Bronchodilator responsiveness assessed by forced oscillometry and multiple breath washout techniques in preschool

Nicholas L Friedman1,2, Joseph M McDonough1, Xuemei Zhang1

  • 1Division of Pulmonary Medicine The Children's Hospital of Philadelphia Philadelphia PA USA.

Pediatric Investigation
|August 28, 2020
PubMed

Insights

Multiple breath washout (MBW) and forced oscillation technique (FOT) lung function tests did not distinguish between healthy children and those with poorly controlled asthma. FOT, but not MBW, detected bronchodilator response in both groups.

Area of Science:

  • Pediatric Pulmonology
  • Respiratory Physiology

Background:

  • Forced oscillation technique (FOT) and multiple breath washout (MBW) are passive lung function tests suitable for preschool children.
  • Previous studies have not directly compared FOT and MBW for differentiating healthy children from those with poorly controlled asthma or assessing bronchodilator response.

Purpose of the Study:

  • To compare the ability of FOT and MBW to differentiate between healthy controls and poorly controlled asthmatic children.
  • To evaluate whether FOT and MBW can detect bronchodilator-induced changes in lung function in these groups.

Main Methods:

  • Twenty-eight healthy children and 23 children with poorly controlled asthma (ages 3-6) underwent MBW followed by FOT.
  • Lung function testing was repeated after bronchodilator administration.
  • Statistical analysis included Wilcoxon Rank Sum and Signed Rank tests.

Main Results:

  • Neither MBW nor FOT distinguished between healthy controls and poorly controlled asthmatics at baseline.
  • MBW showed no significant improvement in outcomes after bronchodilator administration.
  • FOT detected a significant bronchodilator response in both healthy children and those with asthma.

Conclusions:

  • FOT and MBW did not differentiate between healthy children and those with poorly controlled asthma.
  • MBW failed to detect bronchodilator responsiveness, while FOT showed similar responsiveness in both groups.
  • The findings suggest potential differences in how airway mechanics and gas mixing respond to bronchodilators, as detected by FOT.
Abstract

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