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New research · Ophthalmology
Translational pediatrics · 4d
Cohort studyTranslational pediatrics · 2026

Identification of mechanical ventilation-related risk factors for retinopathy of prematurity in preterm infants.

Yun A Kim, Yeong Min Jang, Hyun Ho Kim, Jin Kyu Kim
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OphthalmologyCohort study

Each extra day on nasal CPAP raised retinopathy of prematurity risk by 4%

Identification of mechanical ventilation-related risk factors for retinopathy of prematurity in preterm infants.

Yun A Kim … Jin Kyu Kim
Translational pediatrics · 2026
Background

Retinopathy of prematurity (retinopathy of prematurity) remains a leading cause of preventable childhood blindness.

Purpose

This study investigated whether the mode and duration of respiratory support independently influence retinopathy of prematurity risk.

Methods

We conducted a single-center retrospective cohort study of 83 preterm infants (gestational age <28 weeks) admitted to the neonatal intensive care unit (neonatal intensive care unit) at Jeonbuk National University Hospital (2014-2024).

n = 52 infants
Results

more days on this breathing support raised eye disease risk

OR by subgroup · 95% CI
null = 1
001] and NCPAP duration
1.04
NCPAP duration remained the sole
1.04
More results

Retinopathy of prematurity was diagnosed in 52 infants (62.7%).

More results

In unadjusted analyses, gestational age [odds ratio (OR) =0.54; 95% confidence interval (CI): 0.35-0.80; P<0.001] and nasal continuous positive airway pressure duration (OR =1.04; 95% CI: 1.01-1.09; P=0.01) were significantly associated with retinopathy of prematurity, alongside time-weighted average positive end-expiratory pressure on days 7 and 10.

“
Conclusion · 1 of 2

Nasal continuous positive airway pressure duration is independently associated with retinopathy of prematurity in infants born before 28 weeks, with each additional day associated with a 4% increase in risk after adjustment for gestational age.

Conclusion · 2 of 2

This association was independent of mean FiO 2 , suggesting that oxygenation variability during spontaneous breathing may be a more proximal pathophysiological driver; however, as oxygen saturation (SpO 2 ) variability was not directly measured, this interpretation should be regarded as hypothesis-generating.

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