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Updated: Jun 4, 2026

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Published on: February 9, 2022
Use of specific airway resistance to assess bronchodilator response in children
Bruno Mahut1, Claudine Peiffer, Plamen Bokov
1La Berma Clinic, Assistance Publique-Hôpitaux de Paris; Georges Pompidou European Hospital, Paris, France.
Insights
A 42% decrease in specific airway resistance (sRaw) effectively predicts bronchodilator response in children with asthma. This threshold helps identify airway obstruction, even when spirometry like FEV(1) shows variability.
Area of Science:
- Pediatric Pulmonology
- Respiratory Physiology
- Asthma Research
Background:
- Specific airway resistance (sRaw) and FEV(1) are used to assess airway obstruction after bronchodilation.
- The relationship between sRaw and FEV(1) reversibility in children is not well-defined.
- Optimal sRaw cut-off values for predicting FEV(1) reversibility require determination.
Purpose of the Study:
- Establish the sRaw cut-off value predicting FEV(1) reversibility in children.
- Investigate if FEV(1) changes correlate with sRaw and FVC changes independently.
- Assess the impact of age and height on the sRaw and FEV(1) relationship.
Main Methods:
- Retrospective analysis of 481 children with suspected or confirmed asthma.
- Collected sRaw and spirometry data (including FEV(1) and FVC) at baseline and post-bronchodilator.
- Statistical analysis to determine cut-off values and correlations.
Main Results:
- A 42% decrease in sRaw best predicted FEV(1) reversibility (AUC 0.70).
- This sRaw cut-off was independent of children's age and height.
- FEV(1) changes correlated significantly with both sRaw and FVC changes.
Conclusions:
- A 42% reduction in sRaw is a reasonable predictor of FEV(1) reversibility in pediatric asthma.
- Smaller sRaw decreases may miss up to 50% of positive FEV(1) responses.
- Age and height do not influence the relationship between sRaw and FEV(1) changes.
Background And Objective:
Changes in specific airway resistance (ΔsRaw) after bronchodilation, as measured by plethysmography and FEV(1) , are frequently considered to be interchangeable indices of airway obstruction. However, the baseline relationship between these two indices is weak, and the value of ΔsRaw that best predicts FEV(1) reversibility in children has yet to be determined. The aim of this study was (i) to establish the sRaw cut-off value that best distinguishes between positive and negative bronchodilator responses, as measured by FEV(1) reversibility; (ii) to determine whether the discrepancy between ΔsRaw and ΔFEV(1) might be explained by independent correlations between ΔFEV(1) and both ΔsRaw (mainly airway obstruction) and ΔFVC (airway closure); and (iii) to assess the effect of height and age on the relationship between ΔsRaw and ΔFEV(1) .
Methods:
A retrospective study was performed in 481 children (median age 10.5years, range 6.1-17.6) with actual or suspected asthma, for whom sRaw and spirometry data were obtained at baseline and after administration of a bronchodilator.
Results:
The sRaw cut-off value that best predicted FEV(1) reversibility was a 42% decrease from baseline (P=0.0001, area under the curve 0.70, sensitivity 55%, specificity 77%) and was independent of height and age. Changes in FEV(1) were significantly but independently related to ΔsRaw and ΔFVC (index of air trapping) (r=0.40, P<0.0001 and r=0.39, P<0.0001, respectively).
Conclusions:
A 42% decrease in sRaw predicted FEV(1) reversibility reasonably well, whereas a smaller decrease in sRaw failed to detect approximately one out of two positive responses detected by FEV(1) , with no influence of height or age.
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