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Numerical investigation on the flow characteristics and aerodynamic force of the upper airway of patient with obstructive sleep apnea using computational fluid dynamics

Authors
Jeong, Soo-JinKim, Woo-SeungSung, Sang-Jin
Issue Date
Jul-2007
Publisher
ELSEVIER SCI LTD
Keywords
CFD; airway; pressure drop; wall shear stress; aerodynamic force; obstructive sleep apnea (OSA)
Citation
MEDICAL ENGINEERING & PHYSICS, v.29, no.6, pp 637 - 651
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
MEDICAL ENGINEERING & PHYSICS
Volume
29
Number
6
Start Page
637
End Page
651
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/43568
DOI
10.1016/j.medengphy.2006.08.017
ISSN
1350-4533
1873-4030
Abstract
Developing a mathematical model to predict the abnormal flow characteristics that are produced by obstructive sleep apnea is an important step in learning the pathophysiology of the obstructive sleep apnea (OSA) disease. The present study provides detailed calculations of flow in the pharyngeal airway of a patient with obstructive sleep apnea. To achieve this goal, a computational fluid dynamics model was constructed using raw data from three-dimensional computed tomogram (CT) images of an OSA patient. To reproduce the important transition from laminar to turbulent flow in the pharyngeal airway, the low Reynolds number k-epsilon model was adopted and successfully validated using previous open literature. The results show that the flow in the pharyngeal airway of patients with OSA comprises a turbulent jet formed by area restriction at the velopharynx. This turbulent jet causes higher shear and pressure forces in the vicinity of the velopharynx. From the results, It may be deduced that the most collapsible area in the pharyngeal airway of OSA patients is the velopharynx where minimum intraluminal pressure and maximum aerodynamic force lie. (c) 2006 IPEM. Published by Elsevier Ltd. All rights reserved.
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