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Prognostic value of the duke treadmill score in asymptomatic women
Martha Gulati1, Morton F Arnsdorf, Leslee J Shaw
1Department of Preventive Medicine, Rush University Medical Center, Chicago, Illinois, USA. MGulati@nmff.org
Insights
The Duke Treadmill Score (DTS) predicts mortality in asymptomatic women, but offers no advantage over exercise capacity alone. A lower DTS indicates higher risk for death and cardiac death.
Area of Science:
- Cardiology
- Preventive Medicine
- Exercise Physiology
Background:
- The Duke Treadmill Score (DTS) is established for predicting mortality in symptomatic heart disease patients.
- Its prognostic value and comparison to exercise capacity in asymptomatic women remain uninvestigated.
Purpose of the Study:
- To evaluate the Duke Treadmill Score (DTS) as a predictor of all-cause and cardiac mortality in asymptomatic women.
- To compare the prognostic capability of DTS against exercise capacity (METs).
Main Methods:
- Prospective cohort study of 5,636 asymptomatic women.
- Symptom-limited exercise treadmill tests using Bruce protocol.
- DTS calculated from exercise duration, angina, and ST depression; exercise capacity measured in METs.
- Mortality data collected from 1992-2000, adjusted for Framingham Risk Score.
Main Results:
- Decreased DTS correlated with increased mortality risk (9% per unit increase).
- Each 1-MET increase in exercise capacity reduced mortality risk by 17%.
- DTS <5 indicated 2.2x higher risk of death and 2.5x higher risk of cardiac death.
- DTS and exercise capacity showed similar predictive accuracy (ROC curves).
Conclusions:
- The Duke Treadmill Score (DTS) is an independent predictor of mortality and cardiac mortality in asymptomatic women.
- DTS does not offer superior prognostic information compared to exercise capacity alone.
- ST-segment changes and symptoms during stress testing provide no additional prognostic value in this population.
Abstract:
The Duke Treadmill Score (DTS) has been shown to predict mortality in women who have symptomatic heart disease, but its ability to do so in asymptomatic women is unknown, as is its comparative advantage to exercise capacity. We investigated whether a decreased DTS is associated with increased mortality in a prospective cohort of 5,636 asymptomatic women. A symptom-limited exercise treadmill test using Bruce's protocol was performed at baseline. DTS was calculated using exercise time, exercise-induced angina, and ST-segment depression. Exercise capacity was measured in METs. Deaths and cause of death were identified from 1992 to 2000. After adjusting for the Framingham Risk Score, the risk of death decreased by 9% for each unit increase in DTS and by 17% for every 1-MET increase (p <0.001). Those who had a DTS <5 (moderate or high risk) had hazard ratios for death and cardiac death that were 2.2 and 2.5 times greater, respectively, than did those who had a DTS > or =5 (low risk), after adjusting for Framingham Risk Score (p <0.001). Receiver-operating characteristic curves for the DTS model and the exercise capacity model were not significantly different. In conclusion, we have demonstrated that, although the DTS is an independent predictor of mortality and cardiac mortality in asymptomatic women, it does not appear to be a better predictor than exercise capacity alone. The role of ST-segment changes and symptoms with stress testing in asymptomatic women does not provide additional prognostic information.
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