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Fluorescence correlation spectroscopy: incorporation of probe volume effects into the three-dimensional Gaussian approximation

机译:荧光相关光谱:将探针体积效应并入三维高斯近似中

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摘要

Fluorescence correlation spectroscopy is a valuable tool in many scientific disciplines. In particular, such a spectroscopic technique has received a great deal of attention because of its remarkable potential for single-molecule detection. It is understood, however, that quantitative measurements can be considered reliable as long as molecular photophysics has been well characterized. To that end, molecular saturation and probe volume effects, which can worsen experimental accuracy, are treated here. These phenomena are adequately incorporated into the well-known three-dimensional Gaussian approximation by a novel method applied to interpret saturated fluorescence signals [Opt. Lett. 28, 2016 (2003)]. Comparisons with literature data are given to show the improvements of the suggested method compared with other approaches. (C) 2004 Optical Society of America.
机译:荧光相关光谱法是许多科学学科中的宝贵工具。特别地,这种光谱技术由于其在单分子检测中的显着潜力而备受关注。但是,可以理解,只要分子光物理已经得到很好的表征,定量测量就可以被认为是可靠的。为此,在这里处理了可能会使实验精度变差的分子饱和度和探针体积效应。通过一种用于解释饱和荧光信号的新方法,这些现象被充分地纳入了众所周知的三维高斯近似中。来吧28,2016(2003)]。与文献数据的比较表明,与其他方法相比,该方法得到了改进。 (C)2004年美国眼镜学会。

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