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Journal of Mathematical Biology|May 15, 2013
A viscous two-phase model for contractile actomyosin bundlesDietmar OelzPhysica D. Nonlinear Phenomena|March 19, 2016
Actomyosin contraction, aggregation and traveling waves in a treadmilling actin arrayDietmar Oelz, Alex MogilnerJournal of Mathematical Biology|April 20, 2011
Simulation of lamellipodial fragmentsDietmar Oelz, Christian SchmeiserMathematical Biosciences|October 15, 2025
Modeling spike frequency adaptation through higher-order fractional leaky integrate and fire modelYash Vats, Mani Mehra, Dietmar OelzMathematical Medicine and Biology : a Journal of the IMA|October 6, 2005
Multistep navigation of leukocytes: a stochastic model with memory effectsDietmar Oelz, Christian Schmeiser, Alexander SoreffNeural Networks : the Official Journal of the International Neural Network Society|January 7, 2026
A physics informed neural network architecture for moving boundary problems in science and engineeringSanchita Malla, Dietmar Oelz, Sitikantha RoyJournal of the Mechanical Behavior of Biomedical Materials|March 9, 2025
Simulation of a Free Boundary Cell Migration Model through Physics Informed Neural NetworksSanchita Malla, Dietmar Oelz, Sitikantha RoyCell Adhesion & Migration|March 11, 2009
Modeling of the actin-cytoskeleton in symmetric lamellipodial fragmentsDietmar Oelz, Christian Schmeiser, J Victor SmallJournal of Theoretical Biology|July 21, 2015
An extended Filament Based Lamellipodium Model produces various moving cell shapes in the presence of chemotactic signalsAngelika Manhart, Dietmar Oelz, Christian Schmeiser, et al.Journal of Mathematical Biology|April 25, 2019
Bidirectional sliding of two parallel microtubules generated by multiple identical motorsJun Allard, Marie Doumic, Alex Mogilner, et al.Pageof 2