Anomalous Coronary Arteries

Angelini P. Velasco J.A. Flamm S.

Coronary anomalies: incidence, pathophysiology, and clinical relevance.

Circulation. 105: 2449-2454Kayalar N. Burkhart H.M. Dearani J.A. et al.

Congenital coronary anomalies and surgical treatment.

Congenit Heart Dis. 4: 239-251Maron B.J. Doerer J.J. Haas T.S. et al.

Sudden deaths in young competitive athletes analysis of 1866 deaths in the United States, 1980-2006.

Circulation. 119: 1085-1092

Coronary artery anomalies: an entity in search of an identity.

Circulation. 115: 1296-1305Basso C. Maron B.J. Corrado D. et al.

Clinical profile of congenital coronary artery anomalies with origin from the wrong aortic sinus leading to sudden death in young competitive athletes.

J Am Coll Cardiol. 35: 1493-1501Cheezum M. O’Gara P. Blankstein R. et al.

Anomalous aortic origin of a coronary artery from the inappropriate sinus of Valsalva.

J Am Coll Cardiol. 69https://doi.org/10.1016/j.jacc.2017.01.031

Anomalous coronary arteries.

Curr Opin Cardiol. 35: 42-51Molossi S. Martínez-Bravo L.E. Mery C.M.

Anomalous aortic origin of a coronary artery.

Methodist Debakey Cardiovasc J. 15: 111-121Mainwaring R.D. Reddy V.M. Reinhartz O. et al.

Surgical repair of anomalous aortic origin of a coronary artery.

Eur J Cardio-thoracic Surg. 46: 20-26Sachdeva S. Frommelt M.A. Mitchell M.E. et al.

Surgical unroofing of intramural anomalous aortic origin of a coronary artery in pediatric patients: single-center perspective.

J Thorac Cardiovasc Surg. 155: 1760-1768

Clinical evaluation of anomalous aortic origin of a coronary artery (AAOCA).

Congenit Heart Dis. 12: 607-609Mainwaring R.D. Murphy D.J. Rogers I.S. et al.

Surgical repair of 115 patients with anomalous aortic origin of a coronary artery from a single institution.

World J Pediatr Congenit Hear Surg. 7: 353-359Frommelt P.C. Berger S. Pelech A.N. et al.

Prospective identification of anomalous origin of left coronary artery from the right sinus of Valsalva using transthoracic echocardiography: importance of color Doppler flow mapping.

Pediatr Cardiol. 22: 327-332Lorber R. Srivastava S. Wilder T.J. et al.

Anomalous aortic origin of coronary arteries in the young echocardiographic evaluation with surgical correlation.

JACC Cardiovasc Imaging. 8: 1239-1249de Jonge G.J. van Ooijen P.M.A. Piers L.H. et al.

Visualization of anomalous coronary arteries on dual-source computed tomography.

Eur Radiol. 18: 2425-2432Kacmaz F. Ozbulbul N.I. Alyan O. et al.

Imaging of coronary artery anomalies: the role of multidetector computed tomography.

Coron Artery Dis. 19: 203-209Komatsu S. Sato Y. Ichikawa M. et al.

Anomalous coronary arteries in adults detected by multislice computed tomography: presentation of cases from multicenter registry and review of the literature.

Heart Vessels. 23: 26-34Lee S. Uppu S.C. Lytrivi I.D. et al.

Utility of multimodality imaging in the morphologic characterization of anomalous aortic origin of a coronary artery.

World J Pediatr Congenit Heart Surg. 7: 308-317Su J.T. Chung T. Muthupillai R. et al.

Usefulness of real-time navigator magnetic resonance imaging for evaluating coronary artery origins in pediatric patients.

Am J Cardiol. 95: 679-682Aljaroudi W.A. Flamm S.D. Saliba W. et al.

Role of CMR imaging in risk stratification for sudden cardiac death.

JACC Cardiovasc Imaging. 6: 392-406Brothers J.A. Whitehead K.K. Keller M.S. et al.

Cardiac MRI and CT: differentiation of normal ostium and intraseptal course from slitlike ostium and interarterial course in anomalous left coronary artery in children.

AJR Am J Roentgenol. 204: W104-W109Brothers J.A. McBride M.G. Seliem M.A. et al.

Evaluation of myocardial ischemia after surgical repair of anomalous aortic origin of a coronary artery in a series of pediatric patients.

J Am Coll Cardiol. 50: 2078-2082Van Hare G.F. Ackerman M.J. Evangelista J.-A.K. et al.

Eligibility and disqualification recommendations for competitive athletes with cardiovascular abnormalities: task force 4: congenital heart disease: a scientific statement from the American heart association and American College of Cardiology.

Circulation. 132: e281-e291Brothers J.A. Frommelt M.A. Jaquiss R.D.B. et al.

Expert consensus guidelines: anomalous aortic origin of a coronary artery.

J Thorac Cardiovasc Surg. 153: 1440-1457Doan T.T. Bonilla-ramirez C. Sachdeva S. et al.

Abstract 13007 : myocardial ischemia in anomalous aortic origin of a right coronary artery : medium-term follow-up in a large prospective cohort.

Circulation. 142: A13007Qasim A. Doan T.T. Pham T.D. et al.

Is exercise stress testing useful for risk stratification in anomalous aortic origin of a coronary artery?.

Semin Thorac Cardiovasc Surg. ()Molossi S. Agrawal H. Mery C.M. et al.

Outcomes in anomalous aortic origin of a coronary artery following a prospective standardized approach.

Circ Cardiovasc Interv. 13: e008445Mery C.M. De León L.E. Molossi S. et al.

Outcomes of surgical intervention for anomalous aortic origin of a coronary artery: a large contemporary prospective cohort study.

J Thorac Cardiovasc Surg. 155: 305-319.e4Maeda K. Schnittger I. Murphy D.J. et al.

Surgical unroofing of hemodynamically significant myocardial bridges in a pediatric population.

J Thorac Cardiovasc Surg. 156: 1618-1626Cho S.-H. Joo H.-C. Yoo K.-J. et al.

Anomalous origin of right coronary artery from left coronary sinus: surgical management and clinical result.

Thorac Cardiovasc Surg. 63: 360-366Brothers J. Carter C. McBride M. et al.

Anomalous left coronary artery origin from the opposite sinus of Valsalva: evidence of intermittent ischemia.

J Thorac Cardiovasc Surg. 140: e27-e29Paridon S.M. Alpert B.S. Boas S.R. et al.

Clinical stress testing in the pediatric age group: a statement from the American Heart Association council on cardiovascular disease in the young, committee on atherosclerosis, hypertension, and obesity in youth.

Circulation. 113: 1905-1920Pellikka P.A. Arruda-Olson A. Chaudhry F.A. et al.

Guidelines for performance, interpretation, and application of stress echocardiography in ischemic heart disease: from the American society of echocardiography.

J Am Soc Echocardiogr. 33 (): 1-41Chen M.H. Abernathey E. Lunze F. et al.

Utility of exercise stress echocardiography in pediatric cardiac transplant recipients: a single-center experience.

J Hear Lung Transpl. 31: 517-523El Assaad I. Gauvreau K. Rizwan R. et al.

Value of exercise stress echocardiography in children with hypertrophic cardiomyopathy.

J Am Soc Echocardiogr. 33: 888-894.e2Badruddin S.M. Ahmad A. Mickelson J. et al.

Supine bicycle versus post-treadmill exercise echocardiography in the detection of myocardial ischemia: a randomized single-blind crossover trial.

J Am Coll Cardiol. 33: 1485-1490

Pediatric stress echocardiography.

Pediatr Cardiol. 23: 347-357Armstrong W.F. Zoghbi W.A.

Stress echocardiography: current methodology and clinical applications.

J Am Coll Cardiol. 45: 1739-1747

Stress echocardiography in paediatrics: implications for the evaluation of anomalous aortic origin of the coronary arteries.

Cardiol Young. 25: 1524-1530Pahl E. Duffy C.E. Chaudhry F.A.

The role of stress echocardiography in children.

Echocardiography. 17: 507-512Ou P. Kutty S. Khraiche D. et al.

Acquired coronary disease in children: the role of multimodality imaging.

Pediatr Radiol. 43: 444-453Deng E.S. O’Brien S.E. Fynn-Thompson F. et al.

Recurrent sudden cardiac arrests in a child with an anomalous left coronary artery.

JACC Case Rep. 3: 1527-1530Lameijer H. Kampman M.A.M. Oudijk M.A. et al.

Ischaemic heart disease during pregnancy or post-partum: systematic review and case series.

Neth Hear J. 23: 249-257Fabozzo A. DiOrio M. Newburger J.W. et al.

Anomalous aortic origin of coronary arteries: a single-center experience.

Semin Thorac Cardiovasc Surg. 28: 791-800Mumtaz M.A. Lorber R.E. Arruda J. et al.

Surgery for anomalous aortic origin of the coronary artery.

Ann Thorac Surg. 91: 811-815Agati S. Secinaro A. Caldaroni F. et al.

Perfusion study helps in the management of the intraseptal course of an anomalous coronary artery.

World J Pediatr Congenit Hear Surg. 10: 360-363Blomjous M.S.H. Budde R.P.J. Bekker M.W.A. et al.

Clinical outcome of anomalous coronary artery with interarterial course in adults: single-center experience combined with a systematic review.

Int J Cardiol. 335: 32-39Doan T.T. Molossi S. Sachdeva S. et al.

Dobutamine stress cardiac MRI is safe and feasible in pediatric patients with anomalous aortic origin of a coronary artery (AAOCA).

Int J Cardiol. 334: 42-48Bonilla-Ramirez C. Molossi S. Sachdeva S. et al.

Outcomes in anomalous aortic origin of a coronary artery after surgical reimplantation.

J Thorac Cardiovasc Surg. 162: 1191-1199Hernandez-Pampaloni M. Allada V. Fishbein M.C. et al.

Myocardial perfusion and viability by positron emission tomography in infants and children with coronary abnormalities: correlation with echocardiography, coronary angiography, and histopathology.

J Am Coll Cardiol. 41: 618-626Greenwood J.P. Maredia N. Younger J.F. et al.

Cardiovascular magnetic resonance and single-photon emission computed tomography for diagnosis of coronary heart disease (CE-MARC): a prospective trial.

Lancet. 379: 453-460Schwitter J. Wacker C.M. Wilke N. et al.

MR-IMPACT II: magnetic Resonance Imaging for Myocardial Perfusion Assessment in Coronary artery disease Trial: perfusion-cardiac magnetic resonance vs. single-photon emission computed tomography for the detection of coronary artery disease: a comparative.

Eur Heart J. 34: 775-781Ge Y. Antiochos P. Steel K. et al.

Prognostic value of stress CMR perfusion imaging in patients with reduced left ventricular function.

JACC Cardiovasc Imaging. ()https://doi.org/10.1016/j.jcmg.2020.05.034Wahl A. Paetsch I. Gollesch A. et al.

Safety and feasibility of high-dose dobutamine-atropine stress cardiovascular magnetic resonance for diagnosis of myocardial ischaemia: experience in 1000 consecutive cases.

Eur Heart J. 25: 1230-1236Paetsch I. Jahnke C. Wahl A. et al.

Comparison of dobutamine stress magnetic resonance, adenosine stress magnetic resonance, and adenosine stress magnetic resonance perfusion.

Circulation. 110 (): 835-842Jahnke C. Nagel E. Gebker R. et al.

Prognostic value of cardiac magnetic resonance stress tests: adenosine stress perfusion and dobutamine stress wall motion imaging.

Circulation. 115: 1769-1776Gebker R. Jahnke C. Manka R. et al.

Additional value of myocardial perfusion imaging during dobutamine stress magnetic resonance for the assessment of coronary artery disease.

Circ Cardiovasc Imaging. 1: 122-130Charoenpanichkit C. Hundley W.G.

The 20 year evolution of dobutamine stress cardiovascular magnetic resonance.

J Cardiovasc Magn Reson. 12: 59Nagel E. Lehmkuhl H.B. Bocksch W. et al.

Noninvasive diagnosis of ischemia-induced wall motion abnormalities with the use of high-dose dobutamine stress MRI: comparison with dobutamine stress echocardiography.

Circulation. 99: 763-770Leong-Poi H. Rim S.-J. Le D.E. et al.

Perfusion versus function: the ischemic cascade in demand ischemia: implications of single-vessel versus multivessel stenosis.

Circulation. 105: 987-992Hauser M. Bengel F.M. Kühn A. et al.

Myocardial blood flow and flow reserve after coronary reimplantation in patients after arterial switch and Ross operation.

Circulation. 103: 1875-1880Hauser M. Kuehn A. Hess J.

Myocardial perfusion in patients with transposition of the great arteries after arterial switch operation.

Circulation. 107: 2001Secinaro A. Ntsinjana H. Tann O. et al.

Cardiovascular magnetic resonance findings in repaired anomalous left coronary artery to pulmonary artery connection (ALCAPA).

J Cardiovasc Magn Reson. 13: 1-6Prakash A. Powell A.J. Krishnamurthy R. et al.

Magnetic resonance imaging evaluation of myocardial perfusion and viability in congenital and acquired pediatric heart disease.

Am J Cardiol. 93: 657-661

Cardiac stress MRI evaluation of anomalous aortic origin of a coronary artery.

Congenit Heart Dis. 12: 627-629Pennell D.J. Sechtem U.P. Higgins C.B. et al.

Clinical indications for cardiovascular magnetic resonance (CMR): consensus Panel report.

Eur Heart J. 25: 1940-1965Paetsch I. Jahnke C. Fleck E. et al.

Current clinical applications of stress wall motion analysis with cardiac magnetic resonance imaging.

Eur J Echocardiogr. 6: 317-326Wilkinson J.C. Doan T.T. Loar R.W. et al.

Myocardial stress perfusion MRI using regadenoson: a weight-based approach in infants and young children.

Radiol Cardiothorac Imaging. 1: e190061Doan T.T. Wilkinson J.C. Loar R.W. et al.

Regadenoson stress perfusion cardiac magnetic resonance imaging in children with Kawasaki disease and coronary artery disease.

Am J Cardiol. 124: 1125-1132Strigl S. Beroukhim R. Valente A.M. et al.

Feasibility of dobutamine stress cardiovascular magnetic resonance imaging in children.

J Magn Reson Imaging. 29: 313-319Scannell C.M. Hasaneen H. Greil G. et al.

Automated quantitative stress perfusion cardiac magnetic resonance in pediatric patients.

Front Pediatr. 9: 1-8Agrawal H. Wilkinson J.C. Noel C.V. et al.

Impaired myocardial perfusion on stress CMR correlates with invasive FFR in children with coronary anomalies.

J Invasive Cardiol. 33 (): E45-E51Doan T.T. Qureshi A.M. Sachdeva S. et al.

Beta-blockade in intraseptal anomalous coronary artery with reversible myocardial ischemia.

World J Pediatr Congenit Hear Surg. 12: 145-148Doan T.T. Molossi S. Qureshi A.M. et al.

Intraseptal anomalous coronary artery with myocardial infarction: Novel surgical approach.

Ann Thorac Surg. 110: e271-e274Doan T.T. Zea-Vera R. Agrawal H. et al.

Myocardial ischemia in children with anomalous aortic origin of a coronary artery with intraseptal course.

Circ Cardiovasc Interv. 13: e008375Agrawal H. Molossi S. Alam M. et al.

Anomalous coronary arteries and myocardial bridges: risk stratification in children using Novel cardiac catheterization techniques.

Pediatr Cardiol. 38: 624-630Bigler M.R. Ashraf A. Seiler C. et al.

Hemodynamic relevance of anomalous coronary arteries originating from the opposite sinus of Valsalva-in search of the evidence.

Front Cardiovasc Med. 7https://doi.org/10.3389/fcvm.2020.591326Doan T.T. Wilkinson J.C. Agrawal H. et al.

Instantaneous wave-free ratio (iFR) correlates with fractional flow reserve (FFR) assessment of coronary artery stenoses and myocardial bridges in children.

J Invasive Cardiol. 32 (): 176-179Vatner S.F. McRitchie R.J. Braunwald E.

Effects of dobutamine on left ventricular performance, coronary dynamics, and distribution of cardiac output in conscious dogs.

J Clin Invest. 53: 1265-1273Asrress K.N. Schuster A. Ali N.F. et al.

Myocardial haemodynamic responses to dobutamine stress compared to physiological exercise during cardiac magnetic resonance imaging.

J Cardiovasc Magn Reson. 15: 15-16Bartunek J. Wijns W. Heyndrickx G.R. et al.

Effects of dobutamine on coronary stenosis physiology and morphology: comparison with intracoronary adenosine.

Circulation. 100: 243-249Escaned J. Cortés J. Flores A. et al.

Importance of diastolic fractional flow reserve and dobutamine challenge in physiologic assessment of myocardial bridging.

J Am Coll Cardiol. 42: 226-233Sen S. Escaned J. Malik I.S. et al.

Development and Validation of a new adenosine-independent index of stenosis severity from coronary wave–intensity analysis.

J Am Coll Cardiol. 59: 1392-1402Davies J.E. Sen S. Dehbi H.-M. et al.

Use of the instantaneous wave-free ratio or fractional flow reserve in PCI.

N Engl J Med. 376: 1824-1834Petraco R. van de Hoef T.P. Nijjer S. et al.

Baseline instantaneous wave-free ratio as a pressure-only estimation of Underlying coronary flow reserve.

Circ Cardiovasc Interv. 7: 492-502Götberg M. Christiansen E.H. Gudmundsdottir I.J. et al.

Instantaneous wave-free ratio versus fractional flow reserve to guide PCI.

N Engl J Med. 376: 1813-1823Doan T.T. Qureshi A.M. Gowda S. et al.

Abstract 11876: instantaneous wave-free ratio and fractional flow reserve are helpful in the assessment of anomalous aortic origin of a coronary artery.

Circulation. 144: A11876ZJoanna G. Ann M.L. Rukmini K. et al.

Physiological evaluation of anomalous aortic origin of coronary arteries and myocardial bridges.

J Am Coll Cardiol. 77: 514Aleksandric S.B. Djordjevic-Ðikic A.D. Dobric M.R. et al.

Functional assessment of myocardial bridging with conventional and diastolic fractional flow reserve: vasodilator versus inotropic provocation.

J Am Heart Assoc. 10https://doi.org/10.1161/JAHA.120.020597Angelini P. Uribe C. Monge J. et al.

Origin of the right coronary artery from the opposite sinus of Valsalva in adults: characterization by intravascular ultrasonography at baseline and after stent angioplasty.

Catheter Cardiovasc Interv. 86: 199-208Angelini P. Velasco J.A. Ott D. et al.

Anomalous coronary artery arising from the opposite sinus: descriptive features and pathophysiologic mechanisms, as documented by intravascular ultrasonography.

J Invasive Cardiol. 15 (): 507-514Driesen B.W. Warmerdam E.G. Sieswerda G.-J.T. et al.

Anomalous coronary artery originating from the opposite sinus of Valsalva (ACAOS), fractional flow reserve- and intravascular ultrasound-guided management in adult patients.

Catheter Cardiovasc Interv. 92: 68-75Heyden C.M. Brock J.E. Ratnayaka K. et al.

Intravascular ultrasound (IVUS) provides the filling for the angiogram’s crust: benefits of IVUS in pediatric interventional Cardiology.

J Invasive Cardiol. 33 (): E978-E985Stout K.K. Daniels C.J. Aboulhosn J.A. et al.

2018 AHA/ACC guideline for the management of adults with congenital heart disease: Executive summary: a report of the American College of Cardiology/American heart association task force on clinical practice guidelines.

Circulation. 139: e637-e697

Coronary artery anomalies in children: what is the risk?.

Curr Opin Pediatr. 28: 590-596

Anomalous aortic origin of a coronary artery: the gaps and the guidelines.

J Thorac Cardiovasc Surg. 153: 1462-1465Martínez-Bravo L.E. Mery C.M.

Commentary: the intercoronary pillar—not necessarily an innocent bystander.

J Thorac Cardiovasc Surg. 158: 218-219

Anomalous aortic origin of a coronary artery is not always a surgical disease.

Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu. 19: 30-36Jegatheeswaran A. Devlin P.J. Williams W.G. et al.

Outcomes after anomalous aortic origin of a coronary artery repair: a Congenital Heart Surgeons’ Society Study.

J Thorac Cardiovasc Surg. 160: 757-771.e5Law T. Dunne B. Stamp N. et al.

Surgical results and outcomes after reimplantation for the management of anomalous aortic origin of the right coronary artery.

Ann Thorac Surg. 102: 192-198Bonilla-Ramirez C. Molossi S. Caldarone C.A. et al.

Anomalous aortic origin of the coronary arteries – state of the art management and surgical techniques.

Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu. 24: 85-94Padalino M.A. Franchetti N. Hazekamp M. et al.

Surgery for anomalous aortic origin of coronary arteries: a multicentre study from the European Congenital Heart Surgeons Association.

Eur J Cardio-thoracic Surg. 56: 696-703Yerebakan C. Ozturk M. Mota L. et al.

Complete unroofing of the intramural coronary artery for anomalous aortic origin of a coronary artery: the role of commissural resuspension?.

J Thorac Cardiovasc Surg. 158: 208-217.e2

Surgical unroofing for anomalous aortic origin of coronary arteries.

Oper Tech Thorac Cardiovasc Surg. 21: 162-177Sharma V. Burkhart H.M. Dearani J.A. et al.

Surgical unroofing of anomalous aortic origin of a coronary artery: a single-center experience.

Ann Thorac Surg. 98: 941-945Frommelt P.C. Sheridan D.C. Berger S. et al.

Ten-year experience with surgical unroofing of anomalous aortic origin of a coronary artery from the opposite sinus with an interarterial course.

J Thorac Cardiovasc Surg. 142: 1046-1051Izumi K. Wilbring M. Stumpf J. et al.

Direct reimplantation as an alternative approach for treatment of anomalous aortic origin of the right coronary artery.

Ann Thorac Surg. 98: 740-742Goda M. Meuris B. Meyns B.

Right coronary translocation for anomalous origin of right coronary artery from the left coronary sinus.

Interact Cardiovasc Thorac Surg. 13: 201-202

Commentary: transection and reimplantation: Putting all your eggs in one basket?.

J Thorac Cardiovasc Surg. 162: 1201-1202

Transconal unroofing of anomalous left main coronary artery from right sinus with trans-septal course.

Ann Thorac Surg. 108: e383-e386Najm H.K. Ahmad M. Hammoud M.S. et al.

Surgical Pearls of the transconal unroofing procedure - modifications and midterm outcomes.

Ann Thorac Surg. ()https://doi.org/10.1016/j.athoracsur.2022.04.027Brotherton H. Philip R.K.

Anomalous left coronary artery from pulmonary artery (ALCAPA) in infants: a 5-year review in a defined birth cohort.

Eur J Pediatr. 167: 43-46Al-Dairy A. Rezaei Y. Pouraliakbar H. et al.

Surgical repair for anomalous origin of the right coronary artery from the pulmonary artery.

Korean Circ J. 47: 144-147Williams I.A. Gersony W.M. Hellenbrand W.E.

Anomalous right coronary artery arising from the pulmonary artery: a report of 7 cases and a review of the literature.

Am Heart J. 152: 1004.e9-17Rajbanshi B.G. Burkhart H.M. Schaff H.V. et al.

Surgical strategies for anomalous origin of coronary artery from pulmonary artery in adults.

J Thorac Cardiovasc Surg. 148: 220-224Doan T.T. Khan A. Lantin-Hermoso M.R.

Is it Just a murmur? Part 1-3.

()Bland E.F. White P.D. Garland J.

Congenital anomalies of the coronary arteries: report of an unusual case associated with cardiac hypertrophy.

Am Heart J. 8: 787-801Wesselhoeft H. Fawcett J.S. Johnson A.L.

Anomalous origin of the left coronary artery from the pulmonary trunk. Its clinical spectrum, pathology, and pathophysiology, based on a review of 140 cases with seven further cases.

Circulation. 38: 403-425Roberts W.C. Robinowitz M.

Anomalous origin of the left anterior descending coronary artery from the pulmonary trunk with origin of the right and left circumflex coronary arteries from the aorta.

Am J Cardiol. 54: 1381-1383

Major anomalies of coronary arterial origin seen in adulthood.

Am Heart J. 111: 941-963Lerberg D.B. Ogden J.A. Zuberbuhler J.R. et al.

Anomalous origin of the right coronary artery from the pulmonary artery.

Ann Thorac Surg. 27: 87-94Kudumula V.

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