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PMID: 16783655 Published · ppublish English Comparative Study Evaluation Study Journal Article Research Support, Non-U.S. Gov't

In vitro experiments and numerical simulations of airflow in realistic nasal airway geometry.

Annals of biomedical engineering ·Vol. 34 ·No. 6 ·2006-06-00 ·页码 997-1007

Croce C, Fodil R, Durand M, Sbirlea-Apiou G, Caillibotte G, Papon JF, Blondeau JR, Coste A, Isabey D, Louis B

Abstract

Pressure-flow relationships measured in human plastinated specimen of both nasal cavities and maxillary sinuses were compared to those obtained by numerical airflow simulations in a numerical three-dimensional reconstruction issued from CT scans of the plastinated specimen. For experiments, flow rates up to 1,500 ml/s were tested using three different gases: HeO(2), Air, and SF(6). Numerical inspiratory airflow simulations were performed for flow rates up to 353 ml/s in both the nostrils using a finite-volume-based method under steady-state conditions with CFD software using a laminar model. The good agreement between measured and numerically computed total pressure drops observed up to a flow rate of 250 ml/s is an important step to validate the ability of CFD software to describe flow in a physiologically realistic binasal model. The major total pressure drop was localized in the nasal valve region. Airflow was found to be predominant in the inferior median part of nasal cavities. Two main vortices were observed downstream from the nasal valve and toward the olfactory region. In the future, CFD software will be a useful tool for the clinician by providing a better understanding of the complexity of three-dimensional breathing flow in the nasal cavities allowing more appropriate management of the patient's symptoms.

MeSH 主题词
Computer Simulation Humans Models, Biological Nasal Cavity/anatomy & histology,physiology Pulmonary Ventilation/physiology Respiratory Mechanics/physiology Rheology/methods
作者与单位
共 10 位作者,点击展开单位 / ORCID
Croce Céline
Fonctions Cellulaires et Moléculaires de l'Appareil Respiratoire et des Vaisseaux, Equipe Biomécanique Cellulaire et Respiratoire, INSERM UMR 651, Créteil, France.
Fodil Redouane
Durand Marc
Sbirlea-Apiou Gabriela
Caillibotte Georges
Papon Jean-François
Blondeau Jean-Robert
Coste André
Isabey Daniel
Louis Bruno
Article Info
Journal
Annals of biomedical engineering
Abbr.
Ann Biomed Eng
ISSN
0090-6964
Published
2006-06-00
电子出版
2006-00-05
页码
997-1007
Language
English
Country/Region
United States
NLM ID
0361512
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