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Analytical Biochemistry|February 1, 1986
Determination of a particle's radius by two-dimensional agarose gel electrophoresisP Serwer, S J Hayes, G A GriessJournal of Microscopy|January 21, 2004
Terminal protein-induced stretching of bacteriophage phi29 DNAH Wang, S Grimes, D L Anderson, et al.Journal of Microscopy|January 21, 2004
Fluorescence microscopy of colour-tagged nanoparticles that are undergoing thermal motionH Wang, S Huang, S J Hayes, et al.Virology|February 1, 1990
Quantized viral DNA packaging revealed by rotating gel electrophoresisT Lane, P Serwer, S J Hayes, et al.Biopolymers|July 5, 1990
The sieving of rod-shaped viruses during agarose gel electrophoresis. I. Comparison with the sieving of spheresG A Griess, E T Moreno, R Herrmann, et al.Biochemistry|March 1, 1994
Quantitative agarose gel electrophoresis of chromatin: nucleosome-dependent changes in charge, sharp, and deformability at low ionic strengthT M Fletcher, U Krishnan, P Serwer, et al.Biopolymers|August 1, 1989
The sieving of spheres during agarose gel electrophoresis: quantitation and modelingG A Griess, E T Moreno, R A Easom, et al.Journal of Molecular Biology|November 14, 1997
Polymorphism of bacteriophage T7I S Gabashvili, S A Khan, S J Hayes, et al.Electrophoresis|June 1, 1996
Use of excluded volume to increase the heterogeneity of pore size in agarose gelsP Serwer, R A Harris, M M Miller, et al.Biochemistry|September 15, 1992
A small (58-nm) attached sphere perturbs the sieving of 40-80-kilobase DNA in 0.2-2.5% agarose gels: analysis of bacteriophage T7 capsid-DNA complexes by use of pulsed field electrophoresisP Serwer, S J Hayes, E T Moreno, et al.Pageof 10