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Weight change in infants with a functionally univentricular heart: from surgical intervention to hospital discharge
Barbara Medoff-Cooper1, Sharon Y Irving, Bradley S Marino
1Department of Pediatrics, The Children's Hospital of Philadelphia and School of Nursing, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States of America. medoff@nursing.upenn.edu
Insights
Infants with congenital heart disease undergoing surgery often experience growth failure. Significant atrioventricular valve regurgitation and complex post-operative courses are key predictors of poor weight gain in these neonates.
Area of Science:
- Pediatric Cardiology
- Neonatal Surgery
- Growth and Development
Background:
- Congenital cardiac disease impacts neonatal growth.
- Staged surgical repair is common for univentricular physiology.
- Post-operative growth assessment is crucial for this population.
Purpose of the Study:
- To analyze weight change patterns in neonates with congenital heart disease from surgery to discharge.
- To identify predictors of impaired growth in this vulnerable group.
Main Methods:
- Prospective cohort study of neonates with univentricular physiology.
- Weight measurements at birth, pre-surgery, and discharge.
- Review of echocardiographic and post-operative complication data.
Main Results:
- Mean weight-for-age z-score change was -1.5 between surgery and discharge.
- Infants on oral feeds had better weight-for-age z-score than those with feeding devices (p=0.01).
- Lower birth z-score, AV valve regurgitation, ventilation time, and central line placement predicted poor weight gain.
Conclusions:
- Neonates with univentricular physiology face significant post-operative growth failure risk.
- Atrioventricular valve regurgitation and complex post-operative course are risk factors.
- Current feeding support strategies may be inadequate for optimal post-operative weight gain.
Objective:
The purpose of this study was to assess the pattern of weight change from surgical intervention to home discharge and to determine predictors of poor growth in this population of infants with congenital cardiac disease.
Methods:
Neonates with functionally univentricular physiology enrolled in a prospective cohort study examining growth between March, 2003 and May, 2007 were included. Weights were collected at birth, before surgical intervention, and at hospital discharge. In addition, retrospective echocardiographic data and data about post-operative complications were reviewed. Primary outcome variables were weight-for-age z-score at discharge and change in weight-for-age z-score between surgery and discharge.
Results:
A total of 61 infants met the inclusion criteria. The mean change in weight-for-age z-score between surgery and hospital discharge was minus 1.5 plus or minus 0.8. Bivariate analysis revealed a significant difference in weight-for-age z-score between infants who were discharged on oral feeds, minus 1.1 plus or minus 0.8 compared to infants with feeding device support minus 1.7 plus or minus 0.7, p-value equal to 0.01. Lower weight-for-age z-score at birth, presence of moderate or greater atrioventricular valve regurgitation, post-operative ventilation time, and placement of an additional central venous line were associated with 60% of the variance in weight-for-age z-score change.
Conclusion:
Neonates undergoing staged surgical repair for univentricular physiology are at significant risk for growth failure between surgery and hospital discharge. Haemodynamically significant atrioventricular valve regurgitation and a complex post-operative course were risk factors for poor post-operative weight gain. Feeding device support appears to be insufficient to ensure adequate weight gain during post-operative hospitalisation.
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