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Plos Computational Biology|April 2, 2026
A surface morphology-based inference method for the cell wall elasticity profile in tip-growing cellsRholee Xu, Luis Vidali, Min WuMicropublication Biology|November 22, 2022
Inhibition of the Exocyst Complex with Endosidin 2 Reduces Polarized Growth in <i>Physcomitrium patens.</i>Eric Bormann, Rholee Xu, Clare Nargi, et al.Journal of Theoretical Biology|June 23, 2025
Inferring exocytosis profiles from cell shapes using a dual-configuration model of walled cell tip growthKamryn Spinelli, Chaozhen Wei, Luis Vidali, et al.Plant Molecular Biology|April 7, 2021
Quantitative cell biology of tip growth in mossJeffrey P Bibeau, Giulia Galotto, Min Wu, et al.Current Opinion in Plant Biology|October 2, 2012
Physcomitrella patens: a model for tip cell growth and differentiationLuis Vidali, Magdalena BezanillaJournal of Visualized Experiments : Jove|May 5, 2011
Efficient polyethylene glycol (PEG) mediated transformation of the moss Physcomitrella patensYen-Chun Liu, Luis VidaliMethods in Molecular Biology (Clifton, N.J.)|October 18, 2013
Morphological analysis of cell growth mutants in PhyscomitrellaJeffrey P Bibeau, Luis VidaliBiochemical Society Transactions|April 17, 2024
Myosin XI, a model of its conserved role in plant cell tip growthEdward J Chocano-Coralla, Luis VidaliBiochemical and Biophysical Research Communications|January 18, 2018
Myosin XI localizes at the mitotic spindle and along the cell plate during plant cell division in Physcomitrella patensHao Sun, Fabienne Furt, Luis VidaliJournal of Cell Science|May 29, 2008
Endogenous RhoG is dispensable for integrin-mediated cell spreading but contributes to Rac-independent migrationJulia Meller, Luis Vidali, Martin Alexander SchwartzPageof 484