acquire spectral and temporal information from multiple chemical species. Further, we have developed a global fitting analysis algorithm that simultaneously analyzes all distinct auto- and cross-correlation functions from 15 independent spectral channels. We have demonstrated that the global analysis approach allows the concentration and diffusion coefficients of fluorescent particles to be resolved despite the presence of overlapping emission spectra.
机译:最近已经开发了多色荧光相关光谱法,以研究用光谱上不同的荧光团标记的多种化学物质的化学相互作用。在光谱重叠的情况下,对于具有多色荧光团的反应产物,存在较低的可检测极限。另外,将结合的产物与反应物分离的能力允许针对化学反应测量热力学性质,例如解离常数。在本报告中,我们利用具有单光子计数灵敏度的光谱解析两光子显微镜从多种化学物种中获取光谱和时间信息。此外,我们已经开发了一种全局拟合分析算法,可以同时分析来自15个独立光谱通道的所有不同的自相关和互相关函数。我们已经证明,尽管存在重叠的发射光谱,整体分析方法仍可以解决荧光粒子的浓度和扩散系数。

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