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Mathematical modelling of cancer cell invasion of tissue: the role of the urokinase plasminogen activation system
M. A. J. Chaplain, G. Lolas
Research output
:
Contribution to journal
›
Article
›
peer-review
226
Citations (Scopus)
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Dive into the research topics of 'Mathematical modelling of cancer cell invasion of tissue: the role of the urokinase plasminogen activation system'. Together they form a unique fingerprint.
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Mathematics
Invasion
100%
Activation
95%
Cancer
83%
Mathematical Modeling
80%
Cell
59%
Tumor
53%
Progression
23%
Cascade
21%
Haptotaxis
15%
Metastasis
15%
Extracellular Matrix
15%
Motility
15%
Inhibitor
12%
Degradation
12%
Enzymes
12%
Chemotaxis
11%
Reaction-diffusion
11%
Protein
10%
Model
9%
Numerical Computation
9%
Influence
7%
Mathematical Model
7%
Partial differential equation
7%
Interaction
7%
Distinct
7%
Modeling
6%
Demonstrate
6%
Engineering & Materials Science
Cells
78%
Chemical activation
72%
Tissue
68%
Tumors
59%
Plasminogen Inactivators
28%
Metalloproteases
22%
Enzyme activity
18%
Peptide Hydrolases
17%
Partial differential equations
11%
Proteins
10%
Degradation
8%
Mathematical models
7%