4.4 Article

A model for hierarchical patterns under mechanical stresses

Journal

PHILOSOPHICAL MAGAZINE
Volume 90, Issue 1-4, Pages 357-373

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/14786430903196665

Keywords

mechanical instabilities; phase field; numerical modeling; pattern dynamics

Funding

  1. EC NEST

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We present a model for mechanically-induced pattern formation in growing biological tissues and discuss its application to the development of leaf venation networks. Drawing an analogy with phase transitions in solids, we use a phase field method to describe the transition between two states of the tissue, e.g. the differentiation of leaf veins, and consider a layered system where mechanical stresses are generated by differential growth. We present analytical and numerical results for one-dimensional systems, showing that a combination of growth and irreversibility gives rise to hierarchical patterns. Two-dimensional simulations suggest that such a mechanism could account for the hierarchical, reticulate structure of leaf venation networks, yet point to the need for a more detailed treatment of the coupling between growth and mechanical stresses.

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