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三维随机布朗运动长度分布中的异常行为以及荧光涨落显微镜下单分子轨迹观测体积内的测量光子计数率。

Anomalous behavior in length distributions of 3D random Brownian walks and measured photon count rates within observation volumes of single-molecule trajectories in fluorescence fluctuation microscopy.

作者信息

Baumann Gerd, Gryczynski Ignacy, Földes-Papp Zeno

机构信息

Mathematics Department, German University in Cairo, Egypt.

出版信息

Opt Express. 2010 Aug 16;18(17):17883-96. doi: 10.1364/OE.18.017883.

Abstract

Based on classical mean-field approximation using the diffusion equation for ergodic normal motion of single 24-nm and 100-nm nanospheres, we simulated and measured molecule number counting in fluorescence fluctuation microscopy. The 3D-measurement set included a single molecule, or an ensemble average of single molecules, an observation volume DeltaV and a local environment, e.g. aqueous solution. For the molecule number N << 1 per DeltaV, there was only one molecule at a time inside DeltaV or no molecule. The mean rate k of re-entries defined by k = N/tau(dif) was independent of the geometry of DeltaV but depended on the size of DeltaV and the diffusive properties tau(dif). The length distribution l of single-molecule trajectories inside DeltaV and the measured photon count rates I obeyed power laws with anomalous exponent kappa =-1.32 approximately -4/3.

摘要

基于使用单个24纳米和100纳米纳米球的遍历正常运动扩散方程的经典平均场近似,我们在荧光涨落显微镜中模拟并测量了分子数计数。三维测量集包括单个分子或单个分子的系综平均值、观察体积ΔV和局部环境,例如水溶液。对于每ΔV分子数N << 1的情况,在ΔV内一次只有一个分子或没有分子。由k = N/τ(dif)定义的重新进入的平均速率k与ΔV的几何形状无关,但取决于ΔV的大小和扩散性质τ(dif)。ΔV内单分子轨迹的长度分布l和测量的光子计数率I服从指数κ = -1.32 近似 -4/3的幂律。

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