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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 Winkler
Journal of Statistical Physics|April 10, 2020
Hypocoercivity and Fast Reaction Limit for Linear Reaction Networks with Kinetic TransportGianluca Favre, Christian Schmeiser
Journal 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 Schmeiser
Journal of Mathematical Biology|April 20, 2011
Simulation of lamellipodial fragmentsDietmar Oelz, Christian Schmeiser
Mathematical 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 Soreff
Cell Adhesion & Migration|March 11, 2009
Modeling of the actin-cytoskeleton in symmetric lamellipodial fragmentsDietmar Oelz, Christian Schmeiser, J Victor Small
Journal 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.
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