Mechanical Insufflation-Exsufflation Versus Conventional Chest Physiotherapy in Children With Cerebral Palsy

Rasintra Siriwat1, Jitladda Deerojanawong2, Suchada Sritippayawan1

  • 1Department of Pediatrics, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

Respiratory Care
|October 26, 2017
PubMed

Insights

Mechanical insufflation-exsufflation (MI-E) effectively shortens airway clearance time for children with quadriplegic spastic cerebral palsy and respiratory infections. This safe intervention aids in managing atelectasis, improving patient outcomes.

Area of Science:

  • Pediatric Pulmonology
  • Neurology
  • Rehabilitation Medicine

Background:

  • Impaired cough mechanisms in quadriplegic spastic cerebral palsy (QS-CP) lead to frequent pneumonia and atelectasis.
  • Conventional chest physiotherapy (CPT) is standard for lower-respiratory infections in QS-CP.
  • Mechanical insufflation-exsufflation (MI-E) shows promise in other neuromuscular diseases.

Purpose of the Study:

  • To compare the efficacy of MI-E versus CPT in reducing hospital stay.
  • To evaluate the improvement of atelectasis in QS-CP patients with lower-respiratory infections.
  • To assess MI-E as a novel intervention for airway clearance in this population.

Main Methods:

  • Randomized controlled trial involving children aged 6 months to 18 years with QS-CP.
  • Exclusion criteria included pneumothorax, severe pneumonia, active tuberculosis, and shock.
  • Participants were randomized to receive either MI-E (3 therapies/day) or CPT (1 therapy/day).

Main Results:

  • Hospital stay duration was comparable between MI-E and CPT groups (P = .15).
  • In the atelectasis subgroup (n=17), MI-E significantly shortened therapy duration (2.9 days) compared to CPT (3.9 days) (P = .01).
  • No complications were reported for either intervention.

Conclusions:

  • MI-E is beneficial for shortening airway clearance duration in children with QS-CP and respiratory infections/atelectasis.
  • MI-E is a safe and efficient intervention for airway clearance in this pediatric population.
  • Further research may explore optimizing MI-E protocols for QS-CP.
Abstract

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