English

Poissonian cellular Potts models reveal nonequilibrium kinetics of cell sorting

Statistical Mechanics 2025-06-19 v4 Biological Physics

Abstract

Cellular Potts models are broadly applied across developmental biology and cancer research. We overcome limitations of the traditional approach, which reinterprets a modified Metropolis sampling as ad hoc dynamics, by introducing a physical timescale through Poissonian kinetics and by applying principles of stochastic thermodynamics to separate thermal and relaxation effects from athermal noise and nonconservative forces. Our method accurately describes cell-sorting dynamics in mouse-embryo development and identifies the distinct contributions of nonequilibrium processes, e.g. cell growth and active fluctuations.

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Cite

@article{arxiv.2306.04443,
  title  = {Poissonian cellular Potts models reveal nonequilibrium kinetics of cell sorting},
  author = {Roman Belousov and Sabrina Savino and Prachiti Moghe and Takashi Hiiragi and Lamberto Rondoni and Anna Erzberger},
  journal= {arXiv preprint arXiv:2306.04443},
  year   = {2025}
}

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