LMR spectroscopy: a new sensitive method for on-line recording of nitric oxide in breath

Author:

Mürtz Petra1,Menzel Lars1,Bloch Wilhelm2,Hess Alexander3,Michel Olaf3,Urban Wolfgang1

Affiliation:

1. Institut für Angewandte Physik der Universität Bonn, D-53115 Bonn; and

2. Anatomisches Institut I and

3. Klinik und Poliklinik für Hals-Nasen-Ohrenheilkunde der Universität Köln, D-50931 Cologne, Germany

Abstract

Laser magnetic resonance spectroscopy (LMRS) is a sensitive and isotope-selective technique for determining low concentrations of gaseous free radicals with high time resolution. We used this technique to analyze the nitric oxide (NO) concentration profile while simultaneously measuring the flow and expired volume during several single breathing cycles. Eight healthy, nonallergic volunteers were investigated. An initial NO peak was found in all breathing cycles before the NO concentration dropped to a relatively stable plateau in the late phase of expiration. The nasal NO peak was significantly higher than the oral NO peak. The nasal NO plateau was always higher than the oral NO plateau. The height of the initial nasal and oral NO peak rose with increasing duration of breath hold, whereas the late expiratory NO plateau changed only little for either the nasal or the oral breathing cycles. Our findings demonstrate, in line with other reports using other techniques, that the nose is the primary source for NO within the airways.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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1. Simultaneous real-time detection of fractional exhaled nitric oxide and end-tidal carbon dioxide by quantum cascade laser absorption spectroscopy;Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy;2024-03

2. Numerical model of Zeeman splitting of ro-vibrational lines in the fundamental band of NO molecule;Journal of Quantitative Spectroscopy and Radiative Transfer;2016-07

3. Dependence of Zeeman splitting of spectral lines on the magnetic field magnitude for NO molecule;Atmospheric and Oceanic Optics;2016-03

4. Paper Skin Multisensory Platform for Simultaneous Environmental Monitoring;Advanced Materials Technologies;2016-02-19

5. Simulation of the LMR spectra in the 0–1 band of NO molecule;21st International Symposium Atmospheric and Ocean Optics: Atmospheric Physics;2015-11-19

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