1 |
Amark KM, Karamlou T, O'Carroll A, et al. Independent factors associated with mortality, reintervention, and achievement of complete repair in children with pulmonary atresia with ventricular septal defect[J]. J Am Coll Cardiol, 2006, 47(7): 1448-1456.
|
2 |
Tchervenkov CI, Roy N. Congenital heart surgery nomenclature and database project: pulmonary atresia-ventricular septal defect[J]. Ann Thorac Surg, 2000, 69(4): S97-S105.
|
3 |
Rabinovitch M, Herrera-Deleon V, Castaneda AR, et al. Growth and development of the pulmonary vascular bed in patients with tetralogy of Fallot with or without pulmonary atresia[J]. Circulation, 1981, 64(6): 1234-1249.
|
4 |
Adamson GT, McElhinney DB, Zhang Y, et al. Angiographic anatomy of major aortopulmonary collateral arteries and association with early surgical outcomes in tetralogy of Fallot[J]. J Am Heart Assoc, 2020, 9(24): e017981.
|
5 |
Gottschalk I, Strizek B, Jehle C, et al. Prenatal diagnosis and postnatal outcome of fetuses with pulmonary atresia and ventricular septal defect[J]. Ultraschall Med, 2020, 41(5): 514-525.
|
6 |
Malhotra SP, Hanley FL. Surgical management of pulmonary atresia with ventricular septal defect and major aortopulmonary collaterals: a protocol-based approach[J]. Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, 2009: 145-151.
|
7 |
Blackstone EH, Shimazaki Y, Maehara T, et al. Prediction of severe obstruction to right ventricular outflow after repair of tetralogy of Fallot and pulmonary atresia[J]. J Thorac Cardiovasc Surg, 1988, 96(2): 288-293.
|
8 |
Metras D, Chetaille P, Kreitmann B, et al. Pulmonary atresia with ventricular septal defect, extremely hypoplastic pulmonary arteries, major aorto-pulmonary collaterals[J]. Eur J Cardiothorac Surg, 2001, 20(3): 590-596; discussion 596-597.
|
9 |
Carotti A, Albanese SB, Minniti G, et al. Increasing experience with integrated approach to pulmonary atresia with ventricular septal defect and major aortopulmonary collateral arteries[J]. Eur J Cardiothorac Surg, 2003, 23(5): 719-727.
|
10 |
Mainwaring RD, Patrick WL, Roth SJ, et al. Surgical algorithm and results for repair of pulmonary atresia with ventricular septal defect and major aortopulmonary collaterals[J]. J Thorac Cardiovasc Surg, 2018, 156(3): 1194-1204.
|
11 |
Bauser-Heaton H, Borquez A, Han B, et al. Programmatic approach to management of tetralogy of Fallot with major aortopulmonary collateral arteries: a 15-year experience with 458 patients[J]. Circ Cardiovasc Interv, 2017, 10(4): e004952.
|
12 |
Carrillo SA, Mainwaring RD, Patrick WL, et al. Surgical repair of pulmonary atresia with ventricular septal defect and major aortopulmonary collaterals with absent intrapericardial pulmonary arteries[J]. Ann Thorac Surg, 2015, 100(2): 606-614.
|
13 |
Davies B, Mussa S, Davies P, et al. Unifocalization of major aortopulmonary collateral arteries in pulmonary atresia with ventricular septal defect is essential to achieve excellent outcomes irrespective of native pulmonary artery morphology[J]. J Thorac Cardiovasc Surg, 2009, 138(6): 1269-1275.e1.
|
14 |
Brizard CP, Liava'a M, d'Udekem Y. Pulmonary atresia, VSD and Mapcas: repair without unifocalization[J]. Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, 2009: 139-144.
|
15 |
Hobbes B, d'Udekem Y, Zannino D, et al. Determinants of adverse outcomes after systemic-to-pulmonary shunts in biventricular circulation[J]. Ann Thorac Surg, 2017, 104(4): 1365-1370.
|
16 |
陈欣欣, 李守军. 先天性心脏病外科治疗中国专家共识(三): 肺动脉闭锁合并室间隔缺损[J]. 中国胸心血管外科临床杂志, 2020, 27(4): 401-407.
|
17 |
张永辉, 花中东, 王旭, 等. 不同姑息性手术对肺动脉闭锁合并室间隔缺损患者肺血管发育促进作用的比较[J]. 中国循环杂志, 2018, 33(11): 1108-1112.
|
18 |
Barozzi L, Brizard CP, Galati JC, et al. Side-to-side aorto-GoreTex central shunt warrants central shunt patency and pulmonary arteries growth[J]. Ann Thorac Surg, 2011, 92(4): 1476-1482.
|
19 |
Bauser-Heaton H, Ma M, McElhinney DB, et al. Outcomes after aortopulmonary window for hypoplastic pulmonary arteries and dual-supply collaterals[J]. Ann Thorac Surg, 2019, 108(3): 820-827.
|
20 |
Lee WY, Kang SR, Im YM, et al. Surgical options for pulmonary atresia with ventricular septal defect in neonates and young infants[J]. Pediatr Cardiol, 2020, 41(5): 1012-1020.
|
21 |
Do N, Hill KD, Wallace AS, et al. Shunt failure-risk factors and outcomes: an analysis of the society of thoracic surgeons congenital heart surgery database[J]. Ann Thorac Surg, 2018, 105(3): 857-864.
|
22 |
Barron DJ, Botha P. Approaches to pulmonary atresia with major aortopulmonary collateral arteries[J]. Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, 2018, 21: 64-74.
|
23 |
Jia Q, Cen J, Zhuang J, et al. Significant survival advantage of high pulmonary vein index and the presence of native pulmonary artery in pulmonary atresia with ventricular septal defect and major aortopulmonary collateral arteries: results from preoperative computed tomography angiography[J]. Eur J Cardiothorac Surg, 2017, 52(2): 225-232.
|
24 |
Dragulescu A, Kammache I, Fouilloux V, et al. Long-term results of pulmonary artery rehabilitation in patients with pulmonary atresia, ventricular septal defect, pulmonary artery hypoplasia, and major aortopulmonary collaterals[J]. J Thorac Cardiovasc Surg, 2011, 142(6): 1374-1380.
|
25 |
Hibino N, He D, Yuan F, et al. Growth of diminutive central pulmonary arteries after right ventricle to pulmonary artery homograft implantation[J]. Ann Thorac Surg, 2014, 97(6): 2129-2133.
|
26 |
Fan F, Peng B, Liu Z, et al. Systemic-to-pulmonary shunt vs right ventricle to pulmonary artery connection in the treatment of pulmonary atresia, ventricular septal defect, and major aortopulmonary collateral arteries[J]. J Card Surg, 2020, 35(2): 345-351.
|
27 |
Soquet J, Liava'a M, Eastaugh L, et al. Achievements and limitations of a strategy of rehabilitation of native pulmonary vessels in pulmonary atresia, ventricular septal defect, and major aortopulmonary collateral arteries[J]. Ann Thorac Surg, 2017, 103(5): 1519-1526.
|
28 |
Carotti A, Albanese SB, Filippelli S, et al. Determinants of outcome after surgical treatment of pulmonary atresia with ventricular septal defect and major aortopulmonary collateral arteries[J]. J Thorac Cardiovasc Surg, 2010, 140(5): 1092-1103.
|
29 |
Reddy VM, Petrossian E, McElhinney DB, et al. One-stage complete unifocalization in infants: when should the ventricular septal defect be closed? [J]. J Thorac Cardiovasc Surg, 1997, 113(5): 858-866; discussion 866-868.
|
30 |
Marshall AC, Love BA, Lang P, et al. Staged repair of tetralogy of Fallot and diminutive pulmonary arteries with a fenestrated ventricular septal defect patch[J]. J Thorac Cardiovasc Surg, 2003, 126(5): 1427-1433.
|
31 |
Zhu JQ, Meza J, Kato A, et al. Pulmonary flow study predicts survival in pulmonary atresia with ventricular septal defect and major aortopulmonary collateral arteries[J]. J Thorac Cardiovasc Surg, 2016, 152(6): 1494-1503.e1.
|
32 |
Honjo O, Al-Radi OO, MacDonald C, et al. The functional intraoperative pulmonary blood flow study is a more sensitive predictor than preoperative anatomy for right ventricular pressure and physiologic tolerance of ventricular septal defect closure after complete unifocalization in patients with pulmonary atresia, ventricular septal defect, and major aortopulmonary collaterals[J]. Circulation, 2009, 120(11): S46-S52.
|
33 |
Brawn WJ, Jones T, Davies B, et al. How we manage patients with major aorta pulmonary collaterals[J]. Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, 2009, 12(1): 152-157.
|