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二维单颗粒追踪实验的分析与优化。

Analysis and refinement of 2D single-particle tracking experiments.

机构信息

Department of Chemistry and Biochemistry, Emmy-Noether Group "Bionanointerfaces," Freie Universität Berlin, Takustr. 3, 14195 Berlin, Germany.

出版信息

Biointerphases. 2020 Mar 5;15(2):021201. doi: 10.1116/1.5140087.

Abstract

In recent decades, single particle tracking (SPT) has been developed into a sophisticated analytical approach involving complex instruments and data analysis schemes to extract information from time-resolved particle trajectories. Very often, mobility-related properties are extracted from these particle trajectories, as they often contain information about local interactions experienced by the particles while moving through the sample. This tutorial aims to provide a comprehensive overview about the accuracies that can be achieved when extracting mobility-related properties from 2D particle trajectories and how these accuracies depend on experimental parameters. Proper interpretation of SPT data requires an assessment of whether the obtained accuracies are sufficient to resolve the effect under investigation. This is demonstrated by calculating mean square displacement curves that show an apparent super- or subdiffusive behavior due to poor measurement statistics instead of the presence of true anomalous diffusion. Furthermore, the refinement of parameters involved in the design or analysis of SPT experiments is discussed and an approach is proposed in which square displacement distributions are inspected to evaluate the quality of SPT data and to extract information about the maximum distance over which particles should be tracked during the linking process.

摘要

近几十年来,单粒子追踪(SPT)已发展成为一种复杂的分析方法,涉及复杂的仪器和数据分析方案,以从时间分辨的粒子轨迹中提取信息。通常,从这些粒子轨迹中提取与迁移率相关的性质,因为它们经常包含有关粒子在通过样品移动时所经历的局部相互作用的信息。本教程旨在全面概述从 2D 粒子轨迹中提取与迁移率相关的性质时可以达到的精度,以及这些精度如何取决于实验参数。要正确解释 SPT 数据,需要评估所获得的精度是否足以分辨正在研究的效果。这可以通过计算均方位移曲线来证明,这些曲线由于测量统计数据较差而表现出明显的超扩散或亚扩散行为,而不是存在真正的异常扩散。此外,还讨论了改进 SPT 实验设计或分析中涉及的参数的方法,并提出了一种方法,即用检查平方位移分布来评估 SPT 数据的质量,并提取有关在链接过程中应该跟踪粒子的最大距离的信息。

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