Grote Marcus J, Palumberi Viviana, Wagner Barbara, Barbero Andrea, Martin Ivan
Institute of Mathematics, Rheinsprung 21, 4051, Basel, Switzerland.
J Math Biol. 2011 Oct;63(4):757-77. doi: 10.1007/s00285-010-0390-4. Epub 2010 Dec 14.
Growth factors have a significant impact not only on the growth dynamics but also on the phenotype of chondrocytes (Barbero et al. in J. Cell. Phys. 204:830-838, 2005). In particular, as chondrocytes approach confluence, the cells tend to align and form coherent patches. Starting from a mathematical model for fibroblast populations at equilibrium (Mogilner et al. in Physica D 89:346-367, 1996), a dynamic continuum model with logistic growth is developed. Both linear stability analysis and numerical solutions of the time-dependent nonlinear integro-partial differential equation are used to identify the key parameters that lead to pattern formation in the model. The numerical results are compared quantitatively to experimental data by extracting statistical information on orientation, density and patch size through Gabor filters.