Evaluation of the Double-Tracer Gas Single-Breath Washout Test in a Pediatric Field Study.
cross_sectional · Level IV
Where this comes from
- Record sourced from PubMed, PMID 37716474.
- Also identified by DOI 10.1016/j.chest.2023.09.006 and PMC identifier 10851274.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The early life origins of chronic pulmonary diseases are thought to arise in peripheral small airways. Predictors of ventilation inhomogeneity, a proxy of peripheral airway function, are understudied in schoolchildren. Is the double-tracer gas single-breath washout (DTG-SBW) measurement feasible in a pediatric field study setting? What are the predictors of the DTG-SBW-derived ventilation inhomogeneity estimate in unselected schoolchildren? In this prospective cross-sectional field study, a mobile lung function testing unit visited participating schools in Switzerland. We applied DTG-SBW, fraction of exhaled nitric oxide (Feno), and spirometry measurements. The DTG-SBW is based on tidal inhalation of helium and sulfur-hexafluoride, and the phase III slope (SIII<sub>He-SF6</sub>) is derived. We assessed feasibility, repeatability, and associations of SIII<sub>He-SF6</sub> with the potential predictors of anthropometrics, presence of wheeze (ie, parental report of one or more episode of wheeze in the prior year), Feno, FEV<sub>1</sub>, and FEV<sub>1</sub>/FVC. In 1,782 children, 5,223 DTG-SBW trials were obtained. The DTG-SBW was acceptable in 1,449 children (81.3%); the coefficient of variation was 39.8%. SIII<sub>He-SF6</sub> was independently but weakly positively associated with age and BMI. In 276 children (21.2%), wheeze was reported. SIII<sub>He-SF6</sub> was higher by 0.049 g.mol.L<sup>-1</sup> in children with wheeze compared with those without and remained associated with wheeze after adjusting for age and BMI in a multivariable linear regression model. SIII<sub>He-SF6</sub> was not associated with Feno, FEV<sub>1</sub>, and FEV<sub>1</sub>/FVC. The DTG-SBW is feasible in a pediatric field study setting. On the population level, age, body composition, and wheeze are independent predictors of peripheral airway function in unselected schoolchildren. The variation of the DTG-SBW possibly constrains its current applicability on the individual level. ClinicalTrials.gov; No.: NCT03659838; URL: www. gov.
Medical subject headings
- Gases
- Respiration