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Letture consigliate

Fraser, K. H., Taskin, M. E., Griffith, B. P., and Wu, Z. J., “The use of computational fluid dynamics in the development of ventricular assist devices,” Medical engineering & physics, Vol. 33, No. 3, 2011, pp. 263–280. Fraser, K. H., Zhang, T., Taskin, M. E., Griffith, B. P., and Wu, Z. J., “A quantitative comparison of mechanical blood damage parameters in rotary ventricular assist devices: shear stress, exposure time and hemolysis index,” Journal of Biomechanical Engineering, Vol. 134, No. 8, 2012, pp. 081002. Taskin, M. E., Fraser, K. H., Zhang, T., Wu, C., Griffith, B. P., and Wu, Z. J., “Evaluation of Eulerian and Lagrangian models for hemolysis estimation,” ASAIO journal, Vol. 58, No. 4, 2012, pp. 363–372. Fuchs, G., Berg, N., Broman, L. M., and Prahl Wittberg, L., “Flow-induced platelet activation in components of the extracorporeal membrane oxygenation circuit,” Scientific reports, Vol. 8, No. 1, 2018, pp. 13985. Ananthaseshan, S., Bojakowski, K., Sacharczuk, M., Poznanski, P., Skiba, D. S., Prahl Wittberg, L., McKenzie, J., Szkulmowska, A., Berg, N., Andziak, P., et al., “Red blood cell distribution width is associated with increased interactions of blood cells with vascular wall,” Scientific Reports, Vol. 12, No. 1, 2022, pp. 13676. Parker, L. P., Svensson Marcial, A., Brismar, T. B., Broman, L. M., and Prahl Wittberg, L., “Hemodynamic and recirculation performance of dual lumen cannulas for venovenous extracorporeal membrane oxygenation,” Scientific Reports, Vol. 13, No. 1, 2023, pp. 7472. Durán, E., García-Villalba, M., Martínez-Legazpi, P., Gonzalo, A., McVeigh, E., Kahn, A. M., Bermejo, J., Flores, O., and Del Álamo, J. C., “Pulmonary vein flow split effects in patient-specific simulations of left atrial flow,” Computers in biology and medicine, Vol. 163, 2023, pp. 107128. Gonzalo, A., García-Villalba, M., Rossini, L., Duran, E., Vigneault, D., Martínez-Legazpi, P., Flores, O., Bermejo, J., McVeigh, E., Kahn, A. M., et al., “Non-Newtonian blood rheology impacts left atrial stasis in patient-specific simulations,” International journal for numerical methods in biomedical engineering, Vol. 38, No. 6, 2022, pp. e3597.

Luogo

Centro Internazionale di Scienze Meccaniche
Piazza G. Garibaldi, 18
33100 UDINE
Udine
Italy

Date

13/07/2025 18:0017/07/2025 18:00

Codice corso

C2509

Organizzatore

Centro Internazionale di Scienze Meccaniche
Piazza G. Garibaldi, 18
UDINE

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