Relation of changes in PEF and FEV1 during bronchodilation in children

Leon L Csonka1, Antti Tikkakoski2, Anna P Tikkakoski1

  • 1Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.

PubMed

Insights

Peak expiratory flow (PEF) changes do not accurately reflect bronchodilator response (BDR) compared to forced expiratory volume in one second (FEV1). Different patient groups are identified using PEF versus FEV1 criteria in asthma diagnosis.

Area of Science:

  • Pediatric pulmonology
  • Respiratory diagnostics
  • Asthma management

Background:

  • Asthma diagnosis relies on bronchodilator response (BDR) via peak expiratory flow (PEF) or spirometry (FEV1).
  • Home monitoring uses PEF, while clinical settings utilize FEV1 for BDR assessment.

Purpose of the Study:

  • To evaluate relative changes in PEF as a measure of bronchodilation post-exercise challenge.
  • To compare PEF's reflection of lung function improvement against FEV1 increases.

Main Methods:

  • Retrospective analysis of 326 pediatric exercise challenge tests with spirometry.
  • Regression analysis and Bland-Altman plots assessed PEF and FEV1 congruency.
  • ROC analysis determined PEF's accuracy in predicting FEV1 improvement.

Main Results:

  • Relative PEF changes were generally larger than FEV1 changes.
  • ROC analysis showed an optimal PEF cut-off of 14.5% for predicting FEV1 improvement.
  • The standard 15% PEF increase threshold demonstrated 71% sensitivity and 78% specificity.

Conclusions:

  • Peak expiratory flow (PEF) is an inaccurate indicator of bronchodilator response compared to FEV1.
  • Using PEF and FEV1 criteria identifies distinct patient populations, impacting asthma diagnosis.
Abstract

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