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An immersed boundary framework for modelling the growth of individual cells: an application to the early tumour development
Katarzyna A. Rejniak
Research output
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Contribution to journal
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Article
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peer-review
132
Citations (Scopus)
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Dive into the research topics of 'An immersed boundary framework for modelling the growth of individual cells: an application to the early tumour development'. Together they form a unique fingerprint.
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Keyphrases
Biochemical Condition
33%
Biomechanical Approach
33%
Biomechanical Properties
33%
Cell Processes
33%
Cluster Formation
33%
Deformable Cells
33%
Distributed Source
33%
Early Tumor
100%
Elastic Cell
33%
Geometrical Configuration
33%
Immersed Boundary
100%
Immersed Boundary Method
33%
Individual Cells
100%
Mathematical Techniques
33%
Membrane Receptors
33%
Microenvironment
33%
Multiple Tissues
33%
Plasma Membrane
33%
Surrounding Medium
33%
Tumor Development
100%
Viscous Incompressible
33%
Engineering
Biochemicals
50%
Biomechanical Property
50%
Elastic Cell
50%
Geometrical Configuration
50%
Individual Cell
100%
Mathematical Technique
50%
Microenvironments
50%
Progression
50%
Material Science
Cell Membrane
33%
Tumor
100%