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. 2024 Mar;45(3):483-490.
doi: 10.1007/s00246-023-03367-8. Epub 2024 Jan 12.

Patterns of WISC-V Performance in Children with Congenital Heart Disease

Affiliations

Patterns of WISC-V Performance in Children with Congenital Heart Disease

Marsha Vasserman et al. Pediatr Cardiol. 2024 Mar.

Abstract

Congenital heart disease (CHD) is one of the most common congenital birth defects. As surgical and interventional techniques have improved, the mortality has been greatly reduced and the focus has shifted to quality of life and long-term outcomes. The impact of CHD on development and cognition is becoming increasingly recognized. However, more research is needed to understand how children with CHD perform across various cognitive and intellectual domains. This study explored the performance of children with CHD on the newest version of the Wechsler Intelligence Scale for Children compared to normative controls. Children with CHD performed more poorly than normal controls across all indices and most subtests with large effect sizes. Additionally, we explored the patterns of impairment across indices and subtests, as well as the relationships between heard disease variables and WISC-V performance. Block design, Digit Span, and Similarities were the most commonly impaired scores in children with CHD, while Symbol Search, Picture Span, Figure Weights, and Vocabulary were least likely to be impaired.

Keywords: Congenital heart disease; Intellectual function; Neurodevelopment; WISC-V.

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References

    1. Oster ME, Lee KA, Honein MA, Riehle-Colarusso T, Shin M, Correa A (2013) Temporal trends in survival among infants with critical congenital heart defects. Pediatrics 131(5):e1502–e1508 - DOI - PubMed
    1. Best KE, Rankin J (2016) Long-term survival of individuals born with congenital heart disease: a systematic review and meta-analysis. J Am Heart Assoc 5(6):e002846 - DOI - PubMed - PMC
    1. Cassidy AR, Ilardi D, Bowen SR et al (2018) Congenital heart disease: a primer for the pediatric neuropsychologist. Child Neuropsychol 24(7):859–902 - DOI - PubMed
    1. Leonetti C, Back SA, Gallo V, Ishibashi N (2019) Cortical dysmaturation in congenital heart disease. Trends Neurosci 42(3):192–204 - DOI - PubMed - PMC
    1. Peyvandi S, Latal B, Miller SP, McQuillen PS (2019) The neonatal brain in critical congenital heart disease: insights and future directions. Neuroimage 185:776–782 - DOI - PubMed

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