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PMID: 23775640 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural

Regional peak mucosal cooling predicts the perception of nasal patency.

The Laryngoscope ·Vol. 124 ·No. 3 ·2014-03-00 ·页码 589-95

Zhao K, Jiang J, Blacker K, Lyman B, Dalton P, Cowart BJ, Pribitkin EA

Abstract

Nasal obstruction is the principal symptom that drives patients with rhinosinus disease to seek medical treatment. However, patient perception of obstruction often bears little relationship to actual measured physical obstruction of airflow. This lack of an objective clinical tool hinders effective diagnosis and treatment. Previous work has suggested that the perception of nasal patency may involve nasal trigeminal activation by cool inspiratory airflow; we attempt to derive clinically relevant variables following this phenomenon. Prospective healthy cohort. Twenty-two healthy subjects rated unilateral nasal patency in controlled room air using a visual analog scale, followed by rhinomanometry, acoustic rhinometry, and butanol lateralization thresholds (BLTs). Each subject then immediately underwent a computed tomography scan, enabling the construction of a real-time computational fluid dynamics (CFD) nasal airway model, which was used to simulate nasal mucosa heat loss during steady resting breathing. Among all measured and computed variables, only CFD-simulated peak heat loss posterior to the nasal vestibule significantly correlated with patency ratings (r = -0.46, P < .01). Linear discriminant analysis predicted patency categories with 89% success rate, with BLT and rhinomanometric nasal resistance being two additional significant variables. As validation, CFD simulated nasal resistance significantly correlated with rhinomanometrically measured resistance (r = 0.41, P < .01). These results reveal that our noses are sensing patency via a mechanism involving localized peak nasal mucosal cooling. The analysis provides a strong rationale for combining the individualized CFD with other objective and neurologic measures to create a novel clinical tool to diagnose nasal obstruction and to predict and evaluate treatment outcomes.

Keywords
Nasal congestion TRPM8 cool perception nasal cooling nasal obstruction nasal trigeminal sensitivity
MeSH 主题词
Adult Airway Resistance/physiology Body Temperature Regulation Cohort Studies Cold Temperature Computer Simulation Female Humans Linear Models Male Nasal Cavity/diagnostic imaging,physiology Nasal Mucosa/diagnostic imaging,physiology Nasal Obstruction/diagnostic imaging,physiopathology Perception/physiology Pilot Projects Predictive Value of Tests Prospective Studies Reference Values Reproducibility of Results Rheology/methods Rhinomanometry/methods Sensory Thresholds Tomography, X-Ray Computed/methods Young Adult
作者与单位
共 7 位作者,点击展开单位 / ORCID
Zhao Kai
Monell Chemical Senses Center, Philadelphia, Pennsylvania, U.S.A; Department of Otolaryngology, Thomas Jefferson University, Philadelphia, Pennsylvania, U.S.A.
Jiang Jianbo
Blacker Kara
Lyman Brian
Dalton Pamela
Cowart Beverly J
Pribitkin Edmund A
Article Info
Journal
The Laryngoscope
Abbr.
Laryngoscope
ISSN
1531-4995
Published
2014-03-00
电子出版
2013-00-28
页码
589-95
Language
English
Country/Region
United States
NLM ID
8607378
基金资助
NIDCD NIH HHS · P50 DC006760 · United States
NIDCD NIH HHS · R03 DC008187 · United States
NIDCD NIH HHS · 5R03DC008187 · United States
NIDCD NIH HHS · P50 DC00006760 · United States
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