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PRINCIPLES AND APPLICATIONS OF FLUORESCENCE CORRELATION SPECTROSCOPY (FCS)

机译:荧光相关光谱(FCS)的原理和应用

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Fluorescence correlation spectroscopy (FCS) is one of the various modern optical techniques that allow access to single fluorescently labeled biomolecules in aqueous solution. In contrast to other fluorescence measurements, however, the parameter of primary interest is not the emission intensity itself, but rather spontaneous intensity fluctuations caused by the minute deviations of a small ensemble of molecules from thermal equilibrium. In general, all physical parameters that give rise to fluctuations in the fluorescence signal are accessible by FCS. It is, for example, rather straightforward to determine local concentrations, mobility coefficients or characteristic rate constants of inter- or intramolecular reactions of fluorescently labeled biomolecules at nanomolar to micromolar concentrations.
机译:荧光相关光谱(FCS)是各种现代光学技术之一,允许在水溶液中获得单荧光标记的生物分子。然而,与其他荧光测量相比,主要兴趣的参数不是发射强度本身,而是由来自热平衡的分子的小型集合的微小偏差引起的自发性强度波动。通常,FCS可访问导致荧光信号波动波动的所有物理参数。例如,相当简单,以确定氟质标记的生物分子在纳摩尔至微摩尔浓度的局部浓度,迁移率系数或特征率常数或特征率常数。

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