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PMID: 22227321 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Effects of single-sided inferior turbinectomy on nasal function and airflow characteristics.

Respiratory physiology & neurobiology ·Vol. 180 ·No. 2-3 ·2012-03-15 ·页码 289-97

Na Y, Chung KS, Chung SK, Kim SK

Abstract

Knowledge of airflow characteristics in the nasal cavity is essential to understanding the physiologic and pathologic aspects of nasal breathing. Airflows inside post-surgery models were investigated both experimentally and numerically to simulate the inferior turbinectomy. The left cavities of all three models are normal and right cavity is modified by (1) excision of the head of the inferior turbinate, (2) resection of the lower fifth of the inferior turbinate, and (3) resection of almost the entire inferior turbinate. Thin-slice CT (computed tomography) data (0.6mm deep) and meticulous refinement of the model surface by over a decade-long collaboration between engineers and an experienced ENT doctor resulted in the creation of sophisticated nasal cavity models. After numerical experiments and validation by comparison with the PIV results, the CFD code using the Reynolds stress turbulent model and variable temperature boundary condition on the mucosal wall was chosen as the proper numerical framework. Both global quantities (pressure drop, flow rate ratio, total wall heat transfer) and local changes (velocity, temperature, humidity, pressure gradient, and wall shear stress) were numerically investigated. The turbinectomy obviously altered the main stream direction. The flow rate in the upper airway near the olfactory slit decreased in models (1) and (3). This may weaken the olfactory function of the nose. Fluid and thermal properties that are believed to be related with physiology and prognosis are dependent on turbinate resection volume, position, and manner. Widening of the inferior airway does not always result in decreased flow resistance or wall heat transfer. The gains and losses of inferior turbinectomy were considered by analysis of the post-surgery model results. Nasal resistance was increased in model (1) due to sudden airway expansion. Nasal resistance increased and the wall heat transfer decreased in model (3) due to sudden airway expansion and excessive reduction of the mucosal wall surface area. Local shear stress and pressure gradient levels were increased in models (1) and (3).

MeSH 主题词
Adult Air Pressure Airway Resistance/physiology Algorithms Biomechanical Phenomena Computer Simulation Functional Laterality/physiology Humans Humidity Image Processing, Computer-Assisted Models, Anatomic Nose/physiology Respiratory Mechanics/physiology Temperature Thermodynamics Tomography, X-Ray Computed Turbinates/physiology
作者与单位
共 4 位作者,点击展开单位 / ORCID
Na Yang
Department of Mechanical Engineering, Konkuk University, Seoul 143-701, Republic of Korea.
Chung Kang Soo
Chung Seung-Kyu
Kim Sung Kyun
Article Info
Journal
Respiratory physiology & neurobiology
Abbr.
Respir Physiol Neurobiol
ISSN
1878-1519
Published
2012-03-15
电子出版
2011-00-30
页码
289-97
Language
English
Country/Region
Netherlands
NLM ID
101140022
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