To what extent does the consideration of positive total flux influence the dynamics of Keller-Segel-type models?

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Main Authors: Baghaei, Khadijeh, Frassu, Silvia, Tanaka, Yuya, Viglialoro, Giuseppe
Format: Preprint
Published: 2025
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author Baghaei, Khadijeh
Frassu, Silvia
Tanaka, Yuya
Viglialoro, Giuseppe
author_facet Baghaei, Khadijeh
Frassu, Silvia
Tanaka, Yuya
Viglialoro, Giuseppe
contents Since the introduction of the Keller-Segel model in 1970 to describe chemotaxis (the interactions between cell distributions u and chemical distributions v), there has been a significant proliferation of research articles exploring various extensions and modifications of this model within the scientific community. From a technical standpoint, the totality of results concerning these variants are characterized by the assumption that the total flux, involving both distributions, of the model under consideration is zero. This research aims to present a novel perspective by focusing on models with a positive total flux. Specifically, by employing Robin-type boundary conditions for u and v, we seek to gain insights into the interactions between cells and their environment, uncovering important dynamics such as how variations in boundary conditions influence chemotactic behavior. In particular, the choice of the boundary conditions is motivated by real-world phenomena and by the fact that the related analysis reveals some interesting properties of the system.
format Preprint
id arxiv_https___arxiv_org_abs_2505_06586
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle To what extent does the consideration of positive total flux influence the dynamics of Keller-Segel-type models?
Baghaei, Khadijeh
Frassu, Silvia
Tanaka, Yuya
Viglialoro, Giuseppe
Analysis of PDEs
Since the introduction of the Keller-Segel model in 1970 to describe chemotaxis (the interactions between cell distributions u and chemical distributions v), there has been a significant proliferation of research articles exploring various extensions and modifications of this model within the scientific community. From a technical standpoint, the totality of results concerning these variants are characterized by the assumption that the total flux, involving both distributions, of the model under consideration is zero. This research aims to present a novel perspective by focusing on models with a positive total flux. Specifically, by employing Robin-type boundary conditions for u and v, we seek to gain insights into the interactions between cells and their environment, uncovering important dynamics such as how variations in boundary conditions influence chemotactic behavior. In particular, the choice of the boundary conditions is motivated by real-world phenomena and by the fact that the related analysis reveals some interesting properties of the system.
title To what extent does the consideration of positive total flux influence the dynamics of Keller-Segel-type models?
topic Analysis of PDEs
url https://arxiv.org/abs/2505.06586