Altered Cerebral Microstructure in Adults With Atrial Septal Defect and Ventricular Septal Defect Repaired in

Benjamin Asschenfeldt1,2, Lars Evald2,3, Camilla Salvig1

  • 1Department of Cardiothoracic & Vascular Surgery Aarhus University Hospital Denmark.

Insights

Individuals operated for simple congenital heart defects show altered brain microstructure, impacting cognitive functions like social recognition and executive function, compared to healthy peers.

Area of Science:

  • Neuroscience
  • Cardiology
  • Developmental Biology

Background:

  • Congenital heart defects (CHDs) can lead to delayed brain development and neurodevelopmental disabilities.
  • Previous studies indicated poorer neurodevelopmental outcomes in individuals with simple CHDs, necessitating further etiological investigation.

Purpose of the Study:

  • To investigate microstructural tissue composition in the cerebral cortex and subcortical structures of adults operated for simple CHDs.
  • To compare these findings with healthy controls.
  • To determine associations between altered brain microstructure and neurodevelopmental outcomes.

Main Methods:

  • Adults (n=62) with a history of surgical closure for atrial septal defect (ASD) or ventricular septal defect (VSD) in childhood and healthy controls (n=38) were enrolled.
  • Brain diffusional kurtosis imaging and neuropsychological assessments were performed.
  • Mean kurtosis tensor and mean diffusivity were used to assess tissue microstructure.

Main Results:

  • Altered microstructural tissue composition was observed in the parietal, temporal, and occipital lobes of individuals with CHDs.
  • Specific changes in mean kurtosis tensor were noted in the right visual cortex.
  • Altered subcortical microstructure was found in ASD cases but not VSD cases.
  • Associations were identified between altered cerebral microstructure and deficits in social recognition and executive function.

Conclusions:

  • Adults operated for simple CHDs exhibit altered cerebral microstructural tissue composition compared to healthy individuals.
  • These microstructural alterations are linked to poorer neuropsychological performance, particularly in executive function and social recognition.