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    Liste de publications de Clément Rigaut


      Articles dans des revues avec comité de lecture (16)

  1. 1. Rigaut, C., Haut, B., Lambert, P., & Goole, J. (2026). Unveiling the sumatriptan dose-relief relationship. European Journal of Clinical Pharmacology, 82(8). doi:10.1007/s00228-026-04137-0
  2. 2. Maufroy, E., Rigaut, C., Maufroy, C., Baeyens, N., & Deboeck, G. (2026). Vascular remodeling enhances high-flow muscle oxygen delivery following aerobic exercise training. Frontiers in physiology, 17. doi:10.3389/fphys.2026.1840439
  3. 3. Arnedo, C., Calmet, H., Rigaut, C., Haut, B., Ceccacci, S., Gargallo-Peiró, A., Houzeaux, G., & Eguzkitza, B. (2026). Impact of two-way coupling on airflow and powder deposition in the pediatric nasal cavity based on a bouncing-wall interaction model. European journal of mechanics. B, Fluids, 204542. doi:10.1016/j.euromechflu.2026.204542
  4. 4. Haut, B., Boey, C., & Rigaut, C. (2026). Exploring UEFA Champions League formats: A simulation-based comparison. Sports Economics Review, 14, 100071. doi:10.1016/j.serev.2026.100071
  5. 5. Rigaut, C., Deruyver, L., Goole, J., Lambert, P., & Haut, B. (2025). A comprehensive analytical model for predicting drug absorption in the olfactory region: Application to nose-to-brain delivery. International journal of pharmaceutics, 125392. doi:10.1016/j.ijpharm.2025.125392
  6. 6. Haut, B., Karamaoun, C., & Rigaut, C. (2025). A new computational framework for simulating airway resistance, fraction of exhaled nitric oxide, and diffusing capacity for nitric oxide. PloS one, 20(1), e0311667. doi:10.1371/journal.pone.0311667
  7. 7. Ceccacci, S., Calmet, H., Gargallo-Peiró, A., Rigaut, C., Haut, B., Houzeaux, G., & Eguzkitza, B. (2025). A bouncing computational model of particle–mucus interaction for predictive deposition maps in the airways. Journal of aerosol science, 185, 106536. doi:10.1016/j.jaerosci.2025.106536
  8. 8. Rigaut, C., Giaprakis, A., Deruyver, L., Goole, J., Lambert, P., & Haut, B. (2024). The air conditioning in the nose of mammals depends on their mass and on their maximal running speed. Scientific Reports, 14(1). doi:10.1038/s41598-024-59768-z
  9. 9. Rigaut, C., Deruyver, L., Niesen, M., Vander Ghinst, M., Goole, J., Lambert, P., & Haut, B. (2023). What Are the Key Anatomical Features for the Success of Nose-to-Brain Delivery? A Study of Powder Deposition in 3D-Printed Nasal Casts. Pharmaceutics, 15(12), 2661. doi:10.3390/pharmaceutics15122661
  10. 10. Deruyver, L., Rigaut, C., Gomez, A., Lambert, P., Haut, B., & Goole, J. (2023). In vitro Evaluation of Paliperidone Palmitate Loaded Cubosomes Effective for Nasal-to-Brain Delivery. International Journal of Nanomedicine (Online). doi:10.2147/IJN.S397650
  11. 11. Calmet, H., Oks, D., Santiago, A., Houzeaux, G., Corfec, A. L., Deruyver, L., Rigaut, C., Lambert, P., Haut, B., & Goole, J. (2022). Validation and Sensitivity analysis for a nasal spray deposition computational model. International journal of pharmaceutics, 626, 122118. doi:10.1016/j.ijpharm.2022.122118
  12. 12. Rigaut, C., Deruyver, L., Goole, J., Haut, B., & Lambert, P. (2022). Instillation of a Dry Powder in Nasal Casts: Parameters Influencing the Olfactory Deposition With Uni- and Bi-Directional Devices. Frontiers in Medical Technology, 4. doi:10.3389/fmedt.2022.924501

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