English

Hybrid cell-centred/vertex model for multicellular systems with equilibrium-preserving remodelling

Cell Behavior 2017-05-17 v1

Abstract

We present a hybrid vertex/cell-centred model for mechanically simulating planar cellular monolayers undergoing cell reorganisation. Cell centres are represented by a triangular nodal network, while the cell boundaries are formed by an associated vertex network. The two networks are coupled through a kinematic constraint which we allow to relax progressively. Special attention is paid to the change of cell-cell connectivity due to cell reorganisation or remodelling events. We handle these situations by using a variable resting length and applying an Equilibrium-Preserving Mapping (EPM) on the new connectivity, which computes a new set of resting lengths that preserve nodal and vertex equilibrium. We illustrate the properties of the model by simulating monolayers subjected to imposed extension and during a wound healing process. The evolution of forces and the EPM are analysed during the remodelling events. As a by-product, the proposed technique enables to recover fully vertex or fully cell-centred models in a seamlessly manner by modifying a numerical parameter of the model.

Keywords

Cite

@article{arxiv.1705.05441,
  title  = {Hybrid cell-centred/vertex model for multicellular systems with equilibrium-preserving remodelling},
  author = {Payman Mosaffa and Antonio Rodríguez-Ferran and José J. Muñoz},
  journal= {arXiv preprint arXiv:1705.05441},
  year   = {2017}
}

Comments

33 pages, 10 figures

R2 v1 2026-06-22T19:47:51.737Z