Skip to content
PubMed This is a summary of 67 peer-reviewed journal articles Updated

Research & Literature

Explore the leading researchers and institutions driving advances in this area, and dive into the full body of literature that informs this resource.

Explore the Literature Visualize citation networks across 67 referenced papers

Top Authors

Hyun Woo Goo
Ulsan College
Jane W. Newburger
Boston Children's Hospital
Erica Sood
Nemours Children's Health System
Bradley S. Marino
Cleveland Clinic
Amy Jo Lisanti
Children's Hospital of Philadelphia
Igor E. Konstantinov
Royal Children's Hospital
Alban‐Elouen Baruteau
Centre National de la Recherche Scientifique
Tyson A. Fricke
Royal Children's Hospital
Shabnam Peyvandi
UCSF Benioff Children's Hospital

Top Institutions

Ranked by publications Top 10 institutions
07

References

References (67)
  1. 1

    Dextro-Transposition of the Great Arteries: Long-term Sequelae of Atrial and Arterial Switch.

    Haeffele C, Lui GK

    Cardiology clinics 2015; (33(4)):543-58, viii.

    PMID: 26471819
  2. 2

    Surgical Treatment of Complete Transposition of the Great Arteries in Newborn.

    Wu QY, Li DH, Xue H, et al.

    Chinese medical journal 2016; (129(19)):2381-3 doi:10.4103/0366-6999.190663.

    PMID: 27647199
  3. 3

    Relationship between interatrial communication, ductus arteriosus, and pulmonary flow patterns in fetuses with transposition of the great arteries: prediction of neonatal desaturation.

    Vaujois L, Boucoiran I, Preuss C, et al.

    Cardiology in the young 2017; (27(7)):1280-1288 doi:10.1017/S1047951117000087.

    PMID: 28376948
  4. 4

    Outcomes after the Mustard, Senning and arterial switch operation for treatment of transposition of the great arteries in Finland: a nationwide 4-decade perspective.

    Raissadati A, Nieminen H, Sairanen H, Jokinen E

    European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery 2017; (52(3)):573-580 doi:10.1093/ejcts/ezx107.

    PMID: 28444256
  5. 5

    Cognitive outcomes and health-related quality of life in adults two decades after the arterial switch operation for transposition of the great arteries.

    Kalfa D, Kasmi L, Geronikola N, et al.

    The Journal of thoracic and cardiovascular surgery 2017; (154(3)):1028-1035 doi:10.1016/j.jtcvs.2017.03.119.

    PMID: 28476420
  6. 6

    Coronary Artery Anomalies in Patients With Transposition of the Great Arteries and Their Impact on Postoperative Outcomes.

    Moll M, Michalak KW, Sobczak-Budlewska K, et al.

    The Annals of thoracic surgery 2017; (104(5)):1620-1628 doi:10.1016/j.athoracsur.2017.03.078.

    PMID: 28648541
  7. 7

    Identification of coronary artery anatomy on dual-source cardiac computed tomography before arterial switch operation in newborns and young infants: comparison with transthoracic echocardiography.

    Goo HW

    Pediatric radiology 2018; (48(2)):176-185 doi:10.1007/s00247-017-4004-9.

    PMID: 29032431
  8. 8

    Cardiac Magnetic Resonance Myocardial Perfusion After Arterial Switch for Transposition of Great Arteries.

    Raimondi F, Aquaro GD, De Marchi D, et al.

    JACC. Cardiovascular imaging 2018; (11(5)):778-779 doi:10.1016/j.jcmg.2017.07.015.

    PMID: 29055630
  9. 9

    Cardiac Conduction System in Congenitally Corrected Transposition of the Great Arteries and Its Clinical Relevance.

    Baruteau AE, Abrams DJ, Ho SY, et al.

    Journal of the American Heart Association 2017; (6(12)) doi:10.1161/JAHA.117.007759.

    PMID: 29269355
  10. 10

    Contemporary management and outcomes in congenitally corrected transposition of the great arteries.

    Kutty S, Danford DA, Diller GP, Tutarel O

    Heart (British Cardiac Society) 2018; (104(14)):1148-1155 doi:10.1136/heartjnl-2016-311032.

    PMID: 29326110
  11. 11

    "There's no acknowledgement of what this does to people": A qualitative exploration of mental health among parents of children with critical congenital heart defects.

    Woolf-King SE, Arnold E, Weiss S, Teitel D

    Journal of clinical nursing 2018; (27(13-14)):2785-2794 doi:10.1111/jocn.14275.

    PMID: 29345005
  12. 12

    Cerebral oximetry monitoring in the management of severe hypoxaemia associated with transposition of the great arteries with balloon atrial septostomy.

    Pérez Moreno JC, Nájera Losada DC, Sanabria Carretero P, et al.

    Revista espanola de anestesiologia y reanimacion 2018; (65(5)):294-297 doi:10.1016/j.redar.2017.12.008.

    PMID: 29366495
  13. 13

    Long-term Management of the Arterial Switch Patient.

    Kirzner J, Pirmohamed A, Ginns J, Singh HS

    Current cardiology reports 2018; (20(8)):68 doi:10.1007/s11886-018-1012-9.

    PMID: 29946937
  14. 14

    Long-Term Survival After Arterial Versus Atrial Switch in d-Transposition of the Great Arteries.

    Kiener A, Kelleman M, McCracken C, et al.

    The Annals of thoracic surgery 2018; (106(6)):1827-1833 doi:10.1016/j.athoracsur.2018.06.084.

    PMID: 30172857
  15. 15

    Long-term Outcomes of the Arterial Switch Operation for d-Transposition of the Great Arteries.

    Moe TG, Bardo DME

    Progress in cardiovascular diseases 2018; (61(3-4)):360-364 doi:10.1016/j.pcad.2018.08.007.

    PMID: 30227186
  16. 16

    Correction of d-Transposition of the Great Arteries Sooner Rather Than Later.

    Rollins CK, Newburger JW

    Circulation 2019; (139(24)):2739-2741 doi:10.1161/CIRCULATIONAHA.119.040012.

    PMID: 31180749
  17. 17

    Management of the Adult with Arterial Switch.

    Breinholt JP, John S

    Methodist DeBakey cardiovascular journal 2019; (15(2)):133-137 doi:10.14797/mdcj-15-2-133.

    PMID: 31384376
  18. 18

    Can we predict potentially dangerous coronary patterns in patients with transposition of the great arteries after an arterial switch operation?

    Michalak KW, Sobczak-Budlewska K, Moll JJ, et al.

    Cardiology in the young 2019; (29(11)):1350-1355 doi:10.1017/S104795111900204X.

    PMID: 31507258
  19. 19

    Arterial switch operation for transposition of the great arteries: A single-centre 32-year experience.

    Vida VL, Zanotto L, Zanotto L, et al.

    Journal of cardiac surgery 2019; (34(11)):1154-1161 doi:10.1111/jocs.14045.

    PMID: 31508848
  20. 20

    Altered Ascending Aorta Hemodynamics in Patients After Arterial Switch Operation for Transposition of the Great Arteries.

    van der Palen RLF, Deurvorst QS, Kroft LJM, et al.

    Journal of magnetic resonance imaging : JMRI 2020; (51(4)):1105-1116 doi:10.1002/jmri.26934.

    PMID: 31591799
  21. 21

    Prevalence and Outcomes of Balloon Atrial Septostomy in Neonates With Transposition of Great Arteries.

    Hamzah M, Othman HF, Peluso AM, et al.

    Pediatric critical care medicine : a journal of the Society of Critical Care Medicine and the World Federation of Pediatric Intensive and Critical Care Societies 2020; (21(4)):324-331 doi:10.1097/PCC.0000000000002191.

    PMID: 31688810
  22. 22

    A unique indication for the senning procedure: Atrioventricular discordance with ventriculoarterial concordance.

    Hermsen JL, Okorie UC, Srinivasan S, et al.

    Journal of cardiac surgery 2020; (35(2)):444-446 doi:10.1111/jocs.14342.

    PMID: 31793037
  23. 23

    Mechanisms for heart failure in systemic right ventricle.

    Andrade L, Carazo M, Wu F, et al.

    Heart failure reviews 2020; (25(4)):599-607 doi:10.1007/s10741-019-09902-1.

    PMID: 31853794
  24. 24

    The science and art of aortic and/or pulmonary root translocation.

    Marathe SP, Talwar S

    Annals of pediatric cardiology 2020; (13(1)):56-66 doi:10.4103/apc.APC_3_19.

    PMID: 32030036
  25. 25

    The influence of coronary artery anatomy on mortality after the arterial switch operation.

    Fricke TA, Bell D, Daley M, et al.

    The Journal of thoracic and cardiovascular surgery 2020; (160(1)):191-199.e1 doi:10.1016/j.jtcvs.2019.11.146.

    PMID: 32222408
  26. 26

    Incidental congenitally corrected transposition of the great arteries (ccTGA) in an adult with suspected coronary artery disease: review on radiological features and pathophysiology.

    Sayuti KA, Azizi MYSB

    BMJ case reports 2020; (13(4)) doi:10.1136/bcr-2019-234225.

    PMID: 32327461
  27. 27

    Transposition of the Great Arteries-Are We Doing Better? Correlating Outcome to Change in Renal Function Over 2 Decades of Arterial Switch Operation.

    Shostak E, Dagan O, Hosh G, et al.

    Pediatric critical care medicine : a journal of the Society of Critical Care Medicine and the World Federation of Pediatric Intensive and Critical Care Societies 2020; (21(9)):e782-e788 doi:10.1097/PCC.0000000000002387.

    PMID: 32433443
  28. 28

    Corridor technique for coronary arteries from a single arterial sinus.

    Agematsu K, Nagashima M, Nishimura Y, Higaki T

    Asian cardiovascular & thoracic annals 2020; (28(6)):333-335 doi:10.1177/0218492320937506.

    PMID: 32551840
  29. 29

    Modification of the Senning procedure in the double-switch operation: The triangular double-door technique.

    Sung SC, Kim H, Choi KH

    Journal of cardiac surgery 2020; (35(9)):2347-2349 doi:10.1111/jocs.14763.

    PMID: 32579767
  30. 30

    Low-dose prostaglandin E1 is safe and effective for critical congenital heart disease: is it time to revisit the dosing guidelines?

    Vari D, Xiao W, Behere S, et al.

    Cardiology in the young 2021; (31(1)):63-70 doi:10.1017/S1047951120003297.

    PMID: 33140712
  31. 31

    Fetal brain growth and risk of postnatal white matter injury in critical congenital heart disease.

    Peyvandi S, Lim JM, Marini D, et al.

    The Journal of thoracic and cardiovascular surgery 2021; (162(3)):1007-1014.e1 doi:10.1016/j.jtcvs.2020.09.096.

    PMID: 33185192
  32. 32

    Parental role alteration strongly influences depressive symptoms in mothers of preoperative infants with congenital heart disease.

    Lisanti AJ, Demianczyk AC, Vaughan K, et al.

    Heart & lung : the journal of critical care 2021; (50(2)):235-241 doi:10.1016/j.hrtlng.2020.12.003.

    PMID: 33340826
  33. 33

    Performance on the ROCF at 8 Years Predicts Academic Achievement at 16 Years in Individuals with Dextro-Transposition of the Great Arteries.

    Fasano-McCarron ME, Bernstein JH, Waber DP, et al.

    Journal of the International Neuropsychological Society : JINS 2021; (27(9)):857-864 doi:10.1017/S1355617720001356.

    PMID: 33441211
  34. 34

    Prostaglandin E1 Is an Efficient Molecular Tool for Forest Leech Blood Sucking.

    Zheng F, Zhang M, Yang X, et al.

    Frontiers in veterinary science 2020; (7()):615915 doi:10.3389/fvets.2020.615915.

    PMID: 33490139
  35. 35

    Elective Non-Urgent Balloon-Atrial Septostomy in Infants with d-Transposition of the Great Arteries Does Not Eliminate the Need for PGE1 Therapy at the Time of Arterial Switch Operation.

    Zaleski KL, McMullen CL, Staffa SJ, et al.

    Pediatric cardiology 2021; (42(3)):597-605 doi:10.1007/s00246-020-02520-x.

    PMID: 33492430
  36. 36

    Lipid microsphere-coated PGE1 improves peritoneal transport and reduces inflammation in peritoneal dialysis: A randomized clinical pilot trial.

    Wang J, Tang S, Xie Y, et al.

    Seminars in dialysis 2021; (34(3)):235-244 doi:10.1111/sdi.12954.

    PMID: 33592131
  37. 37

    Critical Congenital Heart Disease in Neonates: A Review Article.

    Taksande A, Jameel PZ

    Current pediatric reviews 2021; (17(2)):120-126 doi:10.2174/1573396317666210219162515.

    PMID: 33605861
  38. 38

    Successful Modified Nikaidoh Procedure (Pivot Rotation) in a Patient with Double Outlet Right Ventricle and Pulmonary Atresia: Case Report.

    Lee JJ, Lee OJ, Yang JH, Jun TG

    Journal of chest surgery 2021; (54(5)):389-392 doi:10.5090/jcs.20.105.

    PMID: 33767022
  39. 39

    Interventions after Arterial Switch: A Single Low Case-Volume Center Experience.

    Jonas K, Jakutis V, Sudikienė R, et al.

    Medicina (Kaunas, Lithuania) 2021; (57(5)) doi:10.3390/medicina57050401.

    PMID: 33919045
  40. 40

    Congenitally corrected transposition of the great arteries (CCTGA).

    Grech N, Borg A, Sammut MA, Caruana M

    BMJ case reports 2021; (14(6)) doi:10.1136/bcr-2021-242069.

    PMID: 34108155
  41. 41

    Prognostic Implications of Progressive Systemic Ventricular Dysfunction in Congenitally Corrected Transposition of Great Arteries.

    Egbe AC, Miranda WR, Jain CC, Connolly HM

    JACC. Cardiovascular imaging 2022; (15(4)):566-574 doi:10.1016/j.jcmg.2021.09.016.

    PMID: 34801447
  42. 42

    Chordal Systolic Anterior Motion of the Mitral Valve in Dextro-Looped Transposition of the Great Vessels After Mustard Procedure.

    Pfirman K, Gleaves E, Donley C, et al.

    The American journal of case reports 2022; (23()):e933703 doi:10.12659/AJCR.933703.

    PMID: 35102129
  43. 43

    Congenitally corrected transposition with absent pulmonary valve: Hitherto unreported association.

    Sharma A, Naganur SH, Baranwal AK, Singhal M

    Journal of cardiac surgery 2022; (37(7)):2100-2102 doi:10.1111/jocs.16502.

    PMID: 35415859
  44. 44

    Mid-Term Outcomes of Primary Arterial Switch Operation for Taussig-Bing Anomaly.

    Gu M, Hu J, Dong W, et al.

    Seminars in thoracic and cardiovascular surgery 2023; (35(3)):562-571 doi:10.1053/j.semtcvs.2022.06.001.

    PMID: 35691468
  45. 45

    The Impact of Prepartum Depression and Birth Experience on Postpartum Mother-Infant Bonding: A Longitudinal Path Analysis.

    Eitenmüller P, Köhler S, Hirsch O, Christiansen H

    Frontiers in psychiatry 2022; (13()):815822 doi:10.3389/fpsyt.2022.815822.

    PMID: 35706472
  46. 46

    Coronary artery augmentation with the right subclavian artery for single coronary artery variants of dextro transposition of the great arteries treated by an arterial switch operation.

    Issa HMN, Lalani S, Drake RE, Gandhi SK

    JTCVS techniques 2022; (13()):139-143 doi:10.1016/j.xjtc.2022.02.030.

    PMID: 35711182
  47. 47

    Management Options for Congenitally Corrected Transposition: Which, When, and for Whom?

    Miller JR, Sebastian V, Eghtesady P

    Seminars in thoracic and cardiovascular surgery. Pediatric cardiac surgery annual 2022; (25()):38-47 doi:10.1053/j.pcsu.2022.04.001.

    PMID: 35835515
  48. 48

    30 years' experience with the arterial switch operation: risk of pulmonary stenosis and its impact on post-operative prognosis.

    Sobczak-Budlewska K, Łubisz M, Moll M, et al.

    Cardiology in the young 2023; (33(9)):1550-1555 doi:10.1017/S1047951122002670.

    PMID: 36040409
  49. 49

    Impact of Bedside Balloon Atrial Septostomy in Neonates with Transposition of the Great Arteries in a Neonatal Intensive Care Unit in Romania.

    Cirstoveanu C, Georgescu C, Bizubac M, et al.

    Life (Basel, Switzerland) 2023; (13(4)) doi:10.3390/life13040997.

    PMID: 37109527
  50. 50

    Neuroimaging and Neurodevelopmental Outcomes Among Individuals With Complex Congenital Heart Disease: JACC State-of-the-Art Review.

    Phillips K, Callaghan B, Rajagopalan V, et al.

    Journal of the American College of Cardiology 2023; (82(23)):2225-2245 doi:10.1016/j.jacc.2023.09.824.

    PMID: 38030353
  51. 51

    Effectiveness of Alprostadil for Ductal Patency.

    Gordon CM, Tan JT, Carr RR

    The journal of pediatric pharmacology and therapeutics : JPPT : the official journal of PPAG 2024; (29(1)):37-44 doi:10.5863/1551-6776-29.1.37.

    PMID: 38332962
  52. 52

    Neurodevelopmental Outcomes for Individuals With Congenital Heart Disease: Updates in Neuroprotection, Risk-Stratification, Evaluation, and Management: A Scientific Statement From the American Heart Association.

    Sood E, Newburger JW, Anixt JS, et al.

    Circulation 2024; (149(13)):e997-e1022 doi:10.1161/CIR.0000000000001211.

    PMID: 38385268
  53. 53

    External Validation of a Risk Score Model for Predicting Major Clinical Events in Adults After Atrial Switch.

    Albertini M, Santens B, Fusco F, et al.

    Journal of the American Heart Association 2024; (13(9)):e032174 doi:10.1161/JAHA.123.032174.

    PMID: 38686874
  54. 54

    Factors associated with posttraumatic stress and anxiety among the parents of babies admitted to neonatal care: a systematic review.

    Malouf R, Harrison S, Pilkington V, et al.

    BMC pregnancy and childbirth 2024; (24(1)):352 doi:10.1186/s12884-024-06383-5.

    PMID: 38724899
  55. 55

    How reliably does prenatal echocardiography predict urgent balloon atrial septostomy in fetuses with d-TGA?

    Gezer M, Demirci O, Yücel İK

    Journal of gynecology obstetrics and human reproduction 2024; (53(8)):102813 doi:10.1016/j.jogoh.2024.102813.

    PMID: 38857825
  56. 56

    Pulmonary, aorta, and coronary arteries post-arterial switch in transposition of great arteries: intermediate-term surveillance utilizing conventional echocardiography and cardiac multislice computed tomography.

    Rakha S, Batouty NM, ElDerie AA, Hussein A

    Italian journal of pediatrics 2024; (50(1)):122 doi:10.1186/s13052-024-01686-x.

    PMID: 38926831
  57. 57

    Rare coronary artery variants are associated with increased mortality and reinterventions following the arterial switch operation.

    Nguyen SN, Vinogradsky AV, Tao AM, et al.

    The Journal of thoracic and cardiovascular surgery 2025; (169(1)):217-228.e22 doi:10.1016/j.jtcvs.2024.07.010.

    PMID: 39004268
  58. 58

    Pathogenesis and Surgical Treatment of Dextro-Transposition of the Great Arteries (D-TGA): Part II.

    Zubrzycki M, Schramm R, Costard-Jäckle A, et al.

    Journal of clinical medicine 2024; (13(16)) doi:10.3390/jcm13164823.

    PMID: 39200964
  59. 59

    Effects of Prostaglandin E1 and Balloon Atrial Septostomy on Cerebral Blood Flow and Oxygenation in Newborns Diagnosed with Transposition of the Great Arteries.

    Cucerea M, Ognean ML, Pinzariu AC, et al.

    Biomedicines 2024; (12(9)) doi:10.3390/biomedicines12092018.

    PMID: 39335532
  60. 60

    Prenatal Detection of D-TGA and Novel Interventional Program Decrease Time to Balloon Septostomy.

    Mattia D, Coronado C, Garn B, et al.

    Pediatric cardiology 2025; (46(7)):2054-2059 doi:10.1007/s00246-024-03679-3.

    PMID: 39384586
  61. 61

    Factors associated with depressive symptoms among 1,502 couples in the immediate puerperium.

    Hernández-Santillán G, Gurpegui M, Alcamí-Pertejo M, et al.

    The International journal of social psychiatry 2025; (71(3)):509-519 doi:10.1177/00207640241296047.

    PMID: 39540405
  62. 62

    Evolving concern: Late outcomes after repair of transposition of the great arteries.

    Rocha RV, Barron DJ, Mazine A, et al.

    The Journal of thoracic and cardiovascular surgery 2025; (169(5)):1296-1303.e2 doi:10.1016/j.jtcvs.2024.11.032.

    PMID: 39617321
  63. 63

    Balloon atrioseptostomy for transposition of the great arteries in Europe: characteristics and outcomes.

    Lucron H, Malekzadeh-Milani SG, de Montclos TP, et al.

    Revista espanola de cardiologia (English ed.) 2025; (78(8)):694-706 doi:10.1016/j.rec.2024.12.011.

    PMID: 39800140
  64. 64

    Longer-term experiences of families of children with dextro-transposition of the great arteries: a qualitative study.

    Eagleson KJ, Chin TI, Larmar S, et al.

    Pediatric research 2025; doi:10.1038/s41390-025-04201-y.

    PMID: 40676260
  65. 65

    Evaluation of Operated Dextro-Transposition of Great Arteries Patients in Follow-Up: Comparison of Transthoracic Echocardiography and Cardiac CT Angiography.

    Güzelbağ AN, Özyılmaz İ, Kangel D, et al.

    Diagnostics (Basel, Switzerland) 2025; (15(19)) doi:10.3390/diagnostics15192419.

    PMID: 41095637
  66. 66

    Neoaortic outcomes after the arterial switch operation: A systematic review and meta-analysis.

    Negm S, Mahmoud AB, Desnous B, et al.

    Archives of cardiovascular diseases 2026; (119(3)):233-243 doi:10.1016/j.acvd.2025.08.013.

    PMID: 41193284
  67. 67

    Arterial Switch Using an Autologous Aortic Sinus Tube With the Lecompte Maneuver.

    Kim JY, Sollie ZW, Kavarana M

    Annals of thoracic surgery short reports 2025; (3(4)):1087-1089 doi:10.1016/j.atssr.2025.04.002.

    PMID: 41425407