Showing results (51-60 of 162) with videos related to
Sort By:
Pageof 17
Molecular Biology of the Cell|March 5, 2020
Reverse-engineering forces responsible for dynamic clustering and spreading of multiple nuclei in developing muscle cellsAngelika Manhart, Mafalda Azevedo, Mary Baylies, et al.Current Biology : CB|April 2, 2013
Electrophoresis of cellular membrane components creates the directional cue guiding keratocyte galvanotaxisGreg M Allen, Alex Mogilner, Julie A TheriotJournal of Mathematical Biology|July 5, 2022
F-actin bending facilitates net actomyosin contraction By inhibiting expansion with plus-end-located myosin motorsAlexander K Y Tam, Alex Mogilner, Dietmar B OelzBiophysical Journal|August 14, 2021
Protein friction and filament bending facilitate contraction of disordered actomyosin networksAlexander K Y Tam, Alex Mogilner, Dietmar B OelzPlos One|April 13, 2011
Actomyosin-dependent cortical dynamics contributes to the prophase force-balance in the early Drosophila embryoPatrizia Sommi, Dhanya Cheerambathur, Ingrid Brust-Mascher, et al.Physical Biology|May 14, 2015
Model for adhesion clutch explains biphasic relationship between actin flow and traction at the cell leading edgeErin M Craig, Jonathan Stricker, Margaret Gardel, et al.Trends in Cell Biology|January 13, 2006
Modeling mitosisAlex Mogilner, Roy Wollman, Gul Civelekoglu-Scholey, et al.Biophysical Journal|February 27, 2026
Non-uniform filament turnover, contractility, and bundle formation in disordered actomyosin networksAlexander K Y Tam, Alex Mogilner, Dietmar B OelzProceedings of the National Academy of Sciences of the United States of America|January 30, 2025
Optimal strategies for correcting merotelic chromosome attachments in anaphaseEvgenii Kliuchnikov, Kenneth A Marx, Valeri Barsegov, et al.Plos Computational Biology|December 6, 2021
Simulations of dynamically cross-linked actin networks: Morphology, rheology, and hydrodynamic interactionsOndrej Maxian, Raúl P Peláez, Alex Mogilner, et al.Pageof 17