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Structural network topology correlates of microstructural brain dysmaturation in term infants with congenital heart disease.
Schmithorst, Vincent J; Votava-Smith, Jodie K; Tran, Nhu; Kim, Richard; Lee, Vince; Ceschin, Rafael; Lai, Hollie; Johnson, Jennifer A; De Toledo, Joan Sanchez; Blüml, Stefan; Paquette, Lisa; Panigrahy, Ashok.
Afiliação
  • Schmithorst VJ; Department of Pediatric Radiology, Children's Hospital of Pittsburgh of UPMC and University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Votava-Smith JK; Division of Cardiology, Department of Pediatrics, Children's Hospital Los Angeles, Los Angeles, California.
  • Tran N; Division of Cardiology, Department of Pediatrics, Children's Hospital Los Angeles, Los Angeles, California.
  • Kim R; Division of Pediatric Cardiothoracic Surgery, Department of Surgery, Children's Hospital Los Angeles, Los Angeles, California.
  • Lee V; Department of Pediatric Radiology, Children's Hospital of Pittsburgh of UPMC and University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Ceschin R; Department of Pediatric Radiology, Children's Hospital of Pittsburgh of UPMC and University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Lai H; Department of Biomedical Informatics, University of Pittsburgh, Pittsburgh, Pennsylvania.
  • Johnson JA; Department of Radiology, Children's Hospital Los Angeles, Los Angeles, California.
  • De Toledo JS; Division of Pediatric Cardiology, Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Blüml S; Pediatric Cardiac Intensive Care Division, Department of Critical Care, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Paquette L; Department of Radiology, Children's Hospital Los Angeles, Los Angeles, California.
  • Panigrahy A; Department of Pediatrics, Division of Neonatology, Children's Hospital Los Angeles, Los Angeles, California.
Hum Brain Mapp ; 39(11): 4593-4610, 2018 11.
Article em En | MEDLINE | ID: mdl-30076775
ABSTRACT
Neonates with complex congenital heart disease (CHD) demonstrate microstructural brain dysmaturation, but the relationship with structural network topology is unknown. We performed diffusion tensor imaging (DTI) in term neonates with CHD preoperatively (N = 61) and postoperatively (N = 50) compared with healthy term controls (N = 91). We used network topology (graph) analyses incorporating different weighted and unweighted approaches and subject-specific white matter segmentation to investigate structural topology differences, as well as a voxel-based analysis (VBA) to confirm the presence of microstructural dysmaturation. We demonstrate cost-dependent network inefficiencies in neonatal CHD in the pre- and postoperative period compared with controls, related to microstructural differences. Controlling for cost, we show the presence of increased small-worldness (hierarchical fiber organization) in CHD infants preoperatively, that persists in the postoperative period compared with controls, suggesting the early presence of brain reorganization. Taken together, topological microstructural dysmaturation in CHD infants is accompanied by hierarchical fiber organization during a protracted critical period of early brain development. Our methodology also provides a pipeline for quantitation of network topology changes in neonates and infants with microstructural brain dysmaturation at risk for perinatal brain injury.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Encéfalo / Cardiopatias Congênitas Tipo de estudo: Clinical_trials / Observational_studies / Risk_factors_studies Limite: Female / Humans / Male / Newborn Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Encéfalo / Cardiopatias Congênitas Tipo de estudo: Clinical_trials / Observational_studies / Risk_factors_studies Limite: Female / Humans / Male / Newborn Idioma: En Ano de publicação: 2018 Tipo de documento: Article