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Ethnicity-specific birthweight distributions improve identification of term newborns at risk for short-term morbidity
Gillian E Hanley1, Patricia A Janssen
1School of Population and Public Health and the Child and Family Research Institute, University of British Columbia, Vancouver, BC, Canada.
Insights
Using ethnicity-specific birthweight charts more accurately identifies newborns at risk for short-term neonatal morbidity (health problems) compared to general population charts.
Area of Science:
- Perinatal Medicine
- Neonatal Health
- Public Health
Background:
- Standard population-based birthweight distributions may not adequately identify all newborns at risk for adverse outcomes.
- Small for gestational age (SGA) is typically defined using these general standards.
Purpose of the Study:
- To compare the effectiveness of ethnicity-specific versus population-based birthweight distributions in identifying newborns at risk for short-term neonatal morbidity.
- To assess the predictive accuracy of different SGA definitions for adverse neonatal outcomes.
Main Methods:
- Analysis of 100,463 singleton term infants born in Washington State (2006-2008).
- Utilized multivariable logistic regression to compare risk prediction for neonatal morbidity.
- Assessed outcomes including low Apgar score, NICU admission, ventilation, prolonged hospital stay, hypothermia, hypoglycemia, and infection.
Main Results:
- Newborns identified as SGA by ethnicity-specific standards had more than double the rates of adverse outcomes compared to those identified only by population-based standards.
- Ethnicity-specific SGA infants were 2-7 times more likely to experience adverse outcomes than non-SGA infants, after adjusting for covariates.
- Population-based SGA identification was only significantly associated with higher risk for hypothermia and NICU admission.
Conclusions:
- Ethnicity-specific birthweight distributions are superior in identifying infants at higher risk for short-term neonatal morbidity.
- Implementing ethnicity-specific standards could potentially reduce healthcare costs and parental anxiety by improving risk assessment.
Objective:
We aimed to determine whether ethnicity-specific birthweight distributions more accurately identify newborns at risk for short-term neonatal morbidity associated with small for gestational age (SGA) birth than population-based distributions not stratified on ethnicity.
Study Design:
We examined 100,463 singleton term infants born to parents in Washington State between Jan. 1, 2006, and Dec. 31, 2008. Using multivariable logistic regression models, we compared the ability of an ethnicity-specific growth distribution and a population-based growth distribution to predict which infants were at increased risk for Apgar score <7 at 5 minutes, admission to the neonatal intensive care unit, ventilation, extended length of stay in hospital, hypothermia, hypoglycemia, and infection.
Results:
Newborns considered SGA by ethnicity-specific weight distributions had the highest rates of each of the adverse outcomes assessed-more than double those of infants only considered SGA by the population-based standards. When controlling for mother's age, parity, body mass index, education, gestational age, mode of delivery, and marital status, newborns considered SGA by ethnicity-specific birthweight distributions were between 2 and 7 times more likely to suffer from the adverse outcomes listed above than infants who were not SGA. In contrast, newborns considered SGA by population-based birthweight distributions alone were at no higher risk of any adverse outcome except hypothermia (adjusted odds ratio, 2.76; 95% confidence interval, 1.68-4.55) and neonatal intensive care unit admission (adjusted odds ratio, 1.40; 95% confidence interval, 1.18-1.67).
Conclusion:
Ethnicity-specific birthweight distributions were significantly better at identifying the infants at higher risk of short-term neonatal morbidity, suggesting that their use could save resources and unnecessary parental anxiety.
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