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John S Lowengrub

Showing results (1-10 of 39) with videos related to

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Journal of Computational Biology : a Journal of Computational Molecular Cell Biology|December 10, 2015
Collective Properties of a Transcription Initiation Model Under Varying EnvironmentYucheng Hu, John S Lowengrub
Journal of Scientific Computing|September 28, 2011
A New Ghost Cell/Level Set Method for Moving Boundary Problems: Application to Tumor GrowthPaul Macklin, John S Lowengrub
Journal of Theoretical Biology|December 6, 2017
Activation of the HGF/c-Met axis in the tumor microenvironment: A multispecies modelAnna Konstorum, John S Lowengrub
Journal of Theoretical Biology|July 12, 2014
Tumor growth in complex, evolving microenvironmental geometries: a diffuse domain approachYing Chen, John S Lowengrub
Journal of Theoretical Biology|December 12, 2018
Tumor growth and calcification in evolving microenvironmental geometriesYing Chen, John S Lowengrub
Bulletin of Mathematical Biology|July 7, 2017
Three-Dimensional Spatiotemporal Modeling of Colon Cancer Organoids Reveals that Multimodal Control of Stem Cell Self-Renewal is a Critical Determinant of Size and Shape in Early Stages of Tumor GrowthHuaming Yan, Anna Konstorum, John S Lowengrub
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|April 28, 2009
Phase-field modeling of the dynamics of multicomponent vesicles: Spinodal decomposition, coarsening, budding, and fissionJohn S Lowengrub, Andreas Rätz, Axel Voigt
International Journal for Numerical Methods in Biomedical Engineering|April 2, 2015
Axisymmetric multicomponent vesicles: A comparison of hydrodynamic and geometric modelsJinsun Sohn, Shuwang Li, Xiaofan Li, et al.
Journal of Mathematical Biology|September 13, 2008
Nonlinear simulations of solid tumor growth using a mixture model: invasion and branchingVittorio Cristini, Xiangrong Li, John S Lowengrub, et al.
Physical Review Letters|June 13, 2009
Control of viscous fingering patterns in a radial Hele-Shaw cellShuwang Li, John S Lowengrub, Jake Fontana, et al.
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Journal of Computational Biology : a Journal of Computational Molecular Cell Biology|December 10, 2015
Collective Properties of a Transcription Initiation Model Under Varying EnvironmentYucheng Hu, John S Lowengrub
Journal of Scientific Computing|September 28, 2011
A New Ghost Cell/Level Set Method for Moving Boundary Problems: Application to Tumor GrowthPaul Macklin, John S Lowengrub
Journal of Theoretical Biology|December 6, 2017
Activation of the HGF/c-Met axis in the tumor microenvironment: A multispecies modelAnna Konstorum, John S Lowengrub
Journal of Theoretical Biology|July 12, 2014
Tumor growth in complex, evolving microenvironmental geometries: a diffuse domain approachYing Chen, John S Lowengrub
Journal of Theoretical Biology|December 12, 2018
Tumor growth and calcification in evolving microenvironmental geometriesYing Chen, John S Lowengrub
Bulletin of Mathematical Biology|July 7, 2017
Three-Dimensional Spatiotemporal Modeling of Colon Cancer Organoids Reveals that Multimodal Control of Stem Cell Self-Renewal is a Critical Determinant of Size and Shape in Early Stages of Tumor GrowthHuaming Yan, Anna Konstorum, John S Lowengrub
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|April 28, 2009
Phase-field modeling of the dynamics of multicomponent vesicles: Spinodal decomposition, coarsening, budding, and fissionJohn S Lowengrub, Andreas Rätz, Axel Voigt
International Journal for Numerical Methods in Biomedical Engineering|April 2, 2015
Axisymmetric multicomponent vesicles: A comparison of hydrodynamic and geometric modelsJinsun Sohn, Shuwang Li, Xiaofan Li, et al.
Journal of Mathematical Biology|September 13, 2008
Nonlinear simulations of solid tumor growth using a mixture model: invasion and branchingVittorio Cristini, Xiangrong Li, John S Lowengrub, et al.
Physical Review Letters|June 13, 2009
Control of viscous fingering patterns in a radial Hele-Shaw cellShuwang Li, John S Lowengrub, Jake Fontana, et al.
Pageof 4