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Biophysical Journal|June 21, 2018
Minimal Network Topologies for Signal Processing during Collective Cell ChemotaxisHaicen Yue, Brian A Camley, Wouter-Jan Rappel
Journal of Physics D: Applied Physics|October 10, 2017
Physical models of collective cell motility: from cell to tissueBrian A Camley, Wouter-Jan Rappel
Proceedings of the National Academy of Sciences of the United States of America|November 9, 2017
Cell-to-cell variation sets a tissue-rheology-dependent bound on collective gradient sensingBrian A Camley, Wouter-Jan Rappel
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|July 15, 2014
Velocity alignment leads to high persistence in confined cellsBrian A Camley, Wouter-Jan Rappel
Physical Review. E|February 19, 2021
Cellular memory in eukaryotic chemotaxis depends on the background chemoattractant concentrationRicha Karmakar, Man-Ho Tang, Haicen Yue, et al.
Plos Computational Biology|December 17, 2016
Modeling Contact Inhibition of Locomotion of Colliding Cells Migrating on Micropatterned SubstratesDirk Alexander Kulawiak, Brian A Camley, Wouter-Jan Rappel
Journal of the Royal Society, Interface|May 12, 2017
Inferring single-cell behaviour from large-scale epithelial sheet migration patternsRachel M Lee, Haicen Yue, Wouter-Jan Rappel, et al.
Physical Review Letters|March 19, 2016
Emergent Collective Chemotaxis without Single-Cell Gradient SensingBrian A Camley, Juliane Zimmermann, Herbert Levine, et al.
Plos Computational Biology|July 2, 2016
Collective Signal Processing in Cluster Chemotaxis: Roles of Adaptation, Amplification, and Co-attraction in Collective GuidanceBrian A Camley, Juliane Zimmermann, Herbert Levine, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 24, 2016
Contact inhibition of locomotion determines cell-cell and cell-substrate forces in tissuesJuliane Zimmermann, Brian A Camley, Wouter-Jan Rappel, et al.
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