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Bulletin of Mathematical Biology
|
November 11, 2003
A mathematical model for elongation of a peptide chain
Andrew Heyd, Donald A Drew
Proceedings of the National Academy of Sciences of the United States of America
|
April 21, 2005
A polymerization-depolymerization model that accurately generates the self-sustained oscillatory system involved in bacterial division site placement
Donald A Drew, Mary J Osborn, Lawrence I Rothfield
Bulletin of Mathematical Biology
|
March 11, 2011
Mathematical modeling of axonal formation. Part I: Geometry
Yanthe E Pearson, Emilio Castronovo, Tara A Lindsley, et al.
Bulletin of Mathematical Biology
|
February 21, 2009
Analyses of mechanisms for force generation during cell septation in Escherichia coli
Donald A Drew, Gretchen A Koch, Heather Vellante, et al.
Bulletin of Mathematical Biology
|
July 20, 2010
A mathematical model for timing the release from sequestration and the resultant Brownian migration of SeqA clusters in E. coli
Donald A Drew, Gretchen A Koch, Shannon Hitchcock, et al.
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of 1
Search research articles
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Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Bulletin of Mathematical Biology
|
November 11, 2003
A mathematical model for elongation of a peptide chain
Andrew Heyd, Donald A Drew
Proceedings of the National Academy of Sciences of the United States of America
|
April 21, 2005
A polymerization-depolymerization model that accurately generates the self-sustained oscillatory system involved in bacterial division site placement
Donald A Drew, Mary J Osborn, Lawrence I Rothfield
Bulletin of Mathematical Biology
|
March 11, 2011
Mathematical modeling of axonal formation. Part I: Geometry
Yanthe E Pearson, Emilio Castronovo, Tara A Lindsley, et al.
Bulletin of Mathematical Biology
|
February 21, 2009
Analyses of mechanisms for force generation during cell septation in Escherichia coli
Donald A Drew, Gretchen A Koch, Heather Vellante, et al.
Bulletin of Mathematical Biology
|
July 20, 2010
A mathematical model for timing the release from sequestration and the resultant Brownian migration of SeqA clusters in E. coli
Donald A Drew, Gretchen A Koch, Shannon Hitchcock, et al.
Page
of 1