Bronchodilator effect on regional lung function in pediatric viral lower respiratory tract infections

Claas Strodthoff1, Toni Kähkönen2, Richard H Bayford3

  • 1Department of Anaesthesiology and Intensive Care Medicine, University Medical Centre Schlewig-Holstein, Kiel, Germany.

Physiological Measurement
|September 22, 2022
PubMed

Insights

Electrical impedance tomography (EIT) monitoring in pediatric intensive care showed bronchodilators had limited effect on respiratory mechanics in infants with viral lower respiratory tract infections (LRTI). EIT may help optimize treatment by objectively assessing therapy response.

Area of Science:

  • Pediatric Intensive Care
  • Respiratory Medicine
  • Medical Imaging

Background:

  • Viral lower respiratory tract infections (LRTI) are a primary cause of intensive care admission in young children.
  • Nebulized bronchodilators are frequently administered to severe LRTI cases, but their efficacy is debated.

Purpose of the Study:

  • To investigate the effect of bronchodilators on respiratory mechanics using electrical impedance tomography (EIT) in pediatric intensive care.
  • To assess the feasibility of continuous EIT monitoring for evaluating bronchodilator response.

Main Methods:

  • An observational study involving continuous chest EIT monitoring (up to 72 hours) in six infants and young children with viral LRTI.
  • Retrospective analysis of clinical data and EIT-derived regional expiratory time constants to assess bronchodilator effects.
  • Clinicians were blinded to EIT data during the data collection period.

Main Results:

  • Seventy-seven bronchodilator administrations were analyzed in children aged 11-27 months.
  • Only 17% of bronchodilator administrations led to a significant reduction in expiratory time constants.
  • EIT data was collected during both invasive ventilation and high-flow nasal cannula treatment.

Conclusions:

  • Continuous EIT monitoring offers a potential method for objectively assessing bronchodilator efficacy in pediatric intensive care.
  • EIT-derived regional expiratory time constants could guide treatment optimization for LRTI and other respiratory conditions.

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