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Journal of Theoretical Biology|May 25, 2015
The flatness of Lamellipodia explained by the interaction between actin dynamics and membrane deformationChristian Schmeiser, Christoph WinklerJournal of Statistical Physics|April 10, 2020
Hypocoercivity and Fast Reaction Limit for Linear Reaction Networks with Kinetic TransportGianluca Favre, Christian SchmeiserJournal of Mathematical Biology|May 22, 2016
Existence of and decay to equilibrium of the filament end density along the leading edge of the lamellipodiumAngelika Manhart, Christian SchmeiserJournal of Mathematical Biology|April 20, 2011
Simulation of lamellipodial fragmentsDietmar Oelz, Christian SchmeiserMathematical 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 SoreffCell 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.Bulletin of Mathematical Biology|August 25, 2023
The Influence of Nucleus Mechanics in Modelling Adhesion-independent Cell Migration in Structured and Confined EnvironmentsChiara Giverso, Gaspard Jankowiak, Luigi Preziosi, et al.Journal of Structural Biology|March 6, 2012
Actin filament tracking in electron tomograms of negatively stained lamellipodia using the localized radon transformChristoph Winkler, Marlene Vinzenz, J Victor Small, et al.Journal of Mathematical Biology|December 15, 2021
A mathematical model of p62-ubiquitin aggregates in autophagyJulia Delacour, Marie Doumic, Sascha Martens, et al.Pageof 2