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

被引:0
|
作者
Céline Croce
Redouane Fodil
Marc Durand
Gabriela Sbirlea-Apiou
Georges Caillibotte
Jean-François Papon
Jean-Robert Blondeau
André Coste
Daniel Isabey
Bruno Louis
机构
[1] Equipe Biomécanique Cellulaire et Respiratoire,Fonctions Cellulaires et Moléculaires de l’Appareil Respiratoire et des Vaisseaux
[2] Faculté de Médecine de Saint-Etienne,Laboratoire d’Anatomie
[3] Centre Hospitalier Emile Roux,Centre de Recherche Claude Delorme
[4] Air Liquide,Service d’ORL et de Chirurgie Cervico
[5] Centre Hospitalier Intercommunal de Créteil et Hôpital Henri Mondor (AP-HP),Faciale
[6] Centre Hospitalier Inter-Communal de Créteil,Service de Radiologie
[7] Faculté de Médecine,INSERM U651
来源
关键词
Nasal airway model; Nasal airflow; CT scans; Three-dimensional reconstruction; Computational fluid dynamics (CFD);
D O I
暂无
中图分类号
学科分类号
摘要
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 1500 ml/s were tested using three different gases: HeO2, Air, and SF6. 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.
引用
收藏
页码:997 / 1007
页数:10
相关论文
共 50 条
  • [1] In vitro experiments and numerical simulations of airflow in realistic nasal airway geometry
    Croce, Celine
    Fodil, Redouane
    Durand, Marc
    Sbirlea-Apiou, Gabriela
    Caillibotte, Georges
    Papon, Jean-Francois
    Blondeau, Jean-Robert
    Coste, Andre
    Isabey, Daniel
    Louis, Bruno
    [J]. ANNALS OF BIOMEDICAL ENGINEERING, 2006, 34 (06) : 997 - 1007
  • [2] Nasal airflow in a realistic anatomic geometry
    van der Leeden, R.
    Avital, E.
    Kenyon, G.
    [J]. DIRECT AND LARGE-EDDY SIMULATION VI, 2006, 10 : 423 - +
  • [3] Numerical simulation of airflow in diseased human nasal airway
    Riazuddin, V. N.
    Ahmad, K. A.
    Tamagawa, M.
    Zubair, M.
    Rashid, N. Abdul
    Mazlan, N.
    [J]. PROCEEDINGS OF MECHANICAL ENGINEERING RESEARCH DAY 2017 (MERD), 2017, : 90 - 91
  • [4] Simulated airflow and rigid fiber behavior in a realistic nasal airway model
    Shanley, Kevin T.
    Ahmadi, Goodarz
    Hopke, Philip K.
    Cheng, Yung-Sung
    [J]. PARTICULATE SCIENCE AND TECHNOLOGY, 2018, 36 (02) : 131 - 140
  • [5] Modelling the human pharyngeal airway: validation of numerical simulations using in vitro experiments
    Franz Chouly
    Annemie Van Hirtum
    Pierre-Yves Lagrée
    Xavier Pelorson
    Yohan Payan
    [J]. Medical & Biological Engineering & Computing, 2009, 47 : 49 - 58
  • [6] Modelling the human pharyngeal airway: validation of numerical simulations using in vitro experiments
    Chouly, Franz
    Van Hirtum, Annemie
    Lagree, Pierre-Yves
    Pelorson, Xavier
    Payan, Yohan
    [J]. MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 2009, 47 (01) : 49 - 58
  • [7] Numerical simulations for detailed airflow dynamics in a human nasal cavity
    Wen, Jian
    Inthavong, Kiao
    Tu, Jiyuan
    Wang, Simin
    [J]. RESPIRATORY PHYSIOLOGY & NEUROBIOLOGY, 2008, 161 (02) : 125 - 135
  • [8] Numerical investigation of the flow field in realistic nasal septal perforation geometry
    Faramarzi, Mohammad
    Baradaranfar, Mohammad Hossein
    Abouali, Omid
    Atighechi, Saeid
    Ahmadi, Goodarz
    Farhadi, Pejman
    Keshavarzian, Erfan
    Behniafard, Nasim
    Baradaranfar, Amin
    [J]. ALLERGY & RHINOLOGY, 2014, 5 (02) : E70 - E77
  • [9] Nasal airway volume and resistance to airflow
    Zhang, Gehua
    Solomon, Philip
    Rival, Richard
    Fenton, Ronald S.
    Cole, Philip
    [J]. AMERICAN JOURNAL OF RHINOLOGY, 2008, 22 (04): : 371 - 375
  • [10] A Numerical Simulation of the Airflow and Aerosol Particle Deposition in a Realistic Airway Model of a Healthy Adult
    Ciloglu, Dogan
    Karaman, Adem
    [J]. JOURNAL OF PHARMACEUTICAL SCIENCES, 2022, 111 (11) : 3130 - 3140