
doi: 10.2147/mder.s91201
pmid: 27382340
pmc: PMC4922771
handle: 11588/635991 , 11386/4673212 , 11591/363518
doi: 10.2147/mder.s91201
pmid: 27382340
pmc: PMC4922771
handle: 11588/635991 , 11386/4673212 , 11591/363518
The measurement of exhaled nitric oxide (NO) has been employed in the diagnosis of specific types of airway inflammation, guiding treatment monitoring by predicting and assessing response to anti-inflammatory therapy and monitoring for compliance and detecting relapse. Various techniques are currently used to analyze exhaled NO concentrations under a range of conditions for both health and disease. These include chemiluminescence and electrochemical sensor devices. The cost effectiveness and ability to achieve adequate flexibility in sensitivity and selectivity of NO measurement for these methods are evaluated alongside the potential for use of laser-based technology. This review explores the technologies involved in the measurement of exhaled NO.
Asthma; Inflammation; Nasal nitric oxide;, electrochemical, Review, Asthma; Inflammation; Nasal nitric oxide; Biomedical Engineering; Medicine (miscellaneous), nasal nitric oxide, asthma, chemiluminescence, laser, Exhaled nitric oxide, inflammation, Medical technology, asthma; inflammation; nasal nitric oxide, Medical Devices: Evidence and Research, R855-855.5, device
Asthma; Inflammation; Nasal nitric oxide;, electrochemical, Review, Asthma; Inflammation; Nasal nitric oxide; Biomedical Engineering; Medicine (miscellaneous), nasal nitric oxide, asthma, chemiluminescence, laser, Exhaled nitric oxide, inflammation, Medical technology, asthma; inflammation; nasal nitric oxide, Medical Devices: Evidence and Research, R855-855.5, device
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