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Mean square displacement analysis of single-particle trajectories with localization error: Brownian motion in an isotropic medium
Physical Review E · 2010 · Vol. 82(4) · pp. 041914–041914
Xavier Michalet✉(University of California, Los Angeles)
Abstract
We examine the capability of mean square displacement (MSD) analysis to extract reliable values of the diffusion coefficient D of a single particle undergoing Brownian motion in an isotropic medium in the presence of localization uncertainty. The theoretical results, supported by simulations, show that a simple unweighted least-squares fit of the MSD curve can provide the best estimate of D provided an optimal number of MSD points are used for the fit. We discuss the practical implications of these results for data analysis in single-particle tracking experiments.
Advanced Fluorescence Microscopy TechniquesAdvanced Neuroimaging Techniques and ApplicationsMean squared displacementIsotropyBrownian motionDisplacement (psychology)Particle (ecology)Mean squareDiffusionSquare (algebra)MathematicsMean squared error
MeSH terms
Models, TheoreticalMotionUncertainty
Funding
- National Institutes of Health
Citations
738
FWCI
21.90
field-weighted impact
References
32
Percentile
99%
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Citations per year
References
Single particle tracking. Analysis of diffusion and flow in two-dimensional systems
Biophysical Journal · 1991 · 1,174 citations
Precise Nanometer Localization Analysis for Individual Fluorescent Probes
Biophysical Journal · 2002 · 2,324 citations
Quantitative Comparison of Algorithms for Tracking Single Fluorescent Particles
Biophysical Journal · 2001 · 883 citations
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