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Andersons pediatric cardiology 1938

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56 Turquetto ALR, Caneo LF, Agostinho DR, et al Impaired pulmonary function is an additional potential mechanism for the reduction of functional capacity in clinically stable Fontan patients Pediatr Cardiol 2017;38(5):981–990 57 Chowdhury UK, Govindappa RM, Das P, et al Histomorphometric analysis of intrapulmonary vessels in patients undergoing bidirectional Glenn shunt and total cavopulmonary connection J Thorac Cardiovasc Surg 2010;140(6):1251–1256 [e1–14] 58 Levy M, Danel C, Tamisier D, Vouhe P, Leca F Histomorphometric analysis of pulmonary vessels in single ventricle for better selection of patients for the Fontan operation J Thorac Cardiovasc Surg 2002;123(2):263–270 59 Restrepo M, Tang E, Haggerty CM, et al Energetic implications of vessel growth and flow changes over time in Fontan patients Ann Thorac Surg 2015;99(1):163–170 60 Ridderbos FJ, Wolff D, Timmer A, et al Adverse pulmonary vascular remodeling in the Fontan circulation J Heart Lung Transplant 2015;34(3):404–413 61 Goldberg DJ, French B, McBride MG, et al Impact of oral sildenafil on exercise performance in children and young adults after the fontan operation: a randomized, doubleblind, placebo-controlled, crossover trial Circulation 2011;123(11):1185–1193 62 Hebert A, Mikkelsen UR, Thilen U, et al Bosentan improves exercise capacity in adolescents and adults after Fontan operation: the TEMPO (Treatment with endothelin receptor antagonist in fontan patients, a randomized, placebo-controlled, double-blind study measuring peak oxygen consumption) study Circulation 2014;130(23):2021–2030 63 Mori H, Park IS, Yamagishi H, et al Sildenafil reduces pulmonary vascular resistance in single ventricular physiology Int J Cardiol 2016;221:122–127 64 Schuuring MJ, Vis JC, van Dijk AP, et al Impact of bosentan on exercise capacity in adults after the Fontan procedure: a randomized controlled trial Eur J Heart Fail 2013;15(6):690–698 65 Van De Bruaene A, La Gerche A, Claessen G, et al Sildenafil improves exercise hemodynamics in Fontan patients Circ Cardiovasc Imaging 2014;7(2):265–273 66 Brubaker PH, Kitzman DW Chronotropic incompetence: causes, consequences, and management Circulation 2011;123(9):1010– 1020 67 Ohuchi H, Hasegawa S, Yasuda K, et al Severely impaired cardiac autonomic nervous activity after the Fontan operation Circulation 2001;104(13):1513–1518 68 Legendre A, Guillot A, Ladouceur M, Bonnet D Usefulness of stroke volume monitoring during upright ramp incremental cycle exercise in young patients with Fontan circulation Int J Cardiol 2017;227:625–630 69 Senzaki H, Masutani S, Ishido H, et al Cardiac rest and reserve function in patients with Fontan circulation J Am Coll Cardiol 2006;47(12):2528–2535 70 Rajanbabu BB, Gangopadhyay D Sinus node dysfunction after extracardiac conduit and lateral tunnel Fontan operation: the importance of the type of prior superior cavopulmonary anastomosis World J Pediatr Congenit Heart Surg 2016;7(2):210–215 71 Ohuchi H, Yasuda K, Miyazaki A, et al Comparison of prognostic variables in children and adults with Fontan circulation Int J Cardiol 2014;173(2):277–283 72 Cohen SB, Ginde S, Bartz PJ, Earing MG Extracardiac complications in adults with congenital heart disease Congenit Heart Dis 2013;8(5):370–380

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