Limperopoulos C, Majnemer A, Shevell MI, Rohlicek C, Rosenblatt B, Tchervenkov C, Darwish HZ (2002) Predictors of developmental disabilities after open heart surgery in young children with congenital heart defects. J Pediatr 141(1):51–58. https://doi.org/10.1067/mpd.2002.125227. (PMID: 12091851)
Limperopoulos C, Majnemer A, Shevell MI, Rosenblatt B, Rohlicek C, Tchervenkov C (2000) Neurodevelopmental status of newborns and infants with congenital heart defects before and after open heart surgery. J Pediatr 137(5):638–645. https://doi.org/10.1067/mpd.2000.109152. (PMID: 11060529)
Article CAS PubMed Google Scholar
Bellinger DC, Wypij D, duPlessis AJ, Rappaport LA, Jonas RA, Wernovsky G, Newburger JW (2003) Neurodevelopmental status at eight years in children with dextro-transposition of the great arteries: the Boston Circulatory Arrest Trial. J Thorac Cardiovasc Surg 126(5):1385–1396. https://doi.org/10.1016/s0022-5223(03)00711-6. (PMID: 14666010)
Sood E, Newburger JW, Anixt JS, Cassidy AR, Jackson JL, Jonas RA, Lisanti AJ, Lopez KN, Peyvandi S, Marino BS, American Heart Association Council on Lifelong Congenital Heart Disease and Heart Health in the Young and the Council on Cardiovascular and Stroke Nursing (2024) Neurodevelopmental outcomes for individuals with congenital heart disease: updates in neuroprotection, risk-stratification, evaluation, and management: a scientific statement from the american heart association. Circulation. 149(13):e997–e1022. https://doi.org/10.1161/CIR.0000000000001211. (Epub 2024 Feb 22. PMID: 38385268)
Article CAS PubMed Google Scholar
Nattel SN, Adrianzen L, Kessler EC, Andelfinger G, Dehaes M, Côté-Corriveau G, Trelles MP (2017) Congenital heart disease and neurodevelopment: clinical manifestations, genetics, mechanisms, and implications. Can J Cardiol 33(12):1543–1555. https://doi.org/10.1016/j.cjca.2017.09.020. (Epub 2017 Oct 6 PMID: 29173597)
Marino BS, Lipkin PH, Newburger JW et al (2012) Neurodevelopmental outcomes in children with congenital heart disease: evaluation and management: a scientific statement from the American heart association. Circulation 126:1143–1172
Bellinger DC, Newburger JW (2010) Neuropsychological, psychosocial, and quality-of-life outcomes in children and adolescents with congenital heart disease. Prog Pediatr Cardiol 29:87–92
Pande CK, Noll L, Afonso N, Serrano F, Monteiro S, Guffey D, Puri K, Achuff BJ, Akcan-Arikan A, Shekerdemian L (2022) Neurodevelopmental outcomes in infants with cardiac surgery associated acute kidney injury. Ann Thorac Surg 114(6):2347–2354
Akcan-Arikan A, Shekerdemian L (2022) Neurodevelopmental outcomes in infants with cardiac surgery associated acute kidney injury. Ann Thorac Surg 114(6):2347–2354
Gunn JK, Beca J, Hunt RW, Goldsworthy M, Brizard CP, Finucane K, Donath S, Shekerdemian LS (2016) Perioperative risk factors for impaired neurodevelopment after cardiac surgery in early infancy. Arch Dis Childhood. 101(11):1010–6
Shekerdemian LSS (2016) Perioperative risk factors for impaired neurodevelopment after cardiac surgery in early infancy. Arch Dis Child. 101(11):1010–1016
Newburger JW, Sleeper LA, Bellinger DC, Goldberg CS, Tabbutt S, Lu M, Mussatto KA, Williams IA, Gustafson KE, Mital S, Pike N (2012) Early developmental outcome in children with hypoplastic left heart syndrome and related anomalies: the single ventricle reconstruction trial. Circulation. 125(17):2081–91
PubMed PubMed Central Google Scholar
Pressler SJ, Subramanian U, Kareken D, Perkins SM, Gradus-Pizlo I, Sauvé MJ, Ding Y, Kim J, Sloan R, Jaynes H, Shaw RM (2010) Cognitive deficits in chronic heart failure. Nurs Res. 59(2):127–39. https://doi.org/10.1097/NNR.0b013e3181d1a747
Article PubMed PubMed Central Google Scholar
De Silvestro A, Natalucci G, Feldmann M, Hagmann C, Nguyen TD, Coraj S, Jakab A, Kottke R, Latal B, Knirsch W, Tuura R (2024) Effects of hemodynamic alterations and oxygen saturation on cerebral perfusion in congenital heart disease. Pediatr Res. 96(4):990–998. https://doi.org/10.1038/s41390-024-03106-6
Article CAS PubMed PubMed Central Google Scholar
Roy B, Woo MA, Wang DJJ, Fonarow GC, Harper RM, Kumar R (2017) Reduced regional cerebral blood flow in patients with heart failure. Eur J Heart Fail. 19(10):1294–1302. https://doi.org/10.1002/ejhf.874
Yarlagadda VV, Maeda K, Zhang Y, Chen S, Dykes JC, Gowen MA, Shuttleworth P, Murray JM, Shin AY, Reinhartz O, Rosenthal DN, McElhinney DB, Almond CS (2017) Temporary circulatory support in U.S children awaiting heart transplantation. J Am Coll Cardiol. 70(18):2250–2260. https://doi.org/10.1016/j.jacc.2017.08.072
Kind AJH, Buckingham W (2018) Making neighborhood disadvantage metrics accessible: the neighborhood atlas. New England J Med 378:2456–2458. https://doi.org/10.1056/NEJMp1802313
(1975) Gesell and Amatruda’s Developmental Diagnosis. Arch Dis Child. 50(12):967. PMCID: PMC1545843.
Cattell P (1940) The measurement of intelligence of infants and young children. Psychological Corporation.
Capute AJ, Shapiro BK, Wachtel RC, Gunther VA, Palmer FB (1986) The clinical linguistic and auditory milestone scale (CLAMS) identification of cognitive defects in motor-delayed children. Am J Dis Child. 140(7):694–8. https://doi.org/10.1001/archpedi.1986.02140210092033
Article CAS PubMed Google Scholar
Schopler E, Reichler RJ, DeVellis RF, Daly K (1980) Toward objective classification of childhood autism: childhood autism rating scale (CARS). J Autism Dev Disord 10(1):91–103. https://doi.org/10.1007/BF02408436. (PMID: 6927682)
Article CAS PubMed Google Scholar
R Core Team (2023) R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria
Wickham H (2016) ggplot2: Elegant Graphics for Data Analysis. Springer-Verlag, New York
Gaynor JW, Stopp C, Wypij D, Andropoulos DB, Atallah J, Atz AM, Beca J, Donofrio MT, Duncan K, Ghanayem NS, Goldberg CS, Hövels-Gürich H, Ichida F, Jacobs JP, Justo R, Latal B, Li JS, Mahle WT, McQuillen PS, Menon SC, Pemberton VL, Pike NA, Pizarro C, Shekerdemian LS, Synnes A, Williams I, Bellinger DC, Newburger JW (2015) International cardiac collaborative on neurodevelopment (ICCON) investigators neurodevelopmental outcomes after cardiac surgery in infancy. Pediatrics. 135(5):816–25. https://doi.org/10.1542/peds.2014-3825
Article PubMed PubMed Central Google Scholar
Holst LM, Serrano F, Shekerdemian L, Ravn HB, Guffey D, Ghanayem NS, Monteiro S (2019) Impact of feeding mode on neurodevelopmental outcome in infants and children with congenital heart disease. Congenit Heart Dis 14(6):1207–1213. https://doi.org/10.1111/chd.12827. (Epub 2019 Aug 2 PMID: 31373176)
Sigmon ER, Kelleman M, Susi A, Nylund CM, Oster ME (2019) Congenital heart disease and autism: a case-control study. Pediatrics. 144(5):e20184114. https://doi.org/10.1542/peds.2018-4114
Gu S, Katyal A, Zhang Q, Chung W, Franciosi S, Sanatani S (2023) The association between congenital heart disease and autism spectrum disorder: a systematic review and meta-analysis. Pediatr Cardiol 44(5):1092–1107. https://doi.org/10.1007/s00246-023-03146-5. (Epub 2023 Mar 25 PMID: 36964783)
Serrano F, Guffey D, Shekerdemian L, Noll L, Voigt RG, Monteiro S (2024) Early identification of autism spectrum disorder in children with CHD attending a Cardiac Developmental Outcomes Program. Cardiol Young 34(3):483–488. https://doi.org/10.1017/S1047951123001701. (Epub 2023 Jul 19 PMID: 37466015)
Bean Jaworski JL, Flynn T, Burnham N, Chittams JL, Sammarco T, Gerdes M, Bernbaum JC, Clancy RR, Solot CB, Zackai EH, McDonald-McGinn DM, Gaynor JW (2017) Rates of autism and potential risk factors in children with congenital heart defects. Congenit Heart Dis. 12(4):421–429. https://doi.org/10.1111/chd.12461
Article PubMed PubMed Central Google Scholar
Colvin MM, Smith JM, Ahn YS, Handarova DK, Martinez AC, Lindblad KA, Israni AK, Snyder JJ (2024) OPTN/SRTR 2022 Annual Data Report: Heart. Am J Transplant. 24(2):S305–S393
Dusing CR, Turner E, Smyth L, Cassidy AR, Everitt MD, Graves R, Ilardi DL, Larkins C, McQueen M, Roberts H, Bolin B, Miller TA, Wright LK, Wolfe KR, Cousino MK (2024) Current state of neurodevelopmental and psychosocial care practices for paediatric patients with ventricular assist devices: an advanced cardiac therapies improving outcomes network and cardiac neurodevelopmental outcome collaborative collaborative survey. Cardiol Young. https://doi.org/10.1017/S1047951124026751
Article PubMed PubMed Central Google Scholar
Conway J, Ravekes W, McConnell P, Cantor RS, Koehl D, Sun B, Daly RC, Hsu DT (2022) Early improvement in clinical status following ventricular assist device implantation in children: a marker for survival. ASAIO J 68(1):87–95. https://doi.org/10.1097/MAT.0000000000001420. (PMID: 33852494)
Ubeda Tikkanen A, Nathan M, Sleeper LA, Flavin M, Lewis A, Nimec D, Mayer JE, Del Nido P (2018) Predictors of postoperative rehabilitation therapy following congenital heart surgery. J Am Heart Assoc 7(10):e008094. https://doi.org/10.1161/JAHA.117.008094.PMID:29754124;PMCID:PMC6015299
Article PubMed PubMed Central Google Scholar
Monteiro SA, Serrano F, Tsang R, Smith Hollier E, Guffey D, Noll L,
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