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Published on: August 28, 2018
Noninvasive Coronary Risk Stratification of Elderly Patients
Leslee J. Shaw1, Douglas Miller
1St. Louis University Medical Center, Division of Cardiology, St. Louis, MO.
Insights
Stress thallium-201 myocardial perfusion imaging effectively predicts cardiac events in elderly patients. Exercise duration and perfusion defects identify high-risk individuals, while abnormal dipyridamole scans are strong indicators of future cardiac events.
Area of Science:
- Cardiology
- Nuclear Medicine
- Geriatric Medicine
Background:
- The prognostic value of stress thallium-201 myocardial perfusion imaging in elderly patients (≥70 years) is not well-defined.
- Elderly populations have a higher risk of advanced coronary artery disease and cardiac events.
Purpose of the Study:
- To evaluate the prognostic value of stress thallium-201 myocardial perfusion imaging in elderly patients.
- To assess cardiac event rates and identify predictors of cardiac events in this population.
Main Methods:
- Studied 468 elderly patients undergoing Bruce protocol exercise stress (n=120) or intravenous dipyridamole stress (n=348) with quantitative planar thallium-201 imaging.
- Followed patients for at least 2 years to determine cardiac event rates (cardiac death, myocardial infarction, coronary revascularization).
- Utilized multivariate analysis to identify predictors of cardiac events.
Main Results:
- Exercise stress subgroup: 10% cardiac event rate; survival associated with longer exercise duration and higher peak heart rate. Abnormal perfusion defects and low exercise capacity predicted events (RR=5.3).
- Dipyridamole stress subgroup: 22% cardiac event rate; normal scans had a significantly lower rate (5%). Abnormal dipyridamole scans were the strongest predictor (RR=7.2).
- Successfully stratified 64% of patients into very low (<1% annual events) and high (>15% annual events) risk subgroups.
Conclusions:
- Exercise and dipyridamole thallium-201 myocardial imaging are powerful, independent noninvasive tools for prognostication in elderly patients.
- These imaging techniques aid in stratifying risk for cardiac events in older adults.
- The findings support the use of stress thallium-201 imaging for managing cardiac risk in the elderly.
Abstract:
The prognostic value of stress thallium-201 myocardial perfusion imaging has not been defined in an elderly (at or above 70 years) population. To this end, we studied 468 consecutive elderly patients undergoing either Bruce protocol exercise stress (n equals 120) or intravenous dipyridamole stress (n equals 348) with quantitative planar thallium-201 imaging. These patients were followed for at least 2 years after testing to determine their rates of cardiac events (cardiac death, myocardial infarction, coronary revascularization). There were no stress-related complications in either subgroup. A 10% cardiac event rate (6 deaths and 6 myocardial infarctions) was observed in the exercise subgroup. Survival without cardiac events was associated with greater exercise duration (5.6Â+/-2.4 vs 3.1Â+/-2.4 min; P is less than 0.001) and peak exercise heart rate (131Â+/-18 vs 120Â+/-19 bpm; P is less than 0.05). Multivariate analysis identified the combination of peak exercise at or below Stage 1 and thallium-201 perfusion defects as significant predictors of cardiac events (relative risk equals 5.3 at 1 year). Sixty-four percent of elderly patients were successfully stratified into very low and high risk subgroups, with annual cardiac event rates of less than 1% and greater than 15%, respectively. The cardiac event rate in dipyridamole stress patients was 22% (24 myocardial infarction, 52 death, 42 revascularization). The cardiac event rate was significantly lower (5%) in 150 patients with a normal dipyridamole thallium-201 study (P is less than 0.001). Clinical univariate predictors of cardiac events were previous myocardial infarction, congestive heart failure symptoms, hypercholesterolemia and diabetes (all P equals 0.05). A fixed, reversible, or combined thallium defect pattern was correlated with cardiac death or myocardial infarction (P is less than 0.05). Multivariate analysis demonstrated that the presence of an abnormal dipyridamole thallium study was the single-best predictor of cardiac events (relative risk equals 7.2; P is less than 0.01) We conclude that exercise and dipyridamole thallium-201 myocardial imaging are powerful independent noninvasive techniques for prognostication in the elderly patient population, a group with the potential for advanced coronary artery disease and a high risk of cardiac events.
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