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Journal of Mathematical Biology|October 3, 2003
Mutual interactions, potentials, and individual distance in a social aggregationA Mogilner, L Edelstein-Keshet, L Bent, et al.Bulletin of Mathematical Biology|April 29, 1998
Testing a model for the dynamics of actin structures with biological parameter valuesA Spiros, L Edelstein-KeshetJournal of Mathematical Biology|January 1, 1996
Selecting a common direction. II. Peak-like solutions representing total alignment of cell clustersA Mogilner, L Edelstein-Keshet, G B ErmentroutEuropean Biophysics Journal : EBJ|October 7, 1998
A mathematical approach to cytoskeletal assemblyL Edelstein-KeshetBulletin of Mathematical Biology|July 1, 1994
Modelling the dynamics of F-actin in the cellG Civelekoglu, L Edelstein-KeshetDifferentiation; Research in Biological Diversity|December 1, 1990
Contact response of cells can mediate morphogenetic pattern formationL Edelstein-Keshet, G B ErmentroutJournal of Theoretical Biology|January 7, 1993
Cellular automata approaches to biological modelingG B Ermentrout, L Edelstein-KeshetBulletin of Mathematical Biology|June 3, 1998
Models for the length distributions of actin filaments: I. Simple polymerization and fragmentationL Edelstein-Keshet, G B ErmentroutBulletin of Mathematical Biology|June 3, 1998
Models for the length distributions of actin filaments: II. Polymerization and fragmentation by gelsolin acting togetherG B Ermentrout, L Edelstein-KeshetJournal of Mathematical Biology|July 18, 2002
A model for actin-filament length distribution in a lamellipodL Edelstein-Keshet, G B ErmentroutPageof 8