2017/12/31 by Clemens Ager, Karl Unterkofler, Paweł Mochalski +5
Biochemistry, Genetics and Molecular Biology · Chemistry · Engineering · Medicine · #Advanced Chemical Sensor Technologies #Analytical Chemistry and Chromatography #Anesthesia #Asthma #Breath gas analysis #Chemistry #Chromatography #Compartment (ship) #Environmental chemistry #Exhalation #Exhaled air #Exhaled breath condensate #Expired air #Internal medicine #Mass Spectrometry Techniques and Applications #Medicine #Organic chemistry #Toxicology #Volatile organic compound #q-bio.QM
paper · pdf · doi:10.1088/1752-7163/aab2b6
published as J. Breath Res. 12, 036011 (2018)
openalex publication_date 2018/02/28 · arxiv created 2018/04/05 · arxiv updated 2018/04/06 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
In a recent paper (Unterkofler et al 2015 J. Breath Res. 9 036002) we presented a simple two compartment model which describes the influence of inhaled concentrations on exhaled breath concentrations for volatile organic compounds (VOCs) with small Henry constants. In this paper we extend this investigation concerning the influence of inhaled concentrations on exhaled breath concentrations for VOCs with higher Henry constants. To this end we extend our model with an additional compartment which takes into account the influence of the upper airways on exhaled breath VOC concentrations.