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Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Differential Trajectories of Airway and Parenchymal Function in Infants Born Preterm
Robert S Tepper1, Brandie D Wagner2, Jeffrey Bjerregaard3
1Department of Pediatrics, Section of Pediatric Pulmonology, Allergy and Sleep Medicine, Indiana University School of Medicine, Indianapolis, IN; Department of Pediatrics, Indiana Uniersity School of Medicine, Indianapolis, IN.
Insights
Preterm birth is linked to lasting impaired lung function in infants, with airway and parenchymal deficits evident early on. These deficits persist and worsen relative to full-term infants throughout infancy.
Area of Science:
- Pediatric Pulmonology
- Neonatal Medicine
- Respiratory Physiology
Background:
- Preterm birth can impact long-term respiratory health.
- Understanding the trajectory of lung function in preterm infants is crucial for early intervention.
Purpose of the Study:
- To assess if preterm birth is associated with impaired airway and parenchymal lung function.
- To determine if early lung function phenotypes change or remain consistent during infancy.
Main Methods:
- 125 preterm infants underwent longitudinal lung function testing (FEF75, FVC, DL, VA) post-NICU discharge.
- Measurements were taken at two time points during infancy (mean corrected ages 5.4 and 13.6 months).
Main Results:
- Absolute lung function values increased significantly with age.
- However, when normalized to full-term infants (z-scores), airway (FEF75) and parenchymal (DL) function showed significant, persistent impairment.
- Early deficits in FEF75 and DL predicted later values, independent of gestational age or bronchopulmonary dysplasia.
Conclusions:
- Preterm infants exhibit persistently impaired lung function relative to full-term peers, despite absolute gains.
- Airway and parenchymal function deficits appear early and may influence later respiratory health.
- These findings suggest potential for early interventions to mitigate long-term respiratory issues.
Objectives:
To evaluate whether preterm birth is associated with impaired airway and parenchymal lung function and whether early physiological phenotypes change or are sustained during follow-up during infancy.
Study Design:
We included125 infants born preterm who underwent forced expiratory flow at 75% (FEF75), expired forced vital capacity, lung diffusion (DL), and alveolar volume measured longitudinally after discharge from the neonatal intensive care unit.
Results:
The average gestational age of the cohort was 31 weeks (range, 25-36), 52% were female, and 36% were diagnosed with bronchopulmonary dysplasia. Length and lung function were evaluated at mean corrected ages of 5.4 and 13.6 months, visit 1 and visit 2, respectively. Significant increases occurred in body length (11.82 cm), FEF75 (94.3 mL/s), forced vital capacity (149 mL), DL (147 mL/min/mm Hg), and alveolar volume (254 mL) (P < .01 for each parameter). When quantified by z-scores based on full-term infants, the Δz-length increased significantly (P < .01); however, there were significant decreases in Δz-FEF75 and Δz-DL (P < .01). Lower FEF75 and DL values at visit 1 were associated with lower values at visit 2, but were not associated with gestational age or bronchopulmonary dysplasia.
Conclusions:
After preterm birth, absolute values for lung function increased during infancy; however, when expressed as z-scores, values were persistently impaired and became more negative relative to full-term infants. Airway and parenchymal function may be established early after preterm birth and may contribute to impaired trajectories or dysanapsis later in life.
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