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Communications in Applied Mathematics and Computational Science|November 7, 2013
A Cut Cell Method for Simulating Spatial Models of Biochemical Reaction Networks in Arbitrary GeometriesWanda Strychalski, David Adalsteinsson, Timothy C Elston
SIAM Journal on Scientific Computing : a Publication of the Society for Industrial and Applied Mathematics|October 3, 2013
SIMULATING BIOCHEMICAL SIGNALING NETWORKS IN COMPLEX MOVING GEOMETRIESWanda Strychalski, David Adalsteinsson, Timothy C Elston
BMC Bioinformatics|April 29, 2004
Biochemical Network Stochastic Simulator (BioNetS): software for stochastic modeling of biochemical networksDavid Adalsteinsson, David McMillen, Timothy C Elston
The Journal of Chemical Physics|March 4, 2006
Gene regulatory networks: a coarse-grained, equation-free approach to multiscale computationRadek Erban, Ioannis G Kevrekidis, David Adalsteinsson, et al.
Mathematical Medicine and Biology : a Journal of the IMA|February 2, 2012
A computational model of bleb formationWanda Strychalski, Robert D Guy
Biophysical Journal|March 10, 2016
Intracellular Pressure Dynamics in Blebbing CellsWanda Strychalski, Robert D Guy
Plos Computational Biology|August 28, 2020
Computational estimates of mechanical constraints on cell migration through the extracellular matrixOndrej Maxian, Alex Mogilner, Wanda Strychalski
Bulletin of Mathematical Biology|June 23, 2025
Fluid Dynamics of Multiple Fast-Firing Extrusomes : Fast extrusomesAddie Harrison, Wanda Strychalski, Christina Hamlet, et al.
Nature|February 17, 2006
A bottom-up approach to gene regulationNicholas J Guido, Xiao Wang, David Adalsteinsson, et al.
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