Author
Ngwa, G
Maini, P
Journal title
J Math Biol
DOI
10.1007/BF00163040
Issue
5
Volume
33
Last updated
2026-01-18T09:31:07+00:00
Page
489-520
Abstract
We present an in-depth study of spatio-temporal patterns in a simplified version of a mechanical model for pattern formation in mesenchymal morphogenesis. We briefly motivate the derivation of the model and show how to choose realistic boundary conditions to make the system well-posed. We firstly consider one-dimensional patterns and carry out a nonlinear perturbation analysis for the case where the uniform steady state is linearly unstable to a single mode. In two-dimensions, we show that if the displacement field in the model is represented as a sum of orthogonal parts, then the model can be decomposed into two sub-models, only one of which is capable of generating pattern. We thus focus on this particular sub-model. We present a nonlinear analysis of spatio-temporal patterns exhibited by the sub-model on a square domain and discuss mode interaction. Our analysis show that when a two-dimensional mode number admits two or more degenerate mode pairs, the solution of the full nonlinear system of partial differential equations is a mixed mode solution in which all the degenerate mode pairs are represented in a frequency locked oscillation.
Symplectic ID
4452
Download URL
https://www.ncbi.nlm.nih.gov/pubmed/7751828
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Publication type
Journal Article
Publication date
1995
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