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N G Cogan

Showing results (1-10 of 36) with videos related to

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Bulletin of Mathematical Biology|December 12, 2007
Two-fluid model of biofilm disinfectionN G Cogan
Journal of Theoretical Biology|June 26, 2007
Incorporating toxin hypothesis into a mathematical model of persister formation and dynamicsN G Cogan
Mathematical Biosciences|July 30, 2013
Concepts in disinfection of bacterial populationsN G Cogan
Journal of Theoretical Biology|August 30, 2005
Effects of persister formation on bacterial response to dosingN G Cogan
Environmental Microbiology|November 19, 2014
Modelling mechanical and chemical treatment of biofilms with two phenotypic resistance mechanismsBarbara Szomolay, N G Cogan
Bulletin of Mathematical Biology|April 9, 2010
Two-dimensional patterns in bacterial veils arise from self-generated, three-dimensional fluid flowsN G Cogan, C W Wolgemuth
Biophysical Journal|February 1, 2005
Pattern formation by bacteria-driven flowN G Cogan, Charles W Wolgemuth
Journal of Mathematical Biology|December 17, 2008
Failure of antibiotic treatment in microbial populationsPatrick De Leenheer, N G Cogan
HFSP Journal|August 3, 2010
Multiphase flow models of biogels from crawling cells to bacterial biofilmsN G Cogan, Robert D Guy
Mathematical Medicine and Biology : a Journal of the IMA|July 2, 2004
The role of the biofilm matrix in structural developmentN G Cogan, James P Keener
Pageof 4

Showing results (1-10 of 36) with videos related to

Sort By:
Pageof 4
Bulletin of Mathematical Biology|December 12, 2007
Two-fluid model of biofilm disinfectionN G Cogan
Journal of Theoretical Biology|June 26, 2007
Incorporating toxin hypothesis into a mathematical model of persister formation and dynamicsN G Cogan
Mathematical Biosciences|July 30, 2013
Concepts in disinfection of bacterial populationsN G Cogan
Journal of Theoretical Biology|August 30, 2005
Effects of persister formation on bacterial response to dosingN G Cogan
Environmental Microbiology|November 19, 2014
Modelling mechanical and chemical treatment of biofilms with two phenotypic resistance mechanismsBarbara Szomolay, N G Cogan
Bulletin of Mathematical Biology|April 9, 2010
Two-dimensional patterns in bacterial veils arise from self-generated, three-dimensional fluid flowsN G Cogan, C W Wolgemuth
Biophysical Journal|February 1, 2005
Pattern formation by bacteria-driven flowN G Cogan, Charles W Wolgemuth
Journal of Mathematical Biology|December 17, 2008
Failure of antibiotic treatment in microbial populationsPatrick De Leenheer, N G Cogan
HFSP Journal|August 3, 2010
Multiphase flow models of biogels from crawling cells to bacterial biofilmsN G Cogan, Robert D Guy
Mathematical Medicine and Biology : a Journal of the IMA|July 2, 2004
The role of the biofilm matrix in structural developmentN G Cogan, James P Keener
Pageof 4