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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.
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.
Background:
The cough mechanism is often impaired in children with quadriplegic spastic cerebral palsy, accounting for the high prevalence of pneumonia and atelectasis requiring prolonged hospitalization. Conventional chest physiotherapy (CPT) is a current technique recommended at the onset of lower-respiratory infections in cerebral palsy. Previous studies have demonstrated the usefulness of mechanical insufflation-exsufflation (MI-E) in children with neuromuscular disease. To date, there has been no study of MI-E in children with quadriplegic spastic cerebral palsy. The objective of the study is to compare the efficacy in reducing hospital stay and improvement of atelectasis between MI-E and CPT in children with quadriplegic spastic cerebral palsy with lower-respiratory infections.
Methods:
This study is a randomized controlled trial. Children with quadriplegic spastic cerebral palsy, age 6 months to 18 y, admitted for lower-respiratory infections and/or atelectasis at King Chulalongkorn Memorial Hospital between June 1, 2014, and March 31, 2015, were recruited. Those with pneumothorax, severe pneumonia, active tuberculosis, and shock were excluded. Children were randomized into the MI-E or CPT group. The MI-E group received MI-E (3 therapies/d), and the CPT group received CPT (1 therapy/d). Vital signs per protocol and chest radiograph as needed were recorded.
Results:
There were 22 children enrolled in the study, 11 in the MI-E and 11 in the CPT group. Demographic data were comparable in both groups. The length of hospital stay was similar in both groups (MI-E 4-24 d vs CPT 6-42 d, P = .15). There were 17 subjects with atelectasis (MI-E [n = 9] versus CPT [n = 8]). In this atelectasis subgroup, MI-E had shortened therapy time when compared with CPT (2.9 ± 0.8 d vs 3.9 ± 0.6 d, P = .01). No complications were observed.
Conclusions:
MI-E is proven to be beneficial in shortening the duration of airway clearance in children with quadriplegic spastic cerebral palsy presenting with lower-respiratory infections and atelectasis. MI-E is a safe and efficient intervention for airway clearance.
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