Adenosine in myocardial perfusion imaging using positron emission tomography
Because of its unique ability to demonstrate the metabolic consequences of myocardial ischemia, positron emission tomography (PET) is extremely valuable in assessing myocardial viability. PET imaging can identify the myocardial segments that are likely to improve after revascularization and may be m...
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Published in | The American heart journal Vol. 122; no. 1; pp. 293 - 301 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
New York, NY
Mosby, Inc
01.07.1991
Elsevier |
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Abstract | Because of its unique ability to demonstrate the metabolic consequences of myocardial ischemia, positron emission tomography (PET) is extremely valuable in assessing myocardial viability. PET imaging can identify the myocardial segments that are likely to improve after revascularization and may be more sensitive and specific for the detection of coronary artery disease compared with thallium perfusion imaging. Adenosine has several advantages over dipyridamole as a pharmacologic stress agent for use with PET. It produces maximal vasodilation in a significantly greater percentage of patients, is a more potent coronary vasodilator, and its very short half-life may be ideal for use with the very short half-life radioactive tracers used in PET. When combined with metabolic studies, adenosine may be useful for the assessment of patients who received thrombolytic therapy for an acute myocardial infarction. |
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AbstractList | Because of its unique ability to demonstrate the metabolic consequences of myocardial ischemia, positron emission tomography (PET) is extremely valuable in assessing myocardial viability. PET imaging can identify the myocardial segments that are likely to improve after revascularization and may be more sensitive and specific for the detection of coronary artery disease compared with thallium perfusion imaging. Adenosine has several advantages over dipyridamole as a pharmacologic stress agent for use with PET. It produces maximal vasodilation in a significantly greater percentage of patients, is a more potent coronary vasodilator, and its very short half-life may be ideal for use with the very short half-life radioactive tracers used in PET. When combined with metabolic studies, adenosine may be useful for the assessment of patients who received thrombolytic therapy for an acute myocardial infarction. |
Author | Gupta, Naresh C. Shiue, Chyng Y. Frick, Mathis P. Mohiuddin, Syed Esterbrooks, Dennis Hilleman, Dan Sunderland, John |
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Cites_doi | 10.1016/S0735-1097(86)80420-X 10.1161/01.CIR.79.4.825 10.1016/0002-9149(88)90212-3 10.1016/S0735-1097(87)80198-5 10.1016/S0735-1097(86)80336-9 10.1016/0735-1097(89)90105-8 10.1016/S0002-9149(79)80005-3 10.1016/0735-1097(90)90347-R 10.1148/radiology.172.1.2787037 10.1148/radiology.173.3.2813784 10.1056/NEJM198604033141405 10.1016/0735-1097(90)90186-S 10.1016/0002-9149(89)90832-1 |
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Keywords | Radionuclide study Human Adenosine Myocardium Cardiovascular disease Coronary heart disease Positron emission tomography |
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SubjectTerms | Adenosine - adverse effects Adenosine - pharmacology Adult Aged Biological and medical sciences Cardiology. Vascular system Coronary Disease - diagnostic imaging Coronary heart disease Female Heart Hemodynamics - drug effects Humans Male Medical sciences Middle Aged Myocardial Infarction - diagnostic imaging Myocardial Infarction - metabolism Tomography, Emission-Computed - methods |
Title | Adenosine in myocardial perfusion imaging using positron emission tomography |
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