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Andersons pediatric cardiology 1106

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Cardiovasc Interv 2015;86:249–257 212 Santoro G, Gaio G, Capozzi G, et al Fate of hypoplastic pulmonary arteries after arterial duct stenting in congenital heart disease with Ductdependent pulmonary circulation JACC Cardiovasc Interv 2015;8:1626–1632 213 Alwi M, Choo KK, Latiff HA, et al Initial results and medium-term follow-up of stent implantation of patent ductus arteriosus in ductdependent pulmonary circulation J Am Coll Cardiol 2004;44:438–445 214 Lee KJ, Hinek A, Chaturvedi RR, et al Rapamycin-eluting stents in the arterial duct: experimental observations in the pig model Circulation 2009;119(15):2078–2085 215 Lee KJ, Seto W, Benson L, Chaturvedi RR Pharmacokinetics of sirolimus-eluting stents implanted in the neonatal arterial duct Circ Cardiovasc Interv 2015;8:e002233 216 Schubert S, Peters B, Berger F Interventional reopening of a PDA for reverse potts shunt circulation after ADO I implantation in a child Catheter Cardiovasc Interv 2017;89:E133– E136 217 Latus H, Apitz C, Moysich A, et al Creation of a functional potts shunt by stenting the persistent arterial duct in newborns and infants with suprasystemic pulmonary hypertension of various etiologies J Heart Lung Transplant 2014;33:542–546 218 Boudjemline Y, Patel M, Malekzadeh-Milani S, et al Patent ductus arteriosus stenting (transcatheter potts shunt) for palliation of suprasystemic pulmonary arterial hypertension: a case series Circ Cardiovasc Interv 2013;6:e18–e20 219 Mason CA, Bigras JL, O'Blenes SB, et al Gene transfer in utero biologically engineers a patent ductus arteriosus in lambs by arresting fibronectin-dependent neointimal formation Nat Med 1991;5:176–182 220 Rajotte D, Arap W, Hagedorn M, et al Molecular heterogeneity of the vascular endothelium revealed by in vivo phage display J Clin Invest 1998;102:430–437 221 Humpl T, Zaidi SH, Coe JY, et al Gene transfer of prostaglandin synthase maintains patency of the newborn lamb arterial duct Pediatr Res 2005;58:976–980 42

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