The fraction of exhaled nitric oxide (FENO) is an important biomarker for the diagnosis and management of asthma and other pulmonary diseases associated with airway inflammation. In this study we report on a novel method for accurate, highly time-resolved, real time detection of FENO at the mouth. The experimental arrangement is based on a combination of optical sensors for the determination of the temporal profile of exhaled NO and CO2 concentrations. Breath CO2 and exhalation flow are measured at the mouth using diode laser absorption spectroscopy (at 2 m) and differential pressure sensing, respectively. NO is determined in a sidestream configuration using a quantum cascade laser based, cavity-enhanced absorption cell (at 5.2 m) which sim...
Exhaled nitric oxide (NO) is considered the most easily available clinical test to indirectly assess...
Optical methods based on quantum cascade lasers (QCLs) are becoming popular in many life science app...
SummaryBackgroundFractional exhaled nitric oxide (FENO) has been implicated as a pulmonary biomarker...
Fractional exhaled nitric oxide (F(E)NO) is considered an indicator in the diagnostics and managemen...
Trace gas sensing is a rapidly developing field, with many applications in breath diagnostics and th...
Fractional exhaled nitric oxide (FeNO) measurement is a simple and non-invasive method for monitorin...
AbstractThe study of a gas-selective, resistive-type, sensor technology to detect and quantitate nit...
The analysis of biomarkers in exhaled breath constituents has recently become of great interest in t...
The measurement of exhaled nitric oxide (NO) has been employed in the diagnosis of specific types of...
The measurement of exhaled nitric oxide (NO) has been employed in the diagnosis of specific types of...
ABSTRACTBackgroundThere has been an increasing interest in monitoring the fractional concentrations ...
Real-time breath gas analysis is a promising, non-invasive tool in medical diagnostics, and well-sui...
Exaled nitric oxide (FeNO) is considered a good noninvasive marker to assess airway inflammation in ...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
Fractional exhaled nitric oxide (FeNO) is a convenient, non-invasive method for the assessment of ac...
Exhaled nitric oxide (NO) is considered the most easily available clinical test to indirectly assess...
Optical methods based on quantum cascade lasers (QCLs) are becoming popular in many life science app...
SummaryBackgroundFractional exhaled nitric oxide (FENO) has been implicated as a pulmonary biomarker...
Fractional exhaled nitric oxide (F(E)NO) is considered an indicator in the diagnostics and managemen...
Trace gas sensing is a rapidly developing field, with many applications in breath diagnostics and th...
Fractional exhaled nitric oxide (FeNO) measurement is a simple and non-invasive method for monitorin...
AbstractThe study of a gas-selective, resistive-type, sensor technology to detect and quantitate nit...
The analysis of biomarkers in exhaled breath constituents has recently become of great interest in t...
The measurement of exhaled nitric oxide (NO) has been employed in the diagnosis of specific types of...
The measurement of exhaled nitric oxide (NO) has been employed in the diagnosis of specific types of...
ABSTRACTBackgroundThere has been an increasing interest in monitoring the fractional concentrations ...
Real-time breath gas analysis is a promising, non-invasive tool in medical diagnostics, and well-sui...
Exaled nitric oxide (FeNO) is considered a good noninvasive marker to assess airway inflammation in ...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
Fractional exhaled nitric oxide (FeNO) is a convenient, non-invasive method for the assessment of ac...
Exhaled nitric oxide (NO) is considered the most easily available clinical test to indirectly assess...
Optical methods based on quantum cascade lasers (QCLs) are becoming popular in many life science app...
SummaryBackgroundFractional exhaled nitric oxide (FENO) has been implicated as a pulmonary biomarker...