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Simulating droplet motion on virtual leaf surfaces.A fibrocontractive mechanochemical model of dermal wound closure incorporating realistic growth factor kinetics.Travelling waves for a velocity-jump model of cell migration and proliferation.Characterizing transport through a crowded environment with different obstacle sizes.Simplified approach for calculating moments of action for linear reaction-diffusion equations.A model for one-dimensional morphoelasticity and its application to fibroblast-populated collagen lattices.Velocity-jump models with crowding effects.Moments of action provide insight into critical times for advection-diffusion-reaction processes.Modelling the interaction of keratinocytes and fibroblasts during normal and abnormal wound healing processes.Clinical strategies for the alleviation of contractures from a predictive mathematical model of dermal repair.A curve shortening flow rule for closed embedded plane curves with a prescribed rate of change in enclosed area.A two-compartment mechanochemical model of the roles of transforming growth factor β and tissue tension in dermal wound healing.Nanoparticle melting as a stefan moving boundary problem.The effect of surface tension on steadily translating bubbles in an unbounded Hele-Shaw cell.Comment on “Local accumulation times for source, diffusion, and degradation models in two and three dimensions” [J. Chem. Phys. 138, 104121 (2013)]Image analysis of shatter and pinning events on hard-to-wet leaf surfaces by drops containing surfactantSimulating spray droplet impaction outcomes: comparison with experimental data
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description
onderzoeker
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researcher ORCID ID = 0000-0001-5304-2384
@en
name
Scott McCue
@ast
Scott McCue
@en
Scott McCue
@es
Scott McCue
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type
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Scott McCue
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Scott McCue
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Scott McCue
@es
Scott McCue
@nl
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Scott McCue
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Scott McCue
@en
Scott McCue
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Scott McCue
@nl
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P1153
7003313605
P2456
P31
P496
0000-0001-5304-2384