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conditions following congenital heart surgery in infancy Pediatr Cardiol 2017 15 Ungerleider RM, et al Risk factors for higher cost in congenital heart operations Ann Thorac Surg 1997;64(1):44–48 [discussion 49] 16 Peiris V, et al Association of socioeconomic position and medical insurance with fetal diagnosis of critical congenital heart disease Circ Cardiovasc Qual Outcomes 2009;2(4):354–360 17 Raucci FJ Jr, Hoke TR, Gutgesell HP Predicting economic and medical outcomes based on risk adjustment for congenital heart surgery classification of pediatric cardiovascular surgical admissions Am J Cardiol 2014;114(11):1740– 1744 18 Pasquali SK, et al Variation in congenital heart surgery costs across hospitals Pediatrics 2014;133(3):e553–e560 19 Pasquali SK, et al Excess costs associated with complications and prolonged length of stay after congenital heart surgery Ann Thorac Surg 2014;98(5):1660–1666 20 Mahle WT, et al Utilizing a collaborative learning model to promote early extubation following infant heart surgery Pediatr Crit Care Med 2016;17(10):939–947 21 Oster ME, et al Relationship between resource utilization and length of stay following tetralogy of Fallot repair Congenit Heart Dis 2013;8(6):535–540 22 Benavidez OJ, et al The contribution of complications to high resource utilization during congenital heart surgery admissions Congenit Heart Dis 2007;2(5):319–326 23 Danford DA, Karels Q, Kutty S Variabilities in the mortality-related resource utilisation for congenital heart disease Open Heart 2016;3(1):e000415 24 Chan T, et al Surgical volume, hospital quality, and hospitalization cost in congenital heart surgery in the United States Pediatr Cardiol 2015;36(1):205–213 25 Pasquali SK, et al Center variation in hospital costs for patients undergoing congenital heart surgery Circ Cardiovasc Qual Outcomes 2011;4(3):306–312 26 Calderón-Colmenero J, et al Congenital heart disease in Mexico: advances of the regionalization project World J Pediatr Congenit Heart Surg 2013;4(2):165–171 27 Burki S, Fraser CD Larger centers may produce better outcomes: is regionalization in congenital heart surgery a superior model? Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu 2016;19(1):10–13 28 Danton MH Larger centers produce better outcomes in pediatric cardiac surgery: regionalization is a superior model - the con prospective Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu 2016;19(1):14–24 29 Waldman JD, et al Containing costs in the treatment of congenital heart disease West J Med 1984;141(1):123–126 30 Keren R, et al Prioritization of comparative effectiveness research topics in hospital pediatrics Arch Pediatr Adolesc Med 2012;166(12):1155–1164 31 Howard F, et al Fast-track paediatric cardiac surgery: the feasibility and benefits of a protocol for uncomplicated cases Eur J Cardiothorac Surg 2010;37(1):193–196 32 Ono M, et al The clinical pathway for fast track recovery of school activities in children after minimally invasive cardiac surgery Cardiol Young 2003;13(1):44–48 33 Marianeschi SM, et al Fast-track congenital heart operations: a less invasive technique and early extubation Ann Thorac Surg 2000;69(3):872– 876 34 Lawrence EJ, et al Economic and safety ... Cardiovasc Surg Pediatr Card Surg Annu 2016;19(1):10–13 28 Danton MH Larger centers produce better outcomes in pediatric cardiac surgery: regionalization is a superior model - the con prospective Semin Thorac Cardiovasc Surg... 1984;141(1):123–126 30 Keren R, et al Prioritization of comparative effectiveness research topics in hospital pediatrics Arch Pediatr Adolesc Med 2012;166(12):1155–1164 31 Howard F, et al Fast-track paediatric cardiac

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