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追踪荧光相关光谱法:单个粒子的荧光相关光谱分析

Tracking-FCS: Fluorescence correlation spectroscopy of individual particles.

作者信息

Berglund Andrew, Mabuchi Hideo

出版信息

Opt Express. 2005 Oct 3;13(20):8069-82. doi: 10.1364/opex.13.008069.

Abstract

We exploit recent advances in single-particle tracking to perform fluorescence correlation spectroscopy on individual fluorescent particles, in contrast to traditional methods that build up statistics over a sequence of many measurements. By rapidly scanning the focus of an excitation laser in a circular pattern, demodulating the measured fluorescence, and feeding these results back to a piezoelectric translation stage, we track the Brownian motion of fluorescent polymer microspheres in aqueous solution in the plane transverse to the laser axis. We discuss the estimation of particle diffusion statistics from closed-loop position measurements, and we present a generalized theory of fluorescence correlation spectroscopy for the case that the motion of a single fluorescent particle is actively tracked by a time-dependent laser intensity. We model the motion of a tracked particle using Ornstein-Uhlenbeck statistics, using a general theory that contains a umber of existing results as specific cases. We find good agreement between our theory and experimental results, and discuss possible future applications of these techniques to passive, single-shot, single-molecule fluorescence measurements with many orders of magnitude in time resolution.

摘要

与传统方法在一系列多次测量上累积统计数据不同,我们利用单粒子追踪技术的最新进展,对单个荧光粒子进行荧光相关光谱分析。通过以圆形模式快速扫描激发激光的焦点,解调测量到的荧光,并将这些结果反馈到压电平移台,我们在垂直于激光轴的平面内追踪水溶液中荧光聚合物微球的布朗运动。我们讨论了从闭环位置测量估计粒子扩散统计数据的方法,并针对单个荧光粒子的运动由随时间变化的激光强度主动追踪的情况,提出了一种广义的荧光相关光谱理论。我们使用包含许多现有结果作为特定情况的一般理论,用奥恩斯坦 - 乌伦贝克统计对被追踪粒子的运动进行建模。我们发现我们的理论与实验结果吻合良好,并讨论了这些技术未来在具有多个数量级时间分辨率的被动、单次、单分子荧光测量中的可能应用。

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