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PMID: 19029854 Published · ppublish English Journal Article

Modeling flow in a compromised pediatric airway breathing air and heliox.

The Laryngoscope ·Vol. 118 ·No. 12 ·2008-12-00 ·页码 2205-11

Mihaescu M, Gutmark E, Murugappan S, Elluru R, Cohen A, Willging JP

Abstract

The aim of this study was to perform computer simulations of flow within an accurate model of a pediatric airway with subglottic stenosis. It is believed that the airflow characteristics in a stenotic airway are strongly related to the sensation of dyspnea. Computed tomography images through the respiratory tract of an infant with subglottic stenosis, were used to construct the three-dimensional geometry of the airway. By using computational fluid dynamics (CFD) modeling to capture airway flow patterns during inspiration and expiration, we obtained information pertaining to flow velocity, static airway wall pressure, pressure drop across the stenosis, and wall shear stress. These simulations were performed with both air and heliox. Unlike air, heliox maintained laminar flow through the stenosis. The calculated pressure drop over stenosis was lower for the heliox flow, in contrast to the airflow case. This lead to an approximately 40% decrease in airway resistance when using heliox, and presumably causes a decrease in the level of effort required for breathing. CFD simulations offer a quantitative method of evaluating airway flow dynamics in patients with airway abnormalities. CFD modeling illustrated the flow features and quantified flow parameters within a pediatric airway with subglottic stenosis. Simulations with air and heliox conditions mirrored the known clinical benefits of heliox as compared with air. We anticipate that computer simulation models will ultimately allow a better understanding of changes in flow caused by specific medical and surgical interventions in patients with conditions associated with dyspnea.

MeSH 主题词
Air Pressure Airway Resistance/physiology Computer Simulation Helium/administration & dosage Humans Image Processing, Computer-Assisted Imaging, Three-Dimensional Infant Laryngostenosis/congenital,physiopathology,therapy Models, Theoretical Oxygen/administration & dosage Pulmonary Ventilation/physiology Software Tomography, X-Ray Computed
化学物质
Helium heliox Oxygen
作者与单位
共 6 位作者,点击展开单位 / ORCID
Mihaescu Mihai
Department of Aerospace Engineering and Engineering Mechanics, University of Cincinnati, Cincinnati, OH 45221-0070, USA. [email protected]
Gutmark Ephraim
Murugappan Shanmugam
Elluru Ravindhra
Cohen Aliza
Willging J Paul
Article Info
Journal
The Laryngoscope
Abbr.
Laryngoscope
ISSN
1531-4995
Corresponding email
Published
2008-12-00
页码
2205-11
Language
English
Country/Region
United States
NLM ID
8607378
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