Have a personal or library account? Click to login
Cardiac Magnetic Resonance and Myocardial Viability: Why Is It so Important? Cover

Cardiac Magnetic Resonance and Myocardial Viability: Why Is It so Important?

Open Access
|Nov 2017

References

  1. 1. Florian A, Jurcut R, Ginghina C, Bogaret J. Cardiac Magnetic Resonance Imaging in Ischemic Heart Disease – A Clinical Review. J Med Life. 2011;4:330-345.
  2. 2. Saeed M, Van TA, Krug R, Hetts SW, Wilson MW. Cardiac MR imaging: current status and future direction. Cardiovasc Diagn Ther. 2015;5:290-310.
  3. 3. Partington SL, Kwong RY, Dorbala S. Multimodality imaging in the assessment of myocardial viability. Heart Fail Rev. 2011;16:381-395.10.1007/s10741-010-9201-7
  4. 4. Bhat A, Gan GC, Tan TC, Hsu C, Denniss AR. Myocardial Viability: From Proof of Concept to Clinical Practice. Cardiol Res Pract. 2016;2016:1020818.10.1155/2016/1020818
  5. 5. Kim EK, Song YB, Chang SA, et al. Is cardiac magnetic resonance necessary for prediction of left ventricular remodeling in patients with reperfused ST-segment elevation myocardial infarction? Int J Cardiovasc Imaging. 2017. doi: 10.1007/s10554-017-1206-z. [Epub ahead of print]10.1007/s10554-017-1206-z.[Epubaheadprint
  6. 6. Richardson WJ, Clarke SA, Quinn TA, Holmes JW. Physiological Implications of Myocardial Scar Structure. Compr Physiol. 2016;5:1877-1909.
  7. 7. Mester A, Oltean-Péter B, Rodean I, et al. Magnetic Resonance Imaging of Myocardial Function Following Intracoronary and Intramyocardial Stem Cell Injection. Journal of Interdisciplinary Medicine. 2017;2:112-116.10.1515/jim-2017-0053
  8. 8. Bax JJ, Delgado V. Myocardial viability as integral part of the diagnostic and therapeutic approach to ischemic heart failure. J Nucl Cardiol. 2015;22:229-245.10.1007/s12350-015-0096-5
  9. 9. Saeed M, Liu H, Liang CH, Wilson MW. Magnetic resonance imaging for characterizing myocardial diseases. Int J Cardiovasc Imaging. 2017. doi: 10.1007/s10554-017-1127-x. [Epub ahead of print]10.1007/s10554-017-1127-x.[Epubaheadprint
  10. 10. Buckert D, Kelle S, Buss S, et al. Left Ventricular Ejection Fraction and Presence of Myocardial Necrosis Assessed by Cardiac Magnetic Resonance Imaging Correctly Risk Stratify Patients With Stable Coronary Artery Disease: A Multi-Center All-Comers Trial. Clin Res Cardiol. 2016;106:219-229.10.1007/s00392-016-1042-527738810
  11. 11. Hassanein AS, Khalifa AM, Ibrahim el-SH. Cine Viability Magnetic Resonance Imaging of the Heart Without Increased Scan Time. Magn Reson Imaging. 2015;34:183-190.10.1016/j.mri.2015.10.03026528793
  12. 12. Souto ALM, Souto RM, Teixeira ICR, Nacif MS. Myocardial Viability on Cardiac Magnetic Resonance. Arq Bras Cardiol. 2017;108:458-469.10.5935/abc.20170056544489328591322
  13. 13. Masci PG, Bogaert J. Post myocardial infarction of the left ventricle: the course ahead seen by cardiac MRI. Cardiovasc Diagn Ther. 2012;2:113-127.
  14. 14. Shabana A, El-Menyar A. Myocardial Viability: What We Knew and What Is New. Cardiol Res Pract. 2012;2012:607486.10.1155/2012/607486344085422988540
  15. 15. Bordi L, Kovacs I, Bajka B, et al. New Imaging-based Tools for the Assessment of Ventricular Function in Ischemic Heart Diseases. Journal of Interdisciplinary Medicine. 2017;2:31-35.10.1515/jim-2017-0020
  16. 16. West AM, Kramer CM. Cardiovascular Magnetic Resonance Imaging of Myocardial Infarction, Viability, and Cardiomyopathies. Curr Probl Cardiol. 2010;35:176-220.10.1016/j.cpcardiol.2009.12.002
  17. 17. Perrone-Filardi P, Bacharach SL, Dilsizian V, et al. Metabolic evidence of viable myocardium in regions with reduced wall thickness and absent wall thickening in patients with chronic ischemic left ventricular dysfunction. J Am Coll Cardiol. 1992;20:161-168.10.1016/0735-1097(92)90153-E
  18. 18. Bove CM, DiMaria JM, Voros S, Conaway MR, Kramer CM. Dobutamine response and myocardial infarct transmurality: functional improvement after coronary artery bypass grafting—initial experience. Radiology. 2006;240:835-841.10.1148/radiol.240305115016926330
  19. 19. Health Quality Ontario. Magnetic resonance imaging (MRI) for the assessment of myocardial viability: an evidence-based analysis. Ont Health Technol Assess Ser. 2010;10:1-45.
  20. 20. Arai AE. The cardiac magnetic resonance (CMR) approach to assessing myocardial viability. J Nucl Cardiol. 2011;18:1095-1102.10.1007/s12350-011-9441-5350138521882082
  21. 21. Schinkel AF, Poldermans D, Elhendy A, Bax JJ. Assessment of myocardial viability in patients with heart failure. J Nucl Med. 2007;48:1135-1146.10.2967/jnumed.106.03885117574986
  22. 22. Kim RJ, Albert TSE, Wible JH, et al. Performance of delayed-enhancement myocardial resonance imaging with gadoversetamide contrast for the detection and assessment of myocardial infarction. Circulation. 2008;117:629-637.10.1161/CIRCULATIONAHA.107.72326218212288
  23. 23. Jimenez JL, Crean AM, Wintersperger BJ. Late gadolinium enhancement imaging in assessment of myocardial viability: techniques and clinical applications. Radiol Clin North Am. 2015;53:397-411.10.1016/j.rcl.2014.11.00425727002
  24. 24. Ahmed N, Carrick D, Layland J, Oldroyd KG, Berry C. The role of cardiac magnetic resonance imaging (MRI) in acute myocardial infarction (AMI). Heart Lung Circ. 2013;22:243-255.10.1016/j.hlc.2012.11.01623279917
  25. 25. Rubenstein JC, Lee DC, Wu E, et al. A comparison of cardiac magnetic resonance imaging peri-infarct border zone quantification strategies for the prediction of ventricular tachyarrhythmia inducibility. Cardiol J. 2013;20:68-77.10.5603/CJ.2013.001123558813
  26. 26. Ortiz-Perez JT, Rodriguez J, Meyers SN, Lee DC, Davidson C, Wu E. Correspondence between the 17-segment model and coronary arterial imaging using contrast-enhanced cardiac magnetic resonance imaging. J Am Coll Cardiol Img. 2008;1:282-293.10.1016/j.jcmg.2008.01.01419356440
  27. 27. Lund GK, Stork A, Saeed M, et al. Acute myocardial infarction: evaluation with first-pass enhancement and delayed enhancement MR imaging compared with 201Tl SPECT imaging. Radiology. 2004;232:49-57.10.1148/radiol.232103112715166320
  28. 28. Saeed M, Hetts SW, Jablonowski R, Wilson MW. Magnetic resonance imaging and multi-detector computed tomography assessment of extracellular compartment in ischemic and non-ischemic myocardial pathologies. World J Cardiol. 2014;6:1192-1208.10.4330/wjc.v6.i11.1192424461625429331
  29. 29. Bodi V, Sanchis J, Nunez J, et al. Prognostic value of a comprehensive cardiac magnetic resonance assessment soon after a first ST-segment elevation myocardial infarction. J Am Coll Cardiol Img. 2009;2:835-842.10.1016/j.jcmg.2009.03.01119608133
  30. 30. Wu E, Ortiz JT, Tejedor P, et al. Infarct size by contrast enhanced cardiac magnetic resonance is a stronger predictor of outcomes than left ventricular ejection fraction or end-systolic volume index: prospective cohort study. Heart. 2008;94:730-736.10.1136/hrt.2007.12262218070953
  31. 31. Buckert D, Dewes P, Walcher T, et al. Intermediate-term prognostic value of reversible perfusion deficit diagnosed by adenosine CMR: a prospective follow-up study in a consecutive patient population. JACC Cardiovasc Imaging. 2013;6:56-63.10.1016/j.jcmg.2012.08.01123328562
  32. 32. Zemrak F, Petersen SE. Late gadolinium enhancement CMR predicts adverse cardiovascular outcomes and mortality in patients with coronary artery disease: systematic review and meta-analysis. Prog Cardiovasc Dis. 2011;54:215-229.10.1016/j.pcad.2011.07.00322014489
  33. 33. Rizzi PB, Nacif M, Volpe GJ, et al. Quantification of myocardial scar assessed by late gadolinium enhancement CMR in the multi-ethnics study of atherosclerosis: comparisons of 7 different methods. J Cardiovasc Magn Reson. 2013;15:O49.10.1186/1532-429X-15-S1-O49
  34. 34. Reimer KA, Jennings RB. The changing anatomic reference base of evolving myocardial infarction. Underestimation of myocardial collateral blood flow and overestimation of experimental anatomic infarct size due to tissue edema, hemorrhage and acute inflammation. Circulation. 1979;60:866-876.10.1161/01.CIR.60.4.866
  35. 35. Choi CJ, Haji-Momenian S, DiMaria JM, et al. Infarct involution and improved function during healing of acute myocardial infarction: the role of microvascular obstruction. J Cardiovasc Magn Reson. 2004;6:917-925.10.1081/JCMR-200036206
  36. 36. Wu KC, Kim RJ, Bleumke DA, et al. Quantification and time course of microvascular obstruction by contrast-enhanced echocardiography and magnetic resonance imaging following acute myocardial infarction and reperfusion. J Am Coll Cardiol. 1998;32:1756-1764.10.1016/S0735-1097(98)00429-X
  37. 37. Lima JAC, Judd RM, Bazille A, et al. Regional Heterogeneity of Human Myocardial Infarcts Demonstrated by Contrast-Enhanced MRI. Circulation. 1995;92:1117-1125.10.1161/01.CIR.92.5.1117
  38. 38. Rogers WJ Jr, Kramer CM, Geskin G, et al. Early contrast-enhanced MRI predicts late functional recovery after reperfused myocardial infarction. Circulation. 1999;99:744-750.10.1161/01.CIR.99.6.744
  39. 39. Kramer CM. The prognostic significance of microvascular obstruction after myocardial infarction as defined by cardiac magnetic resonance. Eur Heart J. 2005;26:532-533.10.1093/eurheartj/ehi15615713691
  40. 40. Tarantini G, Cacciavillani L, Corbetti F, et al. Duration of ischemia is a major determinant of transmurality and severe microvascular obstruction after primary angioplasty: a study performed with contrast-enhanced magnetic resonance. J Am Coll Cardiol. 2005;46:1229-1235.10.1016/j.jacc.2005.06.05416198836
  41. 41. Deneke T, Muller KM, Lemke B, et al. Human histopathology of electroanatomic mapping after cooled-tip radiofrequency ablation to treat ventricular tachycardia in remote myocardial infarction. J Cardiovasc Electrophysiol. 2005;16:1246-1251.10.1111/j.1540-8167.2005.40826.x16302912
  42. 42. Roes SD, Kelle S, Kaandorp TA, et al. Comparison of myocardial infarct size assessed with contrast-enhanced magnetic resonance imaging and left ventricular function and volumes to predict mortality in patients with healed myocardial infarction. Am J Cardiol. 2007;100:930-936.1782637210.1016/j.amjcard.2007.04.02917826372
  43. 43. Wu KC, Zerhouni EA, Judd RM, et al. Prognostic significance of microvascular obstruction by magnetic resonance imaging in patients with acute myocardial infarction. Circulation. 1998;97:765-772.10.1161/01.CIR.97.8.7659498540
  44. 44. Friedrich MG, Abdel-Aty H, Taylor A, et al. The salvaged area at risk in reperfused acute myocardial infarction as visualized by cardiovascular magnetic resonance. J Am Coll Cardiol. 2008;51:1581-1587.10.1016/j.jacc.2008.01.01918420102
  45. 45. Abdel-Aty H, Zagrosek A, Schulz-Menger J, et al. Delayed enhancement and T2-weighted cardiovascular magnetic resonance imaging differentiate acute from chronic myocardial infarction. Circulation. 2004;109:2411-2416.10.1161/01.CIR.0000127428.10985.C615123531
  46. 46. Dall’Armellina E, Piechnik SK, Ferreira VM, et al. Cardiovascular magnetic resonance by non-contrast T1-mapping allows assessment of severity of injury in acute myocardial infarction. J Cardiovasc Magn Reson. 2012;14:15.10.1186/1532-429X-14-15331286922309452
  47. 47. Ugander M, Oki AJ, Hsu LY, et al. Extracellular volume imaging by magnetic resonance imaging provides insights into overt and subclinical myocardial pathology. Eur Heart J. 2012;33:1268-1278.10.1093/eurheartj/ehr481335098522279111
  48. 48. West AM, Kramer CM. Cardiovascular Magnetic Resonance Imaging of Myocardial Infarction, Viability, and Cardiomyopathies. Curr Probl Cardiol. 2010;35:176-220.10.1016/j.cpcardiol.2009.12.002286135920197150
  49. 49. Nagel E, Lehmkuhl HB, 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. 1999;99:763-770.10.1161/01.CIR.99.6.7639989961
  50. 50. Hundley WG, Hamilton CA, Clarke GD, et al. Visualization and functional assessment of proximal and middle left anterior descending coronary stenoses in humans with magnetic resonance imaging. Circulation. 1999;99:3248-3254.10.1161/01.CIR.99.25.3248
  51. 51. Morariu M, Bordi L, Opincariu D, Ratiu M, Condrea S, Benedek A, Benedek T. New Developments in Magnetic Resonance Imaging of Myocardial Diseases – Technical Aspects and Clinical Applications. Journal of Interdisciplinary Medicine. 2017;2:17-21.10.1515/jim-2017-0022
  52. 52. Barkhausen J, Hunold P, Jochims M, Debatin JF. Imaging of myocardial perfusion with magnetic resonance. J Magn Reson Imaging. 2004;19:750-757.10.1002/jmri.2007315170781
DOI: https://doi.org/10.1515/jim-2017-0063 | Journal eISSN: 2501-8132 | Journal ISSN: 2501-5974
Language: English
Page range: 228 - 234
Submitted on: Jun 16, 2017
|
Accepted on: Jul 27, 2017
|
Published on: Nov 8, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 Ioana Rodean, Elena Beganu, Roxana Hodas, Elisabeta Himcinschi, Lehel Bordi, Theodora Benedek, published by Asociatia Transilvana de Terapie Transvasculara si Transplant KARDIOMED
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.