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February 11, 2026Pediatric Pulmonology0 citationsOpen Access

Exercise Capacity and Ventilatory Response in Children Who Were Born Preterm, With and Without Bronchopulmonary Dysplasia

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EKEleana KouroukliKSKosmas SarafidisJTJohn A. Tsanakas

Key Points

  • To examine lung function and exercise capacity in school-aged children with a history of prematurity and bronchopulmonary dysplasia (BPD).
  • Prospective observational study of school-aged children and adolescents born preterm and term controls.
  • Participants underwent spirometry and cardiopulmonary exercise testing (CPET).
  • Groups included preterm with BPD, preterm without BPD, and term-born controls without asthma.
  • BPD children had normal lung function measures comparable to controls.
  • Exercise capacity (V̇O 2 peak%) was reduced in the BPD group compared to controls, with a mean difference of -14.4.
  • BPD group showed highest ventilatory efficiency (VE/VCO 2) compared to the other groups, with a significant difference from controls (p = 0.015).

Abstract

ABSTRACT Background Bronchopulmonary dysplasia is one of the most common complications of preterm birth and has lifelong repercussions in respiratory health. Objective To examine lung function and exercise capacity and assess potential differences in exertional respiratory pattern and ventilatory and gas exchange responses in school‐aged children with a history of prematurity and/or BPD. Methods Prospective observational study including children and adolescents born preterm, with and without BPD, and healthy term‐born controls without a known history of asthma. Participants performed spirometry and cardiopulmonary exercise testing. Results Eighty‐two children aged 6−18 years (mean: 11.9 years, SD: 3.1) were enrolled and examined in three groups: preterm‐born with BPD (gestational age < 32 weeks), preterm‐born without BPD (GA < 37 weeks), and term‐born controls (GA ≥ 37 weeks). FVC, FEV 1 , FEF 25% −75% , and FEV 1 /FVC were normal and comparable among the three groups. V̇O 2 peak% was reduced in the BPD group and was significantly lower than the control group (mean difference: –14.4, CI: –28 to –0.7, adjusted p = 0.04), but the difference was not significant when adjusting for height. The BPD group had the highest mean VE/VCO 2 adjusted for height (32.7), followed by the preterm (30.3) and the control group (29.5), and the difference between the BPD and control group was statistically significant ( p = 0.015). Moreover, BPD status was significantly associated with increased VE/VCO 2 ( β = +3.2, CI: 1–5.4, p = 0.005). The rest of the CPET parameters were within normal limits and comparable among groups. Conclusions Children with BPD have normal lung function but reduced exercise capacity and decreased ventilatory efficiency during exercise.

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Cite This Study

Kouroukli et al. (2026) studied this question.

synapsesocial.com/papers/698c1c46267fb587c655e8c8https://doi.org/10.1002/ppul.71492
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