Three-dimensional vertex model for simulating multicellular morphogenesis
Author:
Affiliation:
1. Center for Developmental Biology, RIKEN
2. Institute for Frontier Medical Sciences, Kyoto University
Publisher
Biophysical Society of Japan
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/biophysico/12/0/12_13/_pdf
Reference11 articles.
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2. [5] Honda, H. & Nagai, T. Cell models lead to understanding of multi-cellular morphogenesis consisting of successive self-construction of cells. J Biochem. 157, 129–136 (2015).
3. [6] Okuda, S., Inoue, Y., Eiraku, M., Adachi, T. & Sasai, Y. Vertex dynamics simulations of viscosity-dependent deformation during tissue morphogenesis. Biomech. Model. Mechanobiol. 14, 413–425 (2015).
4. [11] Nagai, T., Ohta, S., Kawasaki, K. & Okuzono, T. Computer simulation of cellular pattern growth in two and three dimensions. Phase Transit. 28, 177–211 (1990).
5. [12] Okuda, S., Inoue, Y., Eiraku, M., Sasai, Y. & Adachi, T. Reversible network reconnection model for simulating large deformation in dynamic tissue morphogenesis. Biomech. Model. Mechanobiol. 12, 627–644 (2013).
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