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Nature Communications|June 30, 2017
Understanding dynamic friction through spontaneously evolving laboratory earthquakesV Rubino, A J Rosakis, N LapustaScience (New York, N.Y.)|March 20, 2004
Laboratory earthquakes: the sub-Rayleigh-to-supershear rupture transitionKaiwen Xia, Ares J Rosakis, Hiroo KanamoriNature Communications|February 8, 2019
Publisher Correction: Understanding dynamic friction through spontaneously evolving laboratory earthquakesV Rubino, A J Rosakis, N LapustaNature Communications|November 14, 2018
Pressure shock fronts formed by ultra-fast shear cracks in viscoelastic materialsM Gori, V Rubino, A J Rosakis, et al.Proceedings of the National Academy of Sciences of the United States of America|August 21, 2020
Illuminating the physics of dynamic friction through laboratory earthquakes on thrust faultsYuval Tal, Vito Rubino, Ares J Rosakis, et al.Journal of the Royal Society, Interface|May 7, 2020
A minimal mechanosensing model predicts keratocyte evolution on flexible substratesZhiwen Zhang, Phoebus Rosakis, Thomas Y Hou, et al.Proceedings of the National Academy of Sciences of the United States of America|December 17, 2021
Dynamic rupture initiation and propagation in a fluid-injection laboratory setup with diagnostics across multiple temporal scalesMarcello Gori, Vito Rubino, Ares J Rosakis, et al.Science (New York, N.Y.)|April 30, 2005
Laboratory earthquakes along inhomogeneous faults: directionality and supershearKaiwen Xia, Ares J Rosakis, Hiroo Kanamori, et al.Plos Computational Biology|July 1, 2024
Compressive instabilities enable cell-induced extreme densification patterns in the fibrous extracellular matrix: Discrete model predictionsChrysovalantou Kalaitzidou, Georgios Grekas, Andreas Zilian, et al.Nature|March 13, 2025
Sliding and healing of frictional interfaces that appear stationaryKrittanon Sirorattanakul, Stacy Larochelle, Vito Rubino, et al.Pageof 3