Home LiteratureArticle Details
PMID: 30444909 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Sensitivity of nasal airflow variables computed via computational fluid dynamics to the computed tomography segmentation threshold.

PloS one ·Vol. 13 ·No. 11 ·2018-00-00 ·页码 e0207178

Cherobin GB, Voegels RL, Gebrim EMMS, Garcia GJM

Abstract

Computational fluid dynamics (CFD) allows quantitative assessment of transport phenomena in the human nasal cavity, including heat exchange, moisture transport, odorant uptake in the olfactory cleft, and regional delivery of pharmaceutical aerosols. The first step when applying CFD to investigate nasal airflow is to create a 3-dimensional reconstruction of the nasal anatomy from computed tomography (CT) scans or magnetic resonance images (MRI). However, a method to identify the exact location of the air-tissue boundary from CT scans or MRI is currently lacking. This introduces some uncertainty in the nasal cavity geometry. The radiodensity threshold for segmentation of the nasal airways has received little attention in the CFD literature. The goal of this study is to quantify how uncertainty in the segmentation threshold impacts CFD simulations of transport phenomena in the human nasal cavity. Three patients with nasal airway obstruction were included in the analysis. Pre-surgery CT scans were obtained after mucosal decongestion with oxymetazoline. For each patient, the nasal anatomy was reconstructed using three different thresholds in Hounsfield units (-800HU, -550HU, and -300HU). Our results demonstrate that some CFD variables (pressure drop, flowrate, airflow resistance) and anatomic variables (airspace cross-sectional area and volume) are strongly dependent on the segmentation threshold, while other CFD variables (intranasal flow distribution, surface area) are less sensitive to the segmentation threshold. These findings suggest that identification of an optimal threshold for segmentation of the nasal airway from CT scans will be important for good agreement between in vivo measurements and patient-specific CFD simulations of transport phenomena in the nasal cavity, particularly for processes sensitive to the transnasal pressure drop. We recommend that future CFD studies should always report the segmentation threshold used to reconstruct the nasal anatomy.

MeSH 主题词
Adult Computer Simulation Female Humans Hydrodynamics Imaging, Three-Dimensional Magnetic Resonance Imaging Male Middle Aged Models, Anatomic Nasal Cavity/anatomy & histology,diagnostic imaging,physiology Nasal Obstruction/diagnostic imaging,pathology,physiopathology Respiratory Mechanics/physiology Tomography, X-Ray Computed/statistics & numerical data
作者与单位
共 4 位作者,点击展开单位 / ORCID
Cherobin Giancarlo B
Department of Ophtalmology and Otorhinolaryngology, Universidade de São Paulo, São Paulo, Brazil.
Voegels Richard L
Department of Ophtalmology and Otorhinolaryngology, Universidade de São Paulo, São Paulo, Brazil.
Gebrim Eloisa M M S
Department of Radiology, Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo, São Paulo, Brazil.
Garcia Guilherme J M
Department of Biomedical Engineering, Marquette University & The Medical College of Wisconsin, Milwaukee, Wisconsin, United States of America. | Department of Otolaryngology and Communication Sciences, Medical College of Wisconsin, Milwaukee, Wisconsin, United States of America.
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2018-00-00
电子出版
2018-00-16
页码
e0207178
Language
English
Country/Region
United States
NLM ID
101285081
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]