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How do Age at the Surgery and Birth Weight Influence Post-Operative Anthropometric Parameters in Infants with
Santosh Wadile1, Divya Kondgekar1, Ashishkumar Moreshwar Banpurkar1
1Department of Pediatric Cardiology, Sri Sathya Sai Sanjeevani Centre for Child Heart Care & Training in Pediatric Cardiac Skills, Kharghar, Navi Mumbai, Maharashtra, 410210, India.
Insights
Early surgical closure of large ventricular septal defects (VSD) significantly improves weight-for-age in infants. While most infants show catch-up growth, some may require further intervention due to multifactorial growth failure.
Area of Science:
- Pediatric Cardiology
- Developmental Biology
- Surgical Outcomes
Background:
- Large ventricular septal defects (VSD) can impede infant growth.
- Limited data exist on growth patterns post-VSD closure in infancy.
Purpose of the Study:
- To assess growth patterns in infants with large VSD after surgical closure.
- To evaluate the impact of VSD closure on anthropometric parameters across different age groups and birth weights.
Main Methods:
- Prospective observational study of 99 infants with isolated large VSD.
- Collection of anthropometric data (weight-for-age, length-for-age, weight-for-length) pre- and post-surgery.
- Analysis of growth patterns and Z-scores.
Main Results:
- Significant improvement in weight-for-age Z-scores post-VSD closure (p=0.0012).
- Infants operated on before 8 months showed the highest rate of weight gain.
- Birth weight did not significantly impact pre- or post-operative growth parameters.
Conclusions:
- Early surgical closure of large VSD promotes normalization of growth parameters and catch-up growth.
- While most infants benefit, some experience suboptimal growth, potentially due to multifactorial causes.
- Further investigation may be needed for infants with persistent growth failure post-correction.
Abstract:
Closure of the large ventricular septal defects (VSD) in infancy can lead to normalization of growth, but data are limited. Our study is done to assess the growth pattern in different age groups of children and lower birth weight babies after shunt closure. This is a prospective observational study that included infants with isolated large VSD operated in infancy. Anthropometric data were collected at baseline and at follow-up, and growth patterns were analyzed. 99 infants were included in the study. The mean age and weight at the time of surgery were 6.97 ± 2.79 months and 5.07 ± 1.16 kg, respectively. The mean follow-up duration was 8.99 ± 2.31 months. The weight for age (W/A) was the most adversely affected parameter preoperatively, and there was significant improvement noted in the mean Z score for W/A after shunt closure (- 3.67 ± 1.18 vs. - 1.76 ± 1.14, p = 0.0012). There was improvement in Z-scores for length for age (L/A) and weight for length (W/L), although it was not statistically significant. The infants from all the age groups had statistically significant growth in the anthropometric parameters. The rate of weight gain was maximum in the infants operated below 8 months of age (2-4 months = 3588 g, 5-6 months = 3592 g, 7-8 months = 3606 g, 9-10 months = 2590 g, 11-12 months = 2250 g). Low birth weight and normal birth weight infants had similar Z-scores at the time of surgery and at follow-up in all 3 anthropometric parameters, and birth weight did not affect pre- as well as post-operative growth parameters. Suboptimal improvement in weight and length was seen in 40 and 20% of babies even after successful surgical repair, respectively. Growth failure in infants with a large VSD can be multifactorial. Early surgical closure of the shunt can lead to early normalization of growth parameters and faster catch-up growth. Few babies may fail to demonstrate a positive growth response even after timely surgical correction, and may be related to intrauterine and genetic factors or faulty feeding habits.

