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Model for self-polarization and motility of keratocyte fragments
Falko Ziebert
, Sumanth Swaminathan
,
Igor S. Aranson
Biomedical Engineering
Huck Institutes of the Life Sciences
Center for Interdisciplinary Mathematics
Research output
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Contribution to journal
›
Article
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peer-review
182
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Keyphrases
Actin Network
50%
Cell Boundary
50%
Cell Fragments
50%
Cell Motility
100%
Cell Motion
50%
Cell Shape
100%
Computational Modeling
50%
Deformable Cells
50%
Keratocytes
100%
Mean Direction
50%
Model Coupling
50%
Motility
50%
Onset of Motion
50%
Orientation Polarization
50%
Phase-field Approach
50%
Phenomenology
50%
Regulatory Pathways
50%
Shape Dynamics
50%
Shape Oscillation
50%
Simple Mathematical Model
50%
Vector Field
50%
Medicine and Dentistry
Actin Filament
50%
Cell Migration
100%
Cell Motility
100%
Cell Motion
50%
Cell Shape
100%
Corneal Keratocyte
100%
Immunology and Microbiology
Actin Filament
50%
Cell Migration
100%
Cell Motility
100%
Cell Motion
50%
Cell Shape
100%
Computer Simulation
50%
Motion
50%
Neuroscience
Actin Filament
50%
Cell Migration
100%
Cell Motility
100%
Cell Movement
50%
Phenomenology
50%
Mathematics
Cell Motion
50%
Cell Movement
50%
Computer Simulation
50%
Mathematical Modeling
50%
Phase Field
50%
Simple Model
50%
Vector Field
50%
Pharmacology, Toxicology and Pharmaceutical Science
Actin
100%