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Results: 53
Number of items: 53
  • Berg, P., Voß, S., Janiga, G., Saalfeld, S., Bergersen, A. W., Valen-Sendstad, K., Bruening, J., Goubergrits, L., Spuler, A., Chiu, T. L., Tsang, A. C. O., Copelli, G., Csippa, B., Paál, G., Závodszky, G., Detmer, F. J., Chung, B. J., Cebral, J. R., Fujimura, S., ... Beuing, O. (2019). Multiple Aneurysms AnaTomy CHallenge 2018 (MATCH)—phase II: rupture risk assessment. International Journal of Computer Assisted Radiology and Surgery, 14(10), 1795–1804. https://doi.org/10.1007/s11548-019-01986-2
  • Open Access
    Azizi Tarksalooyeh, V., Závodszky, G., & Hoekstra, A. G. (2019). Optimizing Parallel Performance of the Cell Based Blood Flow Simulation Software HemoCell. In J. M. F. Rodrigues, P. J. S. Cardoso, J. Monteiro, R. Lam, V. V. Krzhizhanovskaya, M. H. Lees, J. J. Dongarra, & P. M. A. Sloot (Eds.), Computational Science – ICCS 2019: 19th International Conference, Faro, Portugal, June 12–14, 2019 : proceedings (Vol. III, pp. 537-547). (Lecture Notes in Computer Science; Vol. 11538). Springer. https://doi.org/10.1007/978-3-030-22744-9_42
  • Open Access
    Závodszky, G., van Rooij, B., Czaja, B., Azizi, V., de Kanter, D., & Hoekstra, A. G. (2019). Red blood cell and platelet diffusivity and margination in the presence of cross-stream gradients in blood flows. Physics of Fluids, 31(3), Article 031903. https://doi.org/10.1063/1.5085881
  • Open Access
    van Rooij, B. J. M., Závodszky, G., Azizi Tarksalooyeh, V. W., & Hoekstra, A. G. (2019). Identifying the start of a platelet aggregate by the shear rate and the cell-depleted layer. Journal of the Royal Society Interface, 16(159), Article 20190148. https://doi.org/10.1098/rsif.2019.0148
  • Csippa, B., Závodszky, G., Paál, G., & Szikora, I. (2018). A new hypothesis on the role of vessel topology in cerebral aneurysm initiation. Computers in Biology and Medicine, 103, 244-251. https://doi.org/10.1016/j.compbiomed.2018.10.018
  • Open Access
    Alowayyed, S., Závodszky, G., Azizi, V., & Hoekstra, A. G. (2018). Load balancing of parallel cell-based blood flow simulations. Journal of Computational Science, 24, 1-7. https://doi.org/10.1016/j.jocs.2017.11.008
  • Open Access
    Tan, J. S. Y., Závodszky, G., & Sloot, P. M. A. (2018). Understanding Malaria Induced Red Blood Cell Deformation Using Data-Driven Lattice Boltzmann Simulations. In Y. Shi, H. Fu, Y. Tian, V. V. Krzhizhanovskaya, M. H. Lees, J. Dongarra, & P. M. A. Sloot (Eds.), Computational Science – ICCS 2018: 18th International Conference, Wuxi, China, June 11–13, 2018 : Proceedings, Part I (pp. 392-403). (Lecture Notes in Computer Science; Vol. 10860). Springer. https://doi.org/10.1007/978-3-319-93698-7_30
  • Open Access
    de Haan, M., Zavodszky, G., Azizi, V., & Hoekstra, A. G. (2018). Numerical investigation of the effects of red blood cell cytoplasmic viscosity contrasts on single cell and bulk transport behaviour. Applied Sciences, 8(9), Article 1616. https://doi.org/10.3390/app8091616
  • Open Access
    Azizi Tarksalooyeh, V. W., Závodszky, G., van Rooij, B. J. M., & Hoekstra, A. G. (2018). Inflow and outflow boundary conditions for 2D suspension simulations with the immersed boundary lattice Boltzmann method. Computers & fluids, 172, 312–317. https://doi.org/10.1016/j.compfluid.2018.04.025
  • Open Access
    Czaja, B., Závodszky, G., Azizi Tarksalooyeh, V., & Hoekstra, A. G. (2018). Cell-resolved blood flow simulations of saccular aneurysms: effects of pulsatility and aspect ratio. Journal of the Royal Society Interface, 15(146), Article 20180485. https://doi.org/10.1098/rsif.2018.0485
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