Impulse Oscillometry Reveals Predominantly Mechanical Drivers of Small Airway Dysfunction in Obese Children

Ercan Yılmaz1, Zeynep Yamancan Yılmaz2, İsmail Dündar2

  • 1Department of Pediatric Allergy and Immunology, Faculty of Medicine, Inonu University, 44000 Malatya, Turkey.

Insights

Childhood obesity is linked to small airway dysfunction, as shown by impulse oscillometry (IOS) parameters. Mechanical factors appear more influential than metabolic factors in peripheral airway changes in obese children.

Area of Science:

  • Pediatric Pulmonology
  • Metabolic Health
  • Respiratory Mechanics

Background:

  • Childhood obesity can alter respiratory mechanics, especially in peripheral airways.
  • Understanding these changes is crucial for early intervention and management.
  • Metabolic indicators may also play a role in respiratory health.

Purpose of the Study:

  • To evaluate impulse oscillometry (IOS) parameters in obese children.
  • To investigate the relationship between small airway function and metabolic indicators in pediatric obesity.

Main Methods:

  • Compared IOS parameters (R5, R20, R5-R20, X5, X20, AX, Fres) between 70 obese children and 65 normal-weight controls.
  • Analyzed correlations between IOS parameters, BMI z-score, HOMA-IR, and HbA1c in obese participants.
  • Sub-analyzed obese participants based on HOMA-IR levels to assess metabolic status impact.

Main Results:

  • Obese children showed significantly higher R5, R20, R5-R20, and AX values, indicating small airway dysfunction.
  • No significant differences in X5, X20, and Fres were observed between groups.
  • Weak positive correlations found between HOMA-IR and R5-R20/AX; moderate positive correlations between BMI z-score and R5-R20/AX.

Conclusions:

  • Small airway dysfunction is present in obese children.
  • Mechanical factors seem to play a more dominant role than metabolic factors in peripheral airway issues.
  • IOS is a valuable tool for assessing small airway function in pediatric obesity.

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