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Somatic growth in children with single ventricle physiology impact of physiologic state
Kelly N Vogt1, Cedric Manlhiot, Glen Van Arsdell
1Division of Cardiology, Department of Pediatrics, University of Toronto, The Labatt Family Heart Centre, The Hospital for Sick Children, Toronto, Ontario, Canada.
Insights
Infants with single ventricle (SV) physiology experience impaired growth before bidirectional cavopulmonary shunt (BCPS). Interventions targeting nutrition and collateral embolization may improve somatic growth in this population.
Area of Science:
- Pediatric Cardiology
- Growth and Development
- Congenital Heart Disease
Background:
- Infants with single ventricle (SV) physiology often exhibit growth retardation.
- This may be linked to volume overload and hypoxemia.
- Surgical palliation can potentially improve growth outcomes.
Purpose of the Study:
- To define somatic growth patterns in patients with single ventricle (SV) physiology.
- To identify factors associated with growth in this population.
Main Methods:
- Retrospective review of 126 patients undergoing the Fontan procedure (1994-2004).
- Analysis of demographic, hemodynamic, and surgical data.
- Conversion of serial weight and height to z-scores, modeled with linear regression.
Main Results:
- A significant decline in weight z-scores occurred before bidirectional cavopulmonary shunt (BCPS).
- Growth improved after hemi-Fontan and stabilized post-Fontan procedure.
- Lower birth weight, nutritional issues, and higher right atrial pressures were associated with poorer growth before BCPS.
Conclusions:
- Impaired somatic growth is evident in infants with SV physiology before BCPS.
- Catch-up growth is observed post-BCPS, suggesting a need for targeted nutritional strategies.
- Systemic venous collaterals may hinder growth; embolization might optimize growth potential.
Objectives:
We sought to define somatic growth patterns for patients with single ventricle (SV) physiology and associated factors.
Background:
Infants with SV physiology might have somatic growth retardation associated with volume overload and hypoxemia, which might improve after surgical palliation.
Methods:
We reviewed 126 patients (35% male) who underwent the Fontan procedure from 1994 to 2004. Demographic data, hemodynamic variables, and surgical procedures were recorded. Serial weights and heights were converted to z-scores. Linear regression analysis adjusted for repeated measures was used to model growth trends.
Results:
Median z-score for weight was -0.7 at birth, -1.6 before bidirectional cavopulmonary shunt (BCPS), -0.7 before Fontan procedure, and -0.7 after Fontan procedure. A significant decline in z-scores for weight was seen before BCPS, which was reversed after the hemi-Fontan and stabilized after Fontan procedure. The z-scores for weight before the BCPS were lower in patients with lower birth weight (p < 0.01), nutritional difficulties (p = 0.01), and higher right atrial pressures (p = 0.02). After the BCPS, impaired growth was seen in patients who had systemic venous collaterals (p < 0.01). Patients who had collaterals embolized had the same growth trends as patients with no collaterals (p = 0.29).
Conclusions:
Infants with SV physiology show impaired somatic growth before BCPS. Although catch-up growth occurs after BCPS, effective interventions such as more intensive nutritional strategies before BCPS might be targeted at this high-risk population. The presence of systemic venous collaterals might impede growth secondary to hemodynamic impairment. Embolization of collaterals might allow for maximum growth potential.
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