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Physical Review Letters|April 12, 2003
Pattern formation inside bacteria: fluctuations due to the low copy number of proteinsMartin Howard, Andrew D RutenbergPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 27, 2011
Monodisperse domains by proteolytic control of the coarsening instabilityJulien Derr, Andrew D RutenbergPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|December 31, 2005
Maximally fast coarsening algorithmsMowei Cheng, Andrew D RutenbergJournal of Bacteriology|May 1, 2007
Clocking out: modeling phage-induced lysis of Escherichia coliGillian L Ryan, Andrew D RutenbergPhysical Biology|June 27, 2012
Heterocyst placement strategies to maximize the growth of cyanobacterial filamentsAidan I Brown, Andrew D RutenbergPhysical Review. E|September 27, 2018
Anomalously slow transport in single-file diffusion with slow binding kineticsSpencer G Farrell, Andrew D RutenbergPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|February 21, 2006
Scaling state of dry two-dimensional froths: universal angle-deviations and structureAndrew D Rutenberg, Micah B McCurdyPhysical Review Letters|June 13, 2009
Pulling helices inside bacteria: imperfect helices and ringsJun F Allard, Andrew D RutenbergPhysical Biology|January 4, 2014
A storage-based model of heterocyst commitment and patterning in cyanobacteriaAidan I Brown, Andrew D RutenbergPhysical Biology|February 9, 2012
Reconciling cyanobacterial fixed-nitrogen distributions and transport experiments with quantitative modellingAidan I Brown, Andrew D RutenbergPageof 7