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Updated: May 14, 2026

Image-guided, Laser-based Fabrication of Vascular-derived Microfluidic Networks
Published on: January 3, 2017
Vascular networks due to dynamically arrested crystalline ordering of elongated cells
Margriet M Palm1, Roeland M H Merks
1Centrum Wiskunde & Informatica, Amsterdam, The Netherlands. M.M.Palm@cwi.nl
Abstract:
Recent experimental and theoretical studies suggest that crystallization and glass-like solidification are useful analogies for understanding cell ordering in confluent biological tissues. It remains unexplored how cellular ordering contributes to pattern formation during morphogenesis. With a computational model we show that a system of elongated, cohering biological cells can get dynamically arrested in a network pattern. Our model provides an explanation for the formation of cellular networks in culture systems that exclude intercellular interaction via chemotaxis or mechanical traction.
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