Turgeman Lior, Fixler Dror
Faculty of Engineering and Institute of Nanotechnology and Advanced Materials, Bar Ilan University, Ramat Gan, 52900, Israel ;
Biomed Opt Express. 2013 May 13;4(6):868-84. doi: 10.1364/BOE.4.000868. Print 2013 Jun 1.
In fluorescence fluctuation polarization sensitive experiments, the limitations associated with detecting the rotational timescale are usually eliminated by applying fluorescence correlation spectroscopy analysis. In this paper, the variance of the time-averaged fluorescence intensity extracted from the second moment of the measured fluorescence intensity is analyzed in the short time limit, before fluctuations resulting from rotational diffusion average out. Since rotational correlation times of fluorescence molecules are typically much lower than the temporal resolution of the system, independently of the time bins used, averaging over an ensemble of time-averaged trajectories was performed in order to construct the time-averaged intensity distribution, thus improving the signal-to-noise ratio. Rotational correlation times of fluorescein molecules in different viscosities of the medium within the range of the anti-bunching time (1-10 ns) were then extracted using this method.
在荧光涨落偏振敏感实验中,与检测旋转时间尺度相关的限制通常通过应用荧光相关光谱分析来消除。在本文中,在旋转扩散引起的涨落在平均掉之前的短时间极限内,分析了从测量荧光强度的二阶矩提取的时间平均荧光强度的方差。由于荧光分子的旋转相关时间通常远低于系统的时间分辨率,与所使用的时间间隔无关,为了构建时间平均强度分布,对一组时间平均轨迹进行了平均,从而提高了信噪比。然后使用该方法提取了在反聚束时间(1 - 10 ns)范围内不同介质粘度中荧光素分子的旋转相关时间。