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Originally published as Biophys J. BioFAST on December 7, 2007.
doi:10.1529/biophysj.107.112789
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Biophysical Journal 94:2800-2808 (2008)
© 2008 The Biophysical Society

Fluorescence Correlation Spectroscopy of Finite-Sized Particles

Bin Wu, Yan Chen and Joachim D. Müller

School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota

Correspondence: Address reprint requests to Bin Wu, University of Minnesota, School of Physics and Astronomy, 116 Church St., S. E. Minneapolis, MN 55455. Tel.: 612-624-6045; Fax: 612-624–4578; E-mail: binwu{at}physics.umn.edu.

A theory is presented to study fluorescence correlation spectroscopy for particles with size comparable to the beam waist of the observation volume. Analytical correlation curves are derived for some experimentally interesting particle geometries. It is found that the finiteness of the particle generally decreases the value of the correlation amplitude and increases the correlation time compared to a point particle model. Furthermore, not only the size but also the distribution of fluorophores affects the shape of the correlation function. This is experimentally demonstrated with surface and internally labeled fluorescent spheres. In addition, experiments are performed on fluorescent spheres of different radii to validate the model by comparing the results to theoretical predictions.







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Copyright © 2008 by the Biophysical Society.