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Stuart Allison
Stuart Allison
Professor of Physical Chemistry and Associate Chair, Georgia State University
Verified email at gsu.edu
Title
Cited by
Cited by
Year
Brownian dynamics simulation of diffusion‐influenced bimolecular reactions
SH Northrup, SA Allison, JA McCammon
The Journal of Chemical Physics 80 (4), 1517-1524, 1984
4711984
Torsion dynamics and depolarization of fluorescence of linear macromolecules I. Theory and application to DNAt
SA Allison, MJ Schurr
Chemical Physics 41 (1-2), 35-59, 1979
2071979
Point charge distributions and electrostatic steering in enzyme/substrate encounter: Brownian dynamics of modified copper/zinc superoxide dismutases
JJ Sines, SA Allison, JA McCammon
Biochemistry 29 (40), 9403-9412, 1990
1721990
Torsion dynamics and depolarization of fluorescence of linear macromolecules: II. Fluorescence polarization anisotropy measurements on a clean viral φ29 DNA
JC Thomas, SA Allison, CJ Appellof, JM Schurr
Biophysical chemistry 12 (2), 177-188, 1980
1681980
Brownian dynamics simulation of wormlike chains. Fluorescence depolarization and depolarized light scattering
SA Allison
Macromolecules 19 (1), 118-124, 1986
1541986
Structure of viral φ29 DNA condensed by simple triamines: A light‐scattering and electron‐microscopy study
SA Allison, JC Herr, JM Schurr
Biopolymers: Original Research on Biomolecules 20 (3), 469-488, 1981
1381981
Brownian dynamics with rotation–translation coupling
E Dickinson, SA Allison, JA McCammon
Journal of the Chemical Society, Faraday Transactions 2: Molecular and …, 1985
1281985
Bending and twisting dynamics of short linear DNAs. Analysis of the triplet anisotropy decay of a 209 base pair fragment by Brownian simulation
S Allison, R Austin, M Hogan
The Journal of Chemical Physics 90 (7), 3843-3854, 1989
1261989
Simulation of the diffusion‐controlled reaction between superoxide and superoxide dismutase. II. Detailed models
SA Allison, RJ Bacquet, JA McCammon
Biopolymers: Original Research on Biomolecules 27 (2), 251-269, 1988
1231988
Brownian dynamics simulations of wormlike chains: dynamic light scattering from a 2311 base pair DNA fragment
S Allison, SS Sorlie, R Pecora
Macromolecules 23 (4), 1110-1118, 1990
1001990
Transport properties of rigid and flexible macromolecules by Brownian dynamics simulation
SA Allison, JA McCammon
Biopolymers: Original Research on Biomolecules 23 (1), 167-187, 1984
941984
Multistep Brownian dynamics: application to short wormlike chains
SA Allison, JA McCammon
Biopolymers: Original Research on Biomolecules 23 (2), 363-375, 1984
911984
Simulation of the diffusion‐controlled reaction between superoxide and superoxide dismutase. I. Simple models
SA Allison, G Ganti, JA McCammon
Biopolymers: Original Research on Biomolecules 24 (7), 1323-1336, 1985
901985
[22] Diffusion-controlled enzymatic reactions
ME Davis, JD Madura, J Sines, BA Luty, SA Allison, J Andrew
Methods in Enzymology 202, 473-497, 1991
851991
Dynamics of substrate binding to copper zinc superoxide dismutase
SA Allison, JA McCammon
The Journal of Physical Chemistry 89 (7), 1072-1074, 1985
841985
Diffusional dynamics of ligand-receptor association
JA McCammon, SH Northrup, SA Allison
The Journal of Physical Chemistry 90 (17), 3901-3905, 1986
821986
Optimization of Brownian dynamics methods for diffusion‐influenced rate constant calculations
SH Northrup, MS Curvin, SA Allison, JA McCammon
The Journal of chemical physics 84 (4), 2196-2203, 1986
731986
NMR relaxation in DNA. I. The contribution of torsional deformation modes of the elastic filament
SA Allison, JH Shibata, J Wilcoxon, JM Schurr
Biopolymers: Original Research on Biomolecules 21 (4), 729-762, 1982
711982
The length dependence of translational diffusion, free solution electrophoretic mobility, and electrophoretic tether force of rigid rod-like model duplex DNA
S Allison, C Chen, D Stigter
Biophysical Journal 81 (5), 2558-2568, 2001
702001
Monte Carlo simulations of supercoiling free energies for unknotted and trefoil knotted DNAs
JA Gebe, SA Allison, JB Clendenning, JM Schurr
Biophysical journal 68 (2), 619-633, 1995
701995
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