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Modelling non-local cell-cell adhesion: a multiscale approach
Anna Zhigun
*
,
Mabel Lizzy Rajendran
*
Corresponding author for this work
Mathematics
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Article
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peer-review
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Dive into the research topics of 'Modelling non-local cell-cell adhesion: a multiscale approach'. Together they form a unique fingerprint.
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Keyphrases
Cell Adhesion
100%
Local Cells
100%
In Cancer
33%
Nonlocality
33%
Adhesion
33%
Multicellular Organism
33%
Cell Migration
33%
Cell Population
33%
Embryogenesis
33%
Cell Adhesion Molecules
33%
Cell Density
33%
Mesoscopic
33%
Novel Types
33%
Self-adhesive
33%
Kinetic Transport Equation
33%
Motion Effect
33%
Nonlinear Integral Equation
33%
Microscopic Description
33%
Microscopic Effect
33%
Macroscopic Model
33%
Density Equation
33%
Parabolic Scaling
33%
Mesoscopic Model
33%
Nonlocal Adhesion
33%
Velocity Jump Process
33%
Hyperbolic Scaling
33%
Stochastic Velocities
33%
Adhesive Cell
33%
Mathematics
Stochastics
100%
Parabolic
100%
Transport Equation
100%
Nonlinear Integral Equation
100%
Jump Process
100%
Multicellular Organism
100%
Engineering
Multiscale
100%
Subcellular
50%
Macroscale
50%
Macroscopic Model
50%
Multicellular Organism
50%