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Research PaperResearchia:202609.04018

Modeling Tissue Detachment and Rupture Using an Extended Vertex Model with T2-inverse Transitions

Shota Nishimoto

Abstract

The vertex model is widely used to describe the mechanics of epithelial tissues, but its conventional formulation assumes that all cells remain tightly packed and always share edges with their neighbors, making it difficult to represent local detachment or gap formation. Here, we propose a minimal extension of the vertex model that enables cell detachment by introducing a new topological transformation, T2-inverse, which acts as the inverse of the classical T2 transition. When the imbalance of f...

Submitted: September 4, 2026Subjects: Biology; Biology

Description / Details

The vertex model is widely used to describe the mechanics of epithelial tissues, but its conventional formulation assumes that all cells remain tightly packed and always share edges with their neighbors, making it difficult to represent local detachment or gap formation. Here, we propose a minimal extension of the vertex model that enables cell detachment by introducing a new topological transformation, T2-inverse, which acts as the inverse of the classical T2 transition. When the imbalance of forces acting on a vertex, quantified by a tension metric TT, exceeds a threshold, the T2-inverse splits the vertex into multiple vertices and creates a closed polygon that is incorporated as a pseudo-cell. This operation allows the model to represent the emergence and propagation of local detachment events. Using this framework, we simulate the stretching of a cell sheet and show that force-induced local detachments can accumulate to produce macroscopic tissue rupture. These results demonstrate that the proposed model extends the capability of the vertex model to describe tissue-level breakdown processes, including detachment and tearing, and provides a foundation for studying a broader class of epithelial mechanical phenomena.


Source: arXiv:2609.03691v1 - http://arxiv.org/abs/2609.03691v1 PDF: https://arxiv.org/pdf/2609.03691v1 Original Link: http://arxiv.org/abs/2609.03691v1

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Date:
Sep 4, 2026
Topic:
Biology
Area:
Biology
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