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Published on: January 12, 2018
Implementation of a Clinical Prediction Model Using Daily Postnatal Weight Gain, Birth Weight, and Gestational Age to
Insights
A new model using postnatal weight gain can identify preterm infants at risk for severe retinopathy of prematurity (ROP). Infants gaining less than 23 g/d require closer monitoring to prevent vision loss.
Area of Science:
- Neonatal Medicine
- Ophthalmology
- Pediatrics
Background:
- Retinopathy of prematurity (ROP) is a significant cause of visual impairment in preterm infants.
- Current screening protocols for ROP can lead to frequent eye examinations, increasing healthcare costs and patient burden.
Purpose of the Study:
- To develop a simple prognostic model to identify infants at risk for severe ROP.
- The model utilizes postnatal weight gain, birth weight, and gestational age.
Main Methods:
- Retrospective analysis of medical records from two tertiary centers.
- Inclusion criteria: birth weight ≤1,500 g, gestational age ≤30 weeks, and unstable clinical course.
- Multivariate regression analysis was used to create the Omaha (OMA)-ROP model.
Main Results:
- Severe ROP was identified in 17 out of 191 neonates.
- A weight gain of ≥23 g/d was a protective factor against severe ROP.
- The OMA-ROP model demonstrated 100% sensitivity and 62% specificity, potentially reducing eye examinations by 58%.
Conclusions:
- Postnatal growth rate is a valuable factor in ROP risk stratification.
- The OMA-ROP model can help minimize unnecessary eye examinations without compromising visual outcomes.
- Further validation in larger cohorts is recommended for widespread implementation.
Purpose:
To develop a simple prognostic model using postnatal weight gain, birth weight, and gestational age to identify infants at risk for developing severe retinopathy of prematurity (ROP).
Methods:
Medical records from two tertiary referral centers with the diagnosis code "Retinopathy of Prematurity" were evaluated. Those with a birth weight of 1,500 g or less, gestational age of 30 weeks or younger, and unstable clinical courses were included. Multivariate regression analysis was applied to transform three independent variables into a growth rate algorithm.
Results:
Seventeen of 191 neonates had severe ROP. Weight gain of at least 23 g/d was determined as a protective cut-off value against development of severe ROP. This value maintained 100% sensitivity with 62% specificity to ensure all neonates who require treatment would be captured. Overall, the Omaha (OMA)-ROP model calculated a 58% reduction in eye examinations within the cohort.
Conclusions:
Inclusion of postnatal growth rate in risk stratification will minimize the number of eye examinations performed without increasing adverse visual outcomes. The OMA-ROP model predicts neonates who gain less than 23 g/d are at higher risk for developing severe ROP. Although promising, larger cohort studies may be necessary to validate and implement new screening practices among preterm infants. [J Pediatr Ophthalmol Strabismus. 2018;55(5):326-334.].
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