Noise-induced transitions from contractile to extensile active stress in isotropic fluids
Soft Condensed Matter
2025-07-01 v1 Biological Physics
Abstract
Tissues of living cells are a prime example of active fluids. There is experimental evidence that tissues generate extensile active stress even though their constituting cells are contractile. Fluctuating forces that could result from cell-substrate interactions have been proposed to be able to induce a transition from contractile to extensile active stress. Through analytic calculations and numerical computations, we show that in isotropic active fluids, nonlinearities and a coupling between fluctuating forces and fluid density are necessary for such a transition to occur. Here, both transitions from extensile to contractile and vice versa are possible.
Keywords
Cite
@article{arxiv.2410.14358,
title = {Noise-induced transitions from contractile to extensile active stress in isotropic fluids},
author = {Mathieu Dedenon and Karsten Kruse},
journal= {arXiv preprint arXiv:2410.14358},
year = {2025}
}
Comments
10 pages, 2 figures