English

Self-organized Vortex State in Two-dimensional Dictyostelium Dynamics

patt-sol 2009-10-31 v2 Soft Condensed Matter Pattern Formation and Solitons Cell Behavior

Abstract

We present results of experiments on the dynamics of Dictyostelium discoideum in a novel set-up which constraints cell motion to a plane. After aggregation, the amoebae collect into round ''pancake" structures in which the cells rotate around the center of the pancake. This vortex state persists for many hours and we have explicitly verified that the motion is not due to rotating waves of cAMP. To provide an alternative mechanism for the self-organization of the Dictyostelium cells, we have developed a new model of the dynamics of self-propelled deformable objects. In this model, we show that cohesive energy between the cells, together with a coupling between the self-generated propulsive force and the cell's configuration produces a self-organized vortex state. The angular velocity profiles of the experiment and of the model are qualitatively similar. The mechanism for self-organization reported here can possibly explain similar vortex states in other biological systems.

Keywords

Cite

@article{arxiv.patt-sol/9811001,
  title  = {Self-organized Vortex State in Two-dimensional Dictyostelium Dynamics},
  author = {Wouter-Jan Rappel and Alastair Nicol and Armand Sarkissian and Herbert Levine and William F. Loomis},
  journal= {arXiv preprint arXiv:patt-sol/9811001},
  year   = {2009}
}

Comments

submitted to PRL; revised version dated 3/8/99

R2 v1 2026-07-22T18:47:53.468Z