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A multiscale model of reaction and diffusion in angiogenesis
Xiaoming Zheng
Mathematics
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Dive into the research topics of 'A multiscale model of reaction and diffusion in angiogenesis'. Together they form a unique fingerprint.
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Physics
Diffusivity
100%
Angiogenesis
100%
Domains
66%
Tissue
66%
Model
33%
Volume
33%
Shapes
16%
Growth
16%
Simulation
16%
Kinetics
16%
Variations
16%
Transferring
16%
Chemical Reaction
16%
Blood
16%
Binding
16%
Chemistry
Diffusion
100%
Chemical Reaction
100%
Procedure
66%
Concentration
33%
Volume
33%
Growth Factor
16%
Ligand
16%
Chemical Kinetics Characteristics
16%
Length
16%
Mathematics
Multiresolution
100%
Algorithm
66%
Spatial Scale
33%
Finite Volume Method
33%
Dirac Delta Function
33%
Numerical Simulation
33%
Boundary Condition
33%
Constant
33%
Variations
33%
Biochemistry, Genetics and Molecular Biology
Facilitated Diffusion
100%
Angiogenesis
100%
Volume
60%
Chemical Reaction
20%
Diffusion Coefficient
20%
Binding Kinetics
20%
Length
20%
Tissue Level
20%
Neuroscience
Angiogenesis
100%
Ligand
33%
Growth Factor
33%
Receptor Binding
33%