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Molecular Biosystems|June 30, 2015
S100A4 and its role in metastasis – computational integration of data on biological networksAntoine Buetti-Dinh, Igor V Pivkin, Ran FriedmanProceedings of the National Academy of Sciences of the United States of America|November 7, 2006
Blood flow velocity effects and role of activation delay time on growth and form of platelet thrombiIgor V Pivkin, Peter D Richardson, George KarniadakisAnnals of Biomedical Engineering|June 19, 2025
A Computationally Efficient Viscoelastic Eukaryotic Cell ModelPietro Miotti, Matteo Scarpone, Chwee Teck Lim, et al.The Journal of Chemical Physics|September 24, 2005
A comparative study between dissipative particle dynamics and molecular dynamics for simple- and complex-geometry flowsEric E Keaveny, Igor V Pivkin, Martin Maxey, et al.Plos Computational Biology|August 29, 2015
Inflow/Outflow Boundary Conditions for Particle-Based Blood Flow Simulations: Application to Arterial Bifurcations and TreesKirill Lykov, Xuejin Li, Huan Lei, et al.Plos Computational Biology|September 19, 2017
Probing eukaryotic cell mechanics via mesoscopic simulationsKirill Lykov, Yasaman Nematbakhsh, Menglin Shang, et al.Biophysical Journal|January 14, 2014
Structure and response to flow of the glycocalyx layerEduardo R Cruz-Chu, Alexander Malafeev, Tautrimas Pajarskas, et al.Proceedings of the National Academy of Sciences of the United States of America|July 31, 2013
Lipid bilayer and cytoskeletal interactions in a red blood cellZhangli Peng, Xuejin Li, Igor V Pivkin, et al.The Journal of Chemical Physics|December 10, 2017
Adaptive enhanced sampling with a path-variable for the simulation of protein folding and aggregationEmanuel K PeterProceedings of the National Academy of Sciences of the United States of America|June 30, 2016
Biomechanics of red blood cells in human spleen and consequences for physiology and diseaseIgor V Pivkin, Zhangli Peng, George E Karniadakis, et al.Pageof 4