Simulating Organogenesis in COMSOL: Image-based Modeling
arXiv:1408.1589
Abstract
Mathematical Modelling has a long history in developmental biology. Advances in experimental techniques and computational algorithms now permit the development of increasingly more realistic models of organogenesis. In particular, 3D geometries of developing organs have recently become available. In this paper, we show how to use image-based data for simulations of organogenesis in COMSOL Multiphysics. As an example, we use limb bud development, a classical model system in mouse developmental biology. We discuss how embryonic geometries with several subdomains can be read into COMSOL using the Matlab LiveLink, and how these can be used to simulate models on growing embryonic domains. The ALE method is used to solve signaling models even on strongly deforming domains.
References in corpus (5)
- Branch Mode Selection during Early Lung Development
- Digit patterning during limb development as a result of the BMP-receptor interaction
- Simulations demonstrate a simple network to be sufficient to control branch point selection, smooth muscle and vasculature formation during lung branching morphogenesis
- Simulation Organogenesis in COMSOL: Deforming and Interacting Domains
- Simulating Organogenesis in COMSOL