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Developmental Cell|January 28, 2015
Sequential contraction and exchange of apical junctions drives zippering and neural tube closure in a simple chordateHidehiko Hashimoto, Francois B Robin, Kristin M Sherrard, et al.
Nature Methods|April 15, 2014
Single-molecule analysis of cell surface dynamics in Caenorhabditis elegans embryosFrançois B Robin, William M McFadden, Baixue Yao, et al.
The Journal of Experimental Zoology|October 4, 2002
Ingeneue: a versatile tool for reconstituting genetic networks, with examples from the segment polarity networkEli Meir, Edwin M Munro, Garrett M Odell, et al.
Molecular Biology of the Cell|September 22, 2017
Local cellular neighborhood controls proliferation in cell competitionAnna Bove, Daniel Gradeci, Yasuyuki Fujita, et al.
Soft Matter|April 11, 2023
The role of non-affine deformations in the elastic behavior of the cellular vertex modelMichael F Staddon, Arthur Hernandez, Mark J Bowick, et al.
Physical Review. E|July 20, 2022
Anomalous elasticity of a cellular tissue vertex modelArthur Hernandez, Michael F Staddon, Mark J Bowick, et al.
Plos Computational Biology|December 19, 2017
Filament turnover tunes both force generation and dissipation to control long-range flows in a model actomyosin cortexWilliam M McFadden, Patrick M McCall, Margaret L Gardel, et al.
The Journal of Cell Biology|October 3, 2018
Excitable RhoA dynamics drive pulsed contractions in the early C. elegans embryoJonathan B Michaux, François B Robin, William M McFadden, et al.
Nature Communications|August 26, 2016
Disordered actomyosin networks are sufficient to produce cooperative and telescopic contractilityIan Linsmeier, Shiladitya Banerjee, Patrick W Oakes, et al.
Biorxiv : the Preprint Server for Biology|June 5, 2026
Rapid actin filament turnover maintains cortical connectivity while allowing for cell cortex deformation and flowRachel S Kadzik, Ondrej Maxian, Isaiah Thomas, et al.
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