Mid-IR spectroscopic instrumentation for point-of-care diagnosis using a hollow silica waveguide gas cell
نویسندگان
چکیده
Laser spectroscopy provides the basis of instrumentation developed for the diagnosis of infectious disease, via quantification of organic biomarkers that are produced by associated bacteria. The technology is centred on a multichannel pulsed quantum cascade laser system that allows multiple lasers with different wavelengths to be used simultaneously, each selected to monitor a different diagnostic biomarker. The instrument also utilizes a hollow silica waveguide (HSW) gas cell which has a very high ratio of interaction pathlength to internal volume. This allows sensitive detection of low volume gas species from small volume biological samples. The spectroscopic performance of a range of HSW gas cells with different lengths and bore diameters has been assessed using methane as a test gas and a best-case limit of detection of 0.26 ppm was determined. The response time of this cell was measured as a 1,000 sccm flow of methane passed through it and was found to be 0.75 s. These results are compared with those obtained using a multi-pass Herriot cell. A prototype instrument has been built and approved for clinical trials for detection of lung infection in acute-care patients via analysis of ventilator breath. Demonstration of the instrument for headspace gas analysis is made by monitoring the methane emission from bovine faeces. The manufacture of a hospital-ready device for monitoring biomarkers of infection in the exhaled breath of intensive care ventilator patients is also presented.
منابع مشابه
Low-volume, fast response-time hollow silica waveguide gas cells for mid-IR spectroscopy.
Hollow silica waveguides (HSWs) are used to produce long path length, low-volume gas cells, and are demonstrated with quantum cascade laser spectroscopy. Absorption measurements are made using the intrapulse technique, which allows measurements to be made across a single laser pulse. Simultaneous laser light and gas coupling is achieved through the modification of commercially available gas fit...
متن کاملGeneration of Coherent, Broadband X-Ray and Mid-IR Pulses in a Noble-Gas-Filled Hollow Waveguide
We discuss a proposed experiment on guiding of a high-repetition rate, 20 GW, CO2 laser beam in a gas-filled hollow glass waveguide. Extended interaction of the 3ps pulses with a gas Kerr medium will be used for measurements of nonlinearity at 10 um, and supercontinuum generation followed by pulse compression. Feasibility of 3-5 keV X-ray production via HHG is presented.
متن کاملIonization-assisted guided-wave pulse compression to extreme peak powers and single-cycle pulse widths in the mid-infrared.
Ionization-assisted spectral broadening of high-energy 10.6 μm laser pulses in a gas-filled hollow waveguide is shown to yield single-cycle pulses with multiterawatt peak powers in the mid-IR. While the highest quality of pulse compression is achieved in the regime of weak ionization, careful management of complex ionization-assisted spectral broadening of guided-wave fields is the key to compr...
متن کاملBreath analysis with broadly tunable quantum cascade lasers.
With the availability of broadly tunable external cavity quantum cascade lasers (EC-QCLs), particularly bright mid-infrared (MIR; 3-20 μm) light sources are available offering high spectral brightness along with an analytically relevant spectral tuning range of >2 μm. Accurate isotope ratio determination of (12)CO2 and (13)CO2 in exhaled breath is of critical importance in the field of breath a...
متن کاملWidely-Tunable Rapid-Scanning Mid-IR Laser Spectrometer for Industrial Gas Process Stream Analysis
We demonstrate selective detection of hydrocarbons using a widely-tunable, rapidlyswept, high-resolution spectrometer based on a mid-infrared laser source using differencefrequency generation in periodically poled lithium niobate waveguides. ©2006 Optical Society of America OCIS codes: (120.6200) Spectrometers and spectroscopic instrumentation General; (190.2620) Frequency conversion Rapid, non...
متن کامل