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Results: 6
Number of items: 6
  • Open Access
    Axner, L., Hoekstra, A. G., Jeays, A., Lawford, P., Hose, R., & Sloot, P. M. A. (2009). Simulations of time harmonic blood flow in the Mesenteric artery: comparing finite element and lattice Boltzmann methods. BioMedical Engineering OnLine, 8, 23. https://doi.org/10.1186/1475-925X-8-23
  • Open Access
    Zudilova-Seinstra, E., Yang, N., Axner, L., Wibisono, A., & Vasunin, D. (2008). Service-oriented visualization applied to medical data analysis. Service Oriented Computing and Applications, 2(4), 187-201. https://doi.org/10.1007/s11761-008-0031-6
  • Abrahamyan, L., Bernsdorf, J. M., Zeiser, T., Lammers, P., Hoekstra, A. G., & Sloot, P. M. A. (2006). MPI parallelization and performance aspects of a graph based LB flow solver. In Proceedings Discrete Simulation of Fluid Dynamics DSFD2006, Geneva, Switserland
  • Abrahamyan, L., Hoekstra, A. G., & Sloot, P. M. A. (2006). Choosing Optimal L-BGK Simulation Parameters for Time Harmonic Flows. In Proceedings Discrete Simulation of Fluid Dynamics DSFD2006, Geneva, Switserland
  • Abrahamyan, L., Schaap, J. A., Hoekstra, A. G., Shamonin, D. P., Box, F. M. A., van der Geest, R. J., Reiber, J. H. C., & Sloot, P. M. A. (2005). A Problem Solving Environment for Image-Based Computational Hemodynamics. Lecture Notes in Computer Science, 3514, 287-294.
  • Artoli, A. M. M., Abrahamyan, L., & Hoekstra, A. G. (2004). Accuracy versus Performance in Lattice Boltzmann BGK Simulations of Systolic Flows. Lecture Notes in Computer Science, 3039, 548-555.
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