Inferring three-body interactions in cell migration dynamics

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Jouneau, Agathe, Brandstätter, Tom, Hoogland, Bram, Rädler, Joachim O., Broedersz, Chase P.
Format: Preprint
Publié: 2026
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866915718932463616
author Jouneau, Agathe
Brandstätter, Tom
Hoogland, Bram
Rädler, Joachim O.
Broedersz, Chase P.
author_facet Jouneau, Agathe
Brandstätter, Tom
Hoogland, Bram
Rädler, Joachim O.
Broedersz, Chase P.
contents In active matter and living matter, such as clusters of migrating cells, collective dynamics emerges from the underlying interactions. A common assumption of theoretical descriptions of collective cell migration is that these interactions are pairwise additive. It remains unclear, however, if the dynamics of groups of cells is solely determined by pairwise interactions, or if higher-order interaction terms come into play. To investigate this question, we use time-lapse microscopy to record the dynamics of three cells interacting together in a linear three-site geometry. We collect a large number of cellular trajectories and develop an inference scheme to infer both pairwise and potential three-body cell-cell interactions. Our results reveal evidence of three-body interactions in one of the two cell lines tested. However, these three-body interactions only introduce minor corrections to the overall dynamics. Our work provides a methodology to infer the existence of three-body interactions from trajectory data, and supports the commonly assumed pairwise nature of cell-cell interactions.
format Preprint
id arxiv_https___arxiv_org_abs_2601_05764
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Inferring three-body interactions in cell migration dynamics
Jouneau, Agathe
Brandstätter, Tom
Hoogland, Bram
Rädler, Joachim O.
Broedersz, Chase P.
Biological Physics
In active matter and living matter, such as clusters of migrating cells, collective dynamics emerges from the underlying interactions. A common assumption of theoretical descriptions of collective cell migration is that these interactions are pairwise additive. It remains unclear, however, if the dynamics of groups of cells is solely determined by pairwise interactions, or if higher-order interaction terms come into play. To investigate this question, we use time-lapse microscopy to record the dynamics of three cells interacting together in a linear three-site geometry. We collect a large number of cellular trajectories and develop an inference scheme to infer both pairwise and potential three-body cell-cell interactions. Our results reveal evidence of three-body interactions in one of the two cell lines tested. However, these three-body interactions only introduce minor corrections to the overall dynamics. Our work provides a methodology to infer the existence of three-body interactions from trajectory data, and supports the commonly assumed pairwise nature of cell-cell interactions.
title Inferring three-body interactions in cell migration dynamics
topic Biological Physics
url https://arxiv.org/abs/2601.05764