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An Efficient GPU Parallelization for Arbitrary Collocated Polyhedral Finite Volume Grids and Its Application to Incompressible Fluid Flows.

, , , , , , and . HiPC Workshops, page 81-89. IEEE Computer Society, (2016)

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Autonomous Environmental Sensing System for Human Activity Monitoring., , , , and . JACIII, 15 (3): 383-388 (2011)An Efficient GPU Parallelization for Arbitrary Collocated Polyhedral Finite Volume Grids and Its Application to Incompressible Fluid Flows., , , , , , and . HiPC Workshops, page 81-89. IEEE Computer Society, (2016)A Parallel Multilevel Technique for Solving the Bidomain Equation on a Human Heart with Purkinje Fibers and a Torso Model., , and . SIAM Review, 52 (4): 717-743 (2010)Multiscale Heart Simulation with Cooperative Stochastic Cross-Bridge Dynamics and Cellular Structures., , , , , , and . Multiscale Modeling & Simulation, 11 (4): 965-999 (2013)HPC Techniques for a Heart Simulator., , , and . VECPAR, volume 6449 of Lecture Notes in Computer Science, page 28-29. Springer, (2010)A Multi-Scale Heart Simulation on Massively Parallel Computers., , , , , and . SC, page 1-11. IEEE, (2010)Tailor-made heart simulation predicts the effect of cardiac resynchronization therapy in a canine model of heart failure., , , , , , , , and . Medical Image Analysis, (2016)Echocardiogram Simulator based on Computer-Simulated Heart., , , , and . EGVE/ICAT/EuroVR, page 73-76. Eurographics Association, (2009)Deformable regions of interest with multiple points for tissue tracking in echocardiography., , , , , , and . Medical Image Analysis, (2017)A Parallel Multilevel Technique for Solving the Bidomain Equation on a Human Heart with Purkinje Fibers and a Torso Model., , and . SIAM J. Scientific Computing, 30 (6): 2855-2881 (2008)