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Executive functioning and academic performance in preadolescent children with congenital heart disease
Yara Maalouf1, Natacha Paquette2, Isabelle Gaudet3
1Research center, CHU Sainte-Justine University Hospital Center, Montréal, QC, H3T 1C5, Canada; Department of Psychology, Université de Montréal, Montréal, QC, H3C 3J7, Canada.
Insights
Children with congenital heart disease (CHD) show lower academic achievement, particularly in reading and spelling, despite comparable working memory and cognitive flexibility. Executive functioning (EF) significantly impacts academic performance, suggesting targeted interventions for improved outcomes.
Area of Science:
- Neuropsychology
- Pediatric Cardiology
- Developmental Psychology
Background:
- Congenital heart disease (CHD) affects children's neurodevelopmental trajectories.
- Executive functioning (EF) is crucial for academic success.
- Understanding EF in children with CHD is vital for tailored support.
Purpose of the Study:
- Assess executive and academic functioning in preadolescent children with moderate to severe CHD.
- Investigate the structure of core executive functioning components in this population.
- Examine the link between executive functioning and academic achievement.
Main Methods:
- Neuropsychological evaluation of 71 children (8-11 years) with CHD.
- Comparison with age-matched normative data using t-tests.
- Exploratory factor analysis for EF structure and regression for EF-academic links.
Main Results:
- Children with CHD had lower inhibition, reading accuracy, speed, and spelling.
- Cognitive flexibility and working memory were comparable to norms.
- A two-factor EF model (inhibition/working memory and cognitive flexibility) emerged; EF significantly predicted academic performance.
Conclusions:
- Executive functioning deficits impact academic achievement in children with CHD.
- Findings support the development of EF interventions for this population.
- Interventions may enhance academic performance and long-term adaptation.
Objectives:
1) To assess the level of executive and academic functioning of preadolescent children with moderate to severe congenital heart diseases (CHD); 2) To evaluate the structure of executive functioning (EF) core components in children with diverse types of moderate and severe CHD; 3) To examine the relationship between EF and academic achievement in preadolescent children with CHD.
Study Design:
Seventy-one children aged 8 to 11 years old with CHD underwent a neuropsychological evaluation to measure EF and academic achievements. To compare the level of EF and academic achievement in children with CHD with age-matched normative data, one sample t-tests were performed. Then, to identify the structure of EF core components in children with CHD, an exploratory factor analysis was conducted. Lastly, multiple hierarchical linear regression analyses were computed to examine the relationship between EF and academic achievement.
Results:
Inhibition, reading accuracy, reading speed and spelling results were significantly lower for children with CHD, while cognitive flexibility/shifting and working memory scores were comparable to normative data. The underlying structure of EF in school-aged children with CHD was best understood by a two-factor model where inhibition and working memory represented one construct and cognitive flexibility/shifting represented another distinct construct. EF played a significant part in explaining the variance observed in academic performances.
Conclusion:
These findings could serve as a steppingstone for the development of EF interventions in children with CHD that could have direct impact on their academic performances and ultimately, long-term impact on their overall adaptation.
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