In Vitro Experiments and Numerical Simulations of Airflow in Realistic Nasal Airway Geometry

Author:

Croce Céline,Fodil Redouane,Durand Marc,Sbirlea-Apiou Gabriela,Caillibotte Georges,Papon Jean-François,Blondeau Jean-Robert,Coste André,Isabey Daniel,Louis Bruno

Publisher

Springer Science and Business Media LLC

Subject

Biomedical Engineering

Reference30 articles.

1. Bridger, G. P., and D. F. Proctor. Maximum nasal inspiratory flow and nasal resistance. Ann. Otol. Rhinol. Laryngol. 79:481–488, 1970.

2. Castro, F., P. Castro, A. Delgado, C. Méndez, and C. Cenjor. Computational fluid dynamics simulations of the airflow in the human nasal cavity. In: Proceedings of the 7th International Symposium on Fluid Control, Measurement and Visualization, 2003.

3. Durand, M. Réalisation et validation d’un modèle plastiné des cavités nasosinusiennes pour l’étude de la diffusion des aérosols. Saint-Étienne: DEA de Génie Biologique et Médical, 1999.

4. Durand, M., P. Rusch, D. Granjon, G. Chantrel, J. M. Prades, F. Dubois, D. Esteve, J. F. Pouget, and C. Martin. Preliminary study of the deposition of aerosol in the maxillary sinuses using a plastinated model. J. Aerosol. Med. 14:83–93, 2001.

5. Elad, D., R. Liebenthal, B. L. Wenig, and S. Einav. Analysis of air flow patterns in the human nose. Med. Biol. Eng. Comput. 31:585–592, 1993.

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