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Updated: Aug 9, 2026

Hemodynamic Precision in the Neonatal Intensive Care Unit using Targeted Neonatal Echocardiography
Published on: January 27, 2023
Diaphragm dimensions of the healthy preterm infant
V K Rehan1, J Laiprasert, M Wallach
1Departments of Pediatrics and Medicine, Memorial Hospital of Rhode Island, Pawtucket, Rhode Island, USA. vrehan@prl.humc.edu
Insights
Diaphragm thickness increases with postmenstrual age in preterm infants, correlating with body size. Diaphragm excursion decreases as infants mature, suggesting developmental changes in respiratory mechanics.
Area of Science:
- Neonatal physiology
- Respiratory development
- Pediatric ultrasound
Background:
- The diaphragm is crucial for infant breathing.
- Neonatal diaphragm development is not well understood.
- Diaphragm thickness (t(di)) may relate to infant growth parameters.
Purpose of the Study:
- To examine diaphragm growth and motion in healthy preterm infants.
- To understand the evolution of diaphragm function during early development.
Main Methods:
- Ultrasound was used to measure diaphragm thickness (t(di)) and excursion (e(di)).
- Thirty-four stable preterm infants (26-37 weeks' postmenstrual age) were studied weekly.
- Measurements were taken during quiet sleep without ventilatory support.
Main Results:
- Diaphragm thickness (t(di)) increased with postmenstrual age (PMA).
- t(di) positively correlated with PMA, body weight, length, and head circumference.
- Diaphragm excursion (e(di)) decreased as PMA increased.
Conclusions:
- Diaphragm development in preterm infants correlates with body dimensions.
- Increased t(di) likely reflects greater diaphragm muscle mass.
- Reduced e(di) may be due to decreased chest wall compliance with age.
Background:
The diaphragm is the major inspiratory muscle in the neonate; however, human neonatal diaphragm development has not been extensively studied. We hypothesized that diaphragm thickness (t(di)) would be positively related to postmenstrual age (PMA), body weight, body length, head circumference, and nutritional intake.
Objectives:
To evaluate the evolution of diaphragm growth and motion in the healthy, preterm infant.
Methods:
We used ultrasound to measure t(di) at the zone of apposition to the rib cage and diaphragm excursion (e(di)) during inspiration. Thirty-four stable, preterm infants (16 males and 18 females) between 26 and 37 weeks' PMA were studied during quiet sleep at weekly intervals until the time of discharge or transfer from the neonatal intensive care unit. All infants were clinically stable and not receiving ventilatory support.
Results:
We found that 1) t(di) increased from 1.2 +/- 0.1 to 1.7 +/- 0.05 mm between 26 to 28 and 35 to 37 weeks' PMA; 2) t(di) was positively correlated with PMA (r = 0.40), body weight (r = 0.52), body length (r = 0.53), and head circumference (0.49), but not with postnatal nutritional intake (r = 0.09); and 3) e(di) decreased with increasing PMA.
Conclusions:
Our findings suggest that diaphragm development in premature infants scales with body dimensions. We speculate that the increase in t(di) with age is likely attributable to increased diaphragm muscle mass, and the reduced e(di) with age may be resulting from a reduction in chest wall compliance.
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