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A novel method for automatic single molecule tracking of blinking molecules at low intensities

机译:低强度闪烁分子自动单分子追踪的新方法

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摘要

Single molecule tracking provides unprecedented insights into diffusional processes of systems in life and material sciences. Determination of molecule positions with high accuracy and correct connection of the determined positions to tracks is a challenging task with, so far, no universal solution for single fluorescing molecules tackling the challenge of low signal-ta-noise ratios, frequent blinking and photo bleaching. Thus, the development of novel algorithms for automatic single molecule fluorescence tracking is essential to analyse the huge amount of diffusional data obtained with single molecule widefield fluorescence microscopy. Here, we present a novel tracking model using a top-down polyhedral approach which can be implemented effectively using standard linear programming solvers. The results of our tracking approach are compared to the ground truth of simulated data with different diffusion coefficients, signal-to-noise ratios and particle densities. We also determine the dependency of blinking on the analysed distribution of diffusion coefficients. To confirm the functionality of our tracking method, the results of automatic tracking and manual tracking by a human expert are compared and discussed.
机译:单分子跟踪为生命和材料科学中的系统扩散过程提供了前所未有的见识。高精度地确定分子位置以及将确定的位置正确连接到轨道上是一项艰巨的任务,到目前为止,对于单个荧光分子,还没有通用解决方案来应对低信噪比,频繁闪烁和光漂白的挑战。因此,开发用于自动单分子荧光跟踪的新颖算法对于分析用单分子宽视野荧光显微镜获得的大量扩散数据至关重要。在这里,我们介绍了一种使用自上而下的多面体方法的新颖跟踪模型,该模型可以使用标准线性规划求解器有效地实现。我们将跟踪方法的结果与具有不同扩散系数,信噪比和粒子密度的模拟数据的真实情况进行了比较。我们还确定了闪烁对所分析的扩散系数分布的依赖性。为了确认我们跟踪方法的功能,比较并讨论了人类专家进行自动跟踪和手动跟踪的结果。

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