Real-time breath gas analysis is a promising, non-invasive tool in medical diagnostics, and well-suited to investigate the physiology of carbon monoxide (CO), a potential biomarker for oxidative stress and respiratory diseases. A sensor for precise, breath-cycle resolved, simultaneous detection of exhaled CO (eCO) and carbon dioxide (eCO2) was developed based on a continuous wave, external-cavity quantum cascade laser (EC-QCL), a low-volume multi-pass cell and wavelength modulation spectroscopy. The system achieves a noise-equivalent (1σ) sensitivity of 8.5 × 10−8 cm−1 Hz−1/2 and (2σ) detection limits of 9 ± 2 ppbv and 650 ± 7 ppmv at 0.14 s spectrum acquisition time for CO and CO2, respectively. Integration over 15 s yields a precision of ...
Breath analysis, a promising new field of medicine and medical instrumentation, potentially offers n...
A real-time gas monitoring system based on optical absorption spectroscopy is proposed for localized...
The influence of breath sampling on exhaled carbon monoxide (eCO) and related pulmonary gas exchange...
Real-time breath gas analysis is a promising, non-invasive tool in medical diagnostics, and well-sui...
We present three different detection schemes for measuring carbon monoxide (CO) in direct absorption...
Trace gas sensing is a rapidly developing field, with many applications in breath diagnostics and th...
We present a compact sensor for carbon monoxide (CO) in air and exhaled breath based on a room tempe...
International audienceCarbon monoxide (CO) monitoring in human breath is the focus of many investiga...
Conference PaperSimultaneous concentration measurements of echaled carbonyl sulfide and carbon dioxi...
A single continuous wave (CW) room-temperature (RT) quantum cascade laser (QCL) sensor based on dual...
A sensitive gas detection system using a distributed feedback CW Quantum Cascade Laser (QCL) centere...
Real-time breath gas analysis coupled to gas exchange modeling is emerging as promising strategy to ...
Contains fulltext : 156873.pdf (publisher's version ) (Open Access
A quantum cascade laser-based sensing technique is presented which allows for in situ high-precision...
Fractional exhaled nitric oxide (F(E)NO) is considered an indicator in the diagnostics and managemen...
Breath analysis, a promising new field of medicine and medical instrumentation, potentially offers n...
A real-time gas monitoring system based on optical absorption spectroscopy is proposed for localized...
The influence of breath sampling on exhaled carbon monoxide (eCO) and related pulmonary gas exchange...
Real-time breath gas analysis is a promising, non-invasive tool in medical diagnostics, and well-sui...
We present three different detection schemes for measuring carbon monoxide (CO) in direct absorption...
Trace gas sensing is a rapidly developing field, with many applications in breath diagnostics and th...
We present a compact sensor for carbon monoxide (CO) in air and exhaled breath based on a room tempe...
International audienceCarbon monoxide (CO) monitoring in human breath is the focus of many investiga...
Conference PaperSimultaneous concentration measurements of echaled carbonyl sulfide and carbon dioxi...
A single continuous wave (CW) room-temperature (RT) quantum cascade laser (QCL) sensor based on dual...
A sensitive gas detection system using a distributed feedback CW Quantum Cascade Laser (QCL) centere...
Real-time breath gas analysis coupled to gas exchange modeling is emerging as promising strategy to ...
Contains fulltext : 156873.pdf (publisher's version ) (Open Access
A quantum cascade laser-based sensing technique is presented which allows for in situ high-precision...
Fractional exhaled nitric oxide (F(E)NO) is considered an indicator in the diagnostics and managemen...
Breath analysis, a promising new field of medicine and medical instrumentation, potentially offers n...
A real-time gas monitoring system based on optical absorption spectroscopy is proposed for localized...
The influence of breath sampling on exhaled carbon monoxide (eCO) and related pulmonary gas exchange...