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Andersons pediatric cardiology 1833

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23 Elder RW, McCabe NM, Veledar E, et al Risk factors for major adverse events late after Fontan palliation Congenit Heart Dis 2014;10(2):159– 168 24 Pundi KN, Johnson JN, Dearani JA, et al 40-year follow-up after the Fontan operation J Am Coll Cardiol 2015;66:1700–1710 25 Sasaki J, Dykes JC, Sosa LJ, et al Risk factors for longer hospital stay following the Fontan operation Pediatr Crit Care Med 2016;17:411– 419 26 Alsaied T, Bokma JP, Engel ME, et al Factors associated with long-term mortality after Fontan procedures: a systematic review Heart 2017;103:104–110 27 Collins RT 2nd, Doshi P, Onukwube J, Fram RY, Robbins JM Risk factors for increased hospital resource utilization and in-hospital mortality in adults with single ventricle congenital heart disease Am J Cardiol 2016;118:453–462 28 Dorfman A, Marino BS, Wernovsky G, et al Critical heart disease in the neonate: presentation and outcome at a tertiary care center Pediatr Crit Care Med 2008;9:193–202 29 Woodward GA, Wernovsky G, Rhodes LA, Mahle WT, Forkey HC Sepsis, septic shock, acute abdomen: the ability of cardiac disease to mimic other medical illness Pediatr Emerg Care 1996;12:317–324 30 Eckersley L, Sadler L, Parry E, Finucane K, Gentles TL Timing of diagnosis affects mortality in critical congenital heart disease Arch Dis Child 2016;101:516–520 31 Khalil A, Suff N, Thilaganathan B, et al Brain abnormalities and neurodevelopmental delay in congenital heart disease: systematic review and meta-analysis Ultrasound Obstet Gynecol 2014;43:14–24 32 Khalil A, Bennet S, Thilaganathan B Prevalence of prenatal brain abnormalities in fetuses with congenital heart disease: a systematic review Ultrasound Obstet Gynecol 2016;48:296–307 33 Peyvandi S, Kim H, Lau J, et al The association between cardiac physiology, acquired brain injury, and postnatal brain growth in critical congenital heart disease J Thorac Cardiovasc Surg 2018;155:291–300 34 Sun L, Macgowan CK, Sled JG, et al Reduced fetal cerebral oxygen consumption is associated with smaller brain size in fetuses with congenital heart disease Circulation 2015;131:1313–1323 35 Razzouk AJ, Chinnock RE, Gundry SR, et al Transplantation as a primary treatment for hypoplastic left heart syndrome: intermediate- term results Ann Thorac Surg 1996;62:1–8 36 Mitchell MB, Campbell DN, Boucek MM, et al Mechanical limitation of pulmonary blood flow facilitates heart transplantation in older infants with hypoplastic left heart syndrome Eur J Cardiothorac Surg 2003;23:735–742 37 Wernovsky G, Bove EL Single ventricle lesions Chang AC, Hanley Fl, Wernovsky G, Wessel DL Pediatric Cardiac Intensive Care Williams and Wilkins: Baltimore; 1998:271–287 [Chapter 18] 38 Wernovsky G, McElhinney D, Tabbutt S, Stage I Postoperative management Rychik J, Wernovsky G Hypoplastic Left Heart Syndrome Kluwer Academic Publishing.: Boston; 2003:105–128 [Chapter 7] 39 Tabbutt S, Tweddell J, Ghanayem N Hypoplastic left heart syndrome and other shunt-dependent single ventricles Pediatr Crit Care Med 2016;17:S318–S322 40 Vu EL, Rusin CG, Penny DJ, et al A novel electrocardiogram algorithm utilizing STsegment instability for detection of cardiopulmonary arrest in single ventricle physiology: a retrospective study Pediatr Crit Care Med 2017;18:44–53 41 Barnea O, Austin EH, Richman B, Santamore ... 2003;23:735–742 37 Wernovsky G, Bove EL Single ventricle lesions Chang AC, Hanley Fl, Wernovsky G, Wessel DL Pediatric Cardiac Intensive Care Williams and Wilkins: Baltimore; 1998:271–287 [Chapter 18] 38 Wernovsky G, McElhinney D, Tabbutt S, Stage I

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