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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|June 13, 2009
Three-dimensional computational modeling of multiple deformable cells flowing in microvesselsSai K Doddi, Prosenjit BagchiJournal of Theoretical Biology|July 4, 2008
A computational study of leukocyte adhesion and its effect on flow pattern in microvesselsVijay Pappu, Sai K Doddi, Prosenjit BagchiBiophysical Journal|January 9, 2007
Mesoscale simulation of blood flow in small vesselsProsenjit BagchiBiorheology|September 14, 2007
Hydrodynamic interaction between erythrocytes and leukocytes affects rheology of blood in microvesselsVijay Pappu, Prosenjit BagchiBiophysical Journal|October 8, 2025
Predicting red blood cell transport and capillary hemodynamics in angiogenic and tumor vascular networks in silicoAbhay Mohan, Prosenjit BagchiJournal of the Royal Society, Interface|August 10, 2022
Application of machine learning in predicting blood flow and red cell distribution in capillary vessel networksSaman Ebrahimi, Prosenjit BagchiSoft Matter|January 21, 2015
Microparticle shape effects on margination, near-wall dynamics and adhesion in a three-dimensional simulation of red blood cell suspensionKoohyar Vahidkhah, Prosenjit BagchiPNAS Nexus|May 10, 2024
Predicting capillary vessel network hemodynamics in silico by machine learningSaman Ebrahimi, Prosenjit BagchiScientific Reports|March 12, 2022
A computational study of red blood cell deformability effect on hemodynamic alteration in capillary vessel networksSaman Ebrahimi, Prosenjit BagchiPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 26, 2012
Three-dimensional numerical simulation of vesicle dynamics using a front-tracking methodAlireza Yazdani, Prosenjit BagchiPageof 3