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Updated: Aug 6, 2026

Protocol and Guidelines for Point-of-Care Lung Ultrasound in Diagnosing Neonatal Pulmonary Diseases Based on International Expert Consensus
Published on: March 6, 2019
Distortion of chest wall and work of diaphragm in preterm infants
Insights
Chest wall distortion in preterm infants increases diaphragm workload, potentially leading to fatigue and apnea. This study quantifies the significant extra effort infants exert due to this condition.
Area of Science:
- Neonatal Physiology
- Respiratory Mechanics
- Infant Development
Background:
- Chest wall distortion is common in infants, particularly preterm infants.
- This distortion may increase diaphragm workload, leading to fatigue and apnea.
Purpose of the Study:
- To investigate the effect of chest wall distortion on diaphragm volume displacement and work in preterm infants.
- To quantify the relationship between chest wall distortion and respiratory parameters.
Main Methods:
- Studied 10 preterm infants without lung disease.
- Utilized inductance plethysmography to partition respiratory system volume changes.
- Calculated diaphragmatic work using gastric and esophageal pressures.
Main Results:
- Paradoxical chest wall movement averaged 36% of inspiration.
- Diaphragmatic minute volume displacement was 72-176% of pulmonary ventilation.
- Diaphragmatic work was 94-793% of lung work, unrelated to lung mechanics.
Conclusions:
- Chest wall distortion significantly increases the work of the diaphragm in preterm infants.
- This increased workload may contribute to diaphragmatic fatigue, apnea, and prolonged mechanical ventilation.
- Caloric expenditure associated with this increased work may impact infant growth and development.
Abstract:
Chest wall distortion is common in infants and is especially visible in preterm infants. It has been suggested that this distortion increases the volume displacement of the diaphragm during inspiration, which may be associated with muscular fatigue and apnea. We studied 10 preterm infants who had no evidence of lung disease, investigating the effect of chest wall distortion on the volume displacement and work of the diaphragm. The volume changes of the respiratory system were partitioned using an inductance plethysmograph. The minute volume displacement and the work of the diaphragm were calculated using the partitioned abdominal volume change and the gastric and esophageal pressures. The paradoxical movement of the chest wall lasted an average of 36% of inspiration. The minute volume displacement of the diaphragm ranged from 72 to 176% of the minute pulmonary ventilation, and diaphragmatic work ranged from 94 to 793% of that performed on the lungs. The amount of chest wall distortion, as reflected by the duration of the paradoxical chest wall movement, the minute volume excursion, or work of the diaphragm, was not related to the mechanical properties of the lungs. This estimated work load may represent a significant expenditure of calories in these infants and may contribute to the development of diaphragmatic fatigue, apnea, and a prolonged need for mechanical ventilation.
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