Collective deformation of anisotropic particles with internal pulsation

Fuente: arXiv
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Main Authors: Casagrande, Luca, Manacorda, Alessandro, Fodor, Etienne
Format: Preprint
Published: 2026
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author Casagrande, Luca
Manacorda, Alessandro
Fodor, Etienne
author_facet Casagrande, Luca
Manacorda, Alessandro
Fodor, Etienne
contents Capturing the emergence of deformation waves in contractile living tissues is a challenge that has recently been tackled with models of actively deformable particles. Inspired by the anisotropic deformation of cardiomyocytes in cardiac tissues, we examine how the pulsation of elliptical particles affects their collective properties in dense assemblies. We introduce two types of deformation where the eccentricity of each particle is subject to a periodic drive, and examine the interplay between nematic order and synchronized deformation via a systematic phase diagram. We derive a hydrodynamic description through a coarse-graining procedure, and show that it qualitatively captures the main collective states of the microscopic dynamics. Overall, our model provides key insights into how an active anisotropic deformation yields waves that self-organize into various dynamical patterns.
format Preprint
id arxiv_https___arxiv_org_abs_2605_25744
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Collective deformation of anisotropic particles with internal pulsation
Casagrande, Luca
Manacorda, Alessandro
Fodor, Etienne
Soft Condensed Matter
Statistical Mechanics
Capturing the emergence of deformation waves in contractile living tissues is a challenge that has recently been tackled with models of actively deformable particles. Inspired by the anisotropic deformation of cardiomyocytes in cardiac tissues, we examine how the pulsation of elliptical particles affects their collective properties in dense assemblies. We introduce two types of deformation where the eccentricity of each particle is subject to a periodic drive, and examine the interplay between nematic order and synchronized deformation via a systematic phase diagram. We derive a hydrodynamic description through a coarse-graining procedure, and show that it qualitatively captures the main collective states of the microscopic dynamics. Overall, our model provides key insights into how an active anisotropic deformation yields waves that self-organize into various dynamical patterns.
title Collective deformation of anisotropic particles with internal pulsation
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2605.25744