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1 ted, and breathprints were assessed using an electronic nose.
2 mbined application of gas-chromatography and electronic nose.
3 aracteristics that can be identified with an electronic nose.
4 ory and learning process of the brain to the electronic nose.
5 ng an array of gas sensors, also known as an electronic nose.
6 lves the use of multi-sensory devices called electronic noses.
7 fingerprinting for potential construction of electronic noses.
8 chieved in terms of selective and sensitive "electronic noses."
9 ormance; however, the custom-built, low-cost electronic nose also achieved high accuracy, with 94 % u
13 he effectiveness of flash gas chromatography electronic nose and multivariate data analysis to perfor
14 rated that a combined system formed from the electronic nose and the electronic tongue provides infor
16 registered (seven replicas) by means of the electronic nose and the electronic tongue using partial
17 erating principle of the assay is similar to electronic nose and tongue systems, which combine nonspe
18 pproaches, including electrical sensors like electronic noses and tongues, further enhance detection
22 llected for a carbon black-polymer composite electronic nose array during exposure to homologous seri
23 hese results imply the possibility to use an electronic nose as a tool for a quick, effective and non
24 otential of a metal oxide sensor (MOS)-based electronic nose, as a non-destructive method to discrimi
25 rant into each of the polymeric films of the electronic nose at a constant fraction of the odorant's
26 space solid-phase microextraction coupled to electronic nose based on mass spectrometry (HS-SPME/MS-e
29 Here, we introduce a miniaturized high-speed electronic nose, characterized by high-bandwidth sensor
33 intensity of the most strongly driven set of electronic nose detectors were essentially constant for
34 gy and inspiration for the second-generation electronic nose development toward the performance of de
35 layers can operate at room temperature as an electronic nose, disclosing the possibility of using the
36 eath samples were collected using a portable electronic nose (e-nose) device, which analyzed the VOCs
39 tudy of headspace of white truffles by using Electronic nose (E-nose), gas chromatography-mass spectr
43 re has been a growing interest in the use of electronic noses (e-noses) in detecting volatile organic
44 ulia and Emilia Romagna, were analysed using electronic nose (EN) and isotope ratio mass spectrometry
45 nd, we have investigated the potential of an electronic nose (EN) to diagnose infection of cattle or
46 evious studies on exhaled breath analysis by electronic nose (eNose) technology could discriminate be
47 bility of the exhaled VOC analysis, using an electronic nose (eNose), to identify individuals with un
48 ic fingerprints obtained from a composite of electronic noses (eNoses) and (2) to assess the stabilit
52 vide feasibility to the concept of using the electronic nose for managing and detecting lung cancer.
58 paves the way for ubiquitous application of electronic noses in toxic gas detection, food quality co
59 ental techniques, such as mass spectrometry, electronic nose, infrared spectroscopy, etc., have demon
60 ed to test whether a device consisting of an electronic nose inspired by a dog's olfactory system and
65 the RTIL-coated quartz crystal array as an "electronic nose", it was applied to the analysis of head
66 iO2 surface chemistries to construct a 'nano-electronic nose' library, which can distinguish acetone
69 pid and non-invasive mass spectrometry-based electronic nose (MS-eNose) method, combined with chemome
70 S-SPME) coupled with mass spectrometry-based electronic nose (MS-eNose), in combination with multivar
71 sreactive sensor arrays (also referred to as electronic noses or tongues in the literature), their cu
73 ed and untreated animals mainly due to three electronic nose's parameters, 24 h carcass temperature a
74 ur score classification system comprising an electronic nose sensor array, a sensor readout interface
77 pheric concentrations by means of a low-cost electronic nose strategy where the readings of a few sen
79 The discrimination accuracy achieved by the electronic nose system was 100% for cystic echinococcosi
80 se films were employed in gas sensors and an electronic nose system, which showed improved responsivi
82 rmal desorption-photoionization ion mobility-electronic nose (TD-PIM-Nose) system, employing thermal
84 f-concept studies with mass spectrometry and electronic nose technologies have provided independent s
85 ategies, such as solid-state gas sensors and electronic nose technologies, along with their applicati
87 orescence, and emission of radiation or from electronic noses that detect volatile organic compounds
88 re we propose an alternative strategy, a bio-electronic nose, that capitalizes on the superior capabi
89 This study evaluates the potential of the electronic nose to reliably predict EA contamination in
91 infrared (NIR) spectrometers, as well as an electronic nose, were compared to distinguish between au