A Simple Derivation of Diffusion Fluorescence Correlation Spectroscopy Equations
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[1] A. Kenworthy,et al. A novel computational framework for D(t) from Fluorescence Recovery after Photobleaching data reveals various anomalous diffusion types in live cell membranes , 2018, Traffic.
[2] Minchul Kang,et al. Validation of Normalizations, Scaling, and Photofading Corrections for FRAP Data Analysis , 2015, PloS one.
[3] Emmanuele DiBenedetto,et al. Simplified Equation to Extract Diffusion Coefficients from Confocal FRAP Data , 2012, Traffic.
[4] A. Kenworthy,et al. Proposed correction to Feder's anomalous diffusion FRAP equations. , 2011, Biophysical journal.
[5] A. Kenworthy,et al. A quantitative approach to analyze binding diffusion kinetics by confocal FRAP. , 2010, Biophysical journal.
[6] A. Kenworthy,et al. A generalization of theory for two-dimensional fluorescence recovery after photobleaching applicable to confocal laser scanning microscopes. , 2009, Biophysical journal.
[7] Joseph Klafter,et al. Fluorescence correlation spectroscopy: the case of subdiffusion. , 2009, Biophysical journal.
[8] A. Kenworthy,et al. A closed-form analytic expression for FRAP formula for the binding diffusion model. , 2008, Biophysical journal.
[9] A. Einstein. Über die von der molekularkinetischen Theorie der Wärme geforderte Bewegung von in ruhenden Flüssigkeiten suspendierten Teilchen [AdP 17, 549 (1905)] , 2005, Annalen der Physik.
[10] O. Krichevsky,et al. Fluorescence correlation spectroscopy: the technique and its applications , 2002 .
[11] Watt W. Webb,et al. Fluorescence correlation spectroscopy , 2000 .
[12] E. Elson,et al. Fluorescence correlation spectroscopy. I. Conceptual basis and theory , 1974 .
[13] W. Webb,et al. Thermodynamic Fluctuations in a Reacting System-Measurement by Fluorescence Correlation Spectroscopy , 1972 .
[14] C. Derman,et al. Ergodic Property of the Brownian Motion Process. , 1954, Proceedings of the National Academy of Sciences of the United States of America.
[15] R. Brown. XXVII. A brief account of microscopical observations made in the months of June, July and August 1827, on the particles contained in the pollen of plants; and on the general existence of active molecules in organic and inorganic bodies , 1828 .
[16] H. Rigneault,et al. Fluorescence correlation spectroscopy. , 2011, Methods in molecular biology.
[17] Boaz Nadler,et al. The Stationary Arrival Process of Independent Diffusers from a Continuum to an Absorbing Boundary Is Poissonian , 2001, SIAM J. Appl. Math..
[18] A. Einstein. On the movement of small particles suspended in a stationary liquid demanded by the molecular-kinetic theory of heart , 1905 .
[19] L. Bachelier,et al. Théorie de la spéculation , 1900 .