Acceso abierto

Design and development of an e-nose system for the diagnosis of pulmonary diseases

 y   
10 mar 2021

Cite
Descargar portada

Amann A., Poupart G., Telser S., Ledochowski M., Schmid A., Mechtcheriakov S., Applications of breath gas analysis in medicine, Int. J. Mass Spectrom., 2004, 239 (2–3), 227–133. Search in Google Scholar

Bannier M.A., van de Kant K.D., Jöbsis Q., Dompeling E., Feasibility and diagnostic accuracy of an electronic nose in children with asthma and cystic fibrosis, J. Breath Res., 2019, 13 (3), 036009. Search in Google Scholar

Blatt R., Bonarini A., Matteucci M., Pattern classification techniques for lung cancer diagnosis by an electronic nose, Computational Intelligence in Healthcare, 2010, 4, 397–423. Search in Google Scholar

Byun H.G., Persaud K.C., Pisanelli A.M., Wound-State Monitoring for Burn Patients Using E-Nose/SPME System, ETRI J., 2010, 32 (3), 440–446. Search in Google Scholar

Byun H.G., Yu J.B., Jeon J.Y., Lee S.Y., Huh J.S., Lim J.O., Exhaled Breath Analysis for Lung Diseases Based on Sensors Array System, Sens. Lett., 2014, 12 (6–7), 1107–1109. Search in Google Scholar

Chang J.E., Lee D.S., Ban S.W., Oh J., Jung M.Y., Kim S.H., Jheon S., Analysis of volatile organic compounds in exhaled breath for lung cancer diagnosis using a sensor system, Sensor. Actuat. B-Chem., 2018, 255, 800–807. Search in Google Scholar

Covington J.A., Westenbrink E.W., Ouaret N., Harbord R., Bailey C., O’Connell N., Cullis J., Williams N., Nwokolo C.U., Bardhan K.D., Arasaradnam R.P., Application of a novel tool for diagnosing bile acid diarrhoea, Sensors., 2013, (9), 11899–11912. Search in Google Scholar

D’Amico A., Pennazza G., Santonico M., Martinelli E., Roscioni C., Galluccio G., Paolesse R., Di Natale C., An investigation on electronic nose diagnosis of lung cancer, Lung Cancer, 2010, 68 (2), 170–176. Search in Google Scholar

Di Natale C., Macagnano A., Martinelli E., Paolesse R., D’Arcangelo G., Roscioni C., D’Amico A., Lung cancer identification by the analysis of breath by means of an array of non-selective gas sensors, Biosens. Bioelectron., 2003, 18 (10), 1209–1218. Search in Google Scholar

Donarelli M., Ottaviano, 2D materials for gas sensing applications: A review on graphene oxide, MoS2, WS2 and phosphorene, Sensors, 2018, 18 (11), 3638. Search in Google Scholar

Duda R.O., Hart P.E., Stork D.G., Pattern classification, John Wiley & Sons, 2012. Search in Google Scholar

Dymerski T., Gębicki J., Wiśniewska P., Śliwińska M., Wardencki W., Namieśnik J., Application of the electronic nose technique to differentiation between model mixtures with COPD markers, Sensors, 2013, 13 (4), 5008–5027. Search in Google Scholar

Guohua H., Yuling W., Dandan Y., Wenwen D., Fuji apple storage time predictive method using electronic nose, Food Anal. Method, 2013, 6 (1), 82–88. Search in Google Scholar

Hakim M., Broza Y.Y., Barash O., Peled N., Phillips M., Amann A., Haick H., Volatile organic compounds of lung cancer and possible biochemical pathways, Chem. Rev., 2012, 112 (11), 5949–5966. Search in Google Scholar

Hossein-Babaei F., Hosseini-Golgoo S.M., Analyzing the responses of a thermally modulated gas sensor using a linear system identification technique for gas diagnosis, IEEE Sens. J., 2008, 8 (11), 1837–1847. Search in Google Scholar

Itoh T., Matsubara I., Nishibori M., Izu N., Shin W., Calibration gas preparation for non-disposable portable MOx, PID, and IER VOC detectors, Sens. Lett., 2012, 10 (3–4), 985–992. Search in Google Scholar

Jolayemi O.S., Tokatli F., Buratti S., Alamprese C., Discriminative capacities of infrared spectroscopy and enose on Turkish olive oils, Eur. Food Res. Technol., 2017, 243 (11), 2035–2042. Search in Google Scholar

Korotcenkov G., Cho B.K., Metal oxide composites in conductometric gas sensors: Achievements and challenges, Sensor. Actuat. B-Chem., 2017, 244, 182–210. Search in Google Scholar

Li W., Liu H., Xie D., He Z., Pi X., Lung cancer screening based on type-different sensor arrays, Sci. Rep-U.K., 2017, 7 (1), 1–12, 2017. Search in Google Scholar

Mannino D.M., Buist A.S., Global burden of COPD: risk factors, prevalence, and future trends, The Lancet, 2007, 370 (9589), 765–773. Search in Google Scholar

Marzorati D., Mainardi L., Sedda G., Gasparri R., Spaggiari L., Cerveri P., A Metal Oxide Gas Sensors Array for Lung Cancer Diagnosis Through Exhaled Breath Analysis, 41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), 2019, 1584–1587. Search in Google Scholar

Oguma T., Nagaoka T., Kurahashi M., Kobayashi N., Yamamori S., Tsuji C., Hayama N., Clinical contributions of exhaled volatile organic compounds in the diagnosis of lung cancer, PloS One, 2017, 12 (4), e0174802. Search in Google Scholar

Pasini P., Powar N., Gutierrez-Osuna R., Daunert S., Roda A., Use of a gas-sensor array for detecting volatile organic compounds (VOC) in chemically induced cells, Anal. Bioanal. Chem., 2004, 378 (1), 76–83. Search in Google Scholar

Pavlou A.K., Magan N., McNulty C., Jones .JM., Sharp D., Brown J., Turner A.P., Use of an electronic nose system for diagnoses of urinary tract infections, Biosens. Bioelectron., 2002, 17 (10), 893–899. Search in Google Scholar

Roine A., Veskimäe E., Tuokko A., Kumpulainen P., Koskimäki J., Keinänen T.A., Häkkinen M.R., Vepsäläinen J., Paavonen T., Lekkala J., Lehtimäki T., Detection of prostate cancer by an electronic nose: a proof of principle study, J. Urology, 2014, 192 (1), 230–235. Search in Google Scholar

Tan J.L., Yong Z.X., Liam C.K., Using a chemiresistorbased alkane sensor to distinguish exhaled breaths of lung cancer patients from subjects with no lung cancer, J. Thorac. Dis., 2016, 8 (10), 2772. Search in Google Scholar

Voss A., Baier V., Reisch R., von Roda K., Elsner P., Ahlers H., Stein G., Smelling renal dysfunction via electronic nose, Ann. Biomed. Eng., 2005, 33 (5), 656–660. Search in Google Scholar

Velásquez A., Durán C.M., Gualdron O., Rodríguez J.C., Manjarres L., Electronic nose to detect patients with COPD from exhaled breath, [in:] AIP Conference Proceedings, 2009, Vol. 1137, No. 1, 452–454. Search in Google Scholar

Wojnowski W., Dymerski T., Gębicki J., Namieśnik J., Electronic noses in medical diagnostics, Curr. Med. Chem., 2019, 26 (1), 197–215. Search in Google Scholar