Diagnosis of rhinosinusitis with a colorimetric sensor array

被引:18
作者
Thaler, Erica R. [1 ]
Lee, Daniel D. [2 ]
Hanson, C. William [3 ]
机构
[1] Univ Penn, Dept Otorhinolaryngol Head & Neck Surg, Philadelphia, PA 19104 USA
[2] Univ Penn, Dept Elect & Syst Engn, Philadelphia, PA 19104 USA
[3] Univ Penn, Dept Anesthesia Crit Care, Philadelphia, PA 19104 USA
关键词
D O I
10.1088/1752-7155/2/3/037016
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A variety of electronic nose technologies are currently commercially available or under evaluation at research institutions. Sensors include conducting polymers, polymer composites, acoustic wave, metal oxide and optical fiber arrays. Reactive, metalloporphyrin dyes have also been used as colorimetric sensor arrays (CSAs). We hypothesized that a CSA array could be used to distinguish exhaled gas from patients with chronic bacterial sinusitis versus those without. Exhaled gas was selectively sampled from the nasal passages using a nasal CPAP (continuous positive airway pressure) mask and pumped across an array of 36 metalloporphyrin sensor dots printed on a paper sensor cartridge, which was photographed at 2 min intervals during the sampling period for a total of 12 min. Changes in the red, green and blue values for each of the senor dots were recorded for each time interval. Eleven patients with sinusitis were compared to nine control patients. A leave-one-out classification test was carried out using binary logistic regression, which employed the principal component projections of data as features. The classification rate was as high as 90% accurate at 2, 4 and 6 min, following exposure using 12 principal components. Classification accuracy fell off when more principal components were used and at longer time intervals following exposure. Chronic sinusitis is typically a clinical diagnosis and the etiologic organisms include both Gram-positive and Gram-negative bacteria. Accurate classification at 90% is very encouraging and warrants further investigation.
引用
收藏
页数:4
相关论文
共 18 条
[1]   Epidemiology and economic impact of rhinosinusitis [J].
Anand, VK .
ANNALS OF OTOLOGY RHINOLOGY AND LARYNGOLOGY, 2004, 113 (05) :3-5
[2]   Differentiation between cerebrospinal fluid and serum with electronic nose [J].
Aronzon, A ;
Hanson, CW ;
Thaler, ER .
OTOLARYNGOLOGY-HEAD AND NECK SURGERY, 2005, 133 (01) :16-19
[3]   Electronic nose prediction of a clinical pneumonia score: Biosensors and microbes [J].
Hanson, CW ;
Thaler, ER .
ANESTHESIOLOGY, 2005, 102 (01) :63-68
[4]   Correlation of pneumonia score with electronic nose signature: A prospective study [J].
Hockstein, NG ;
Thaler, ER ;
Lin, YQ ;
Lee, DD ;
Hanson, CW .
ANNALS OF OTOLOGY RHINOLOGY AND LARYNGOLOGY, 2005, 114 (07) :504-508
[5]   Diagnosis of pneumonia with an electronic nose: Correlation of vapor signature with chest computed tomography scan findings [J].
Hockstein, NG ;
Thaler, ER ;
Torigian, D ;
Miller, WT ;
Deffenderfer, O ;
Hanson, CW .
LARYNGOSCOPE, 2004, 114 (10) :1701-1705
[6]   Colorimetric sensor Arrays for volatile organic compounds [J].
Janzen, Michael C. ;
Ponder, Jennifer B. ;
Bailey, Daniel P. ;
Ingison, Crystal K. ;
Suslick, Kenneth S. .
ANALYTICAL CHEMISTRY, 2006, 78 (11) :3591-3600
[7]   Identification of upper respiratory bacterial pathogens with the electronic nose [J].
Lai, SY ;
Deffenderfer, OF ;
Hanson, W ;
Phillips, MP ;
Thaler, ER .
LARYNGOSCOPE, 2002, 112 (06) :975-979
[8]   Detection of lung cancer by sensor array analyses of exhaled breath [J].
Machado, RF ;
Laskowski, D ;
Deffenderfer, O ;
Burch, T ;
Zheng, S ;
Mazzone, PJ ;
Mekhail, T ;
Jennings, C ;
Stoller, JK ;
Pyle, J ;
Duncan, J ;
Dweik, RA ;
Erzurum, SC .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2005, 171 (11) :1286-1291
[9]   Diagnosis of lung cancer by the analysis of exhaled breath with a colorimetric sensor array [J].
Mazzone, Peter J. ;
Hammel, Jeffrey ;
Dweik, Raed ;
Na, Jie ;
Czich, Carmen ;
Laskowski, Daniel ;
Mekhail, Tarek .
THORAX, 2007, 62 (07) :565-568
[10]  
Rakow N. A., 2005, ANGEW CHEM, V117, P4604