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Published on: February 10, 2013
The Influence of Cardiac Risk Factor Burden on Cardiac Stress Test Outcomes
Jon W Schrock1, Morgan Li1, Chidubem Orazulike1
1Department of Emergency Medicine, MetroHealth Medical Center, Affiliated with Case Western Reserve University School of Medicine, USA.
Insights
The number of cardiac risk factors alone does not reliably predict cardiac stress test outcomes. Clinical judgment remains crucial for deciding on stress testing for coronary artery disease (CAD).
Area of Science:
- Cardiology
- Diagnostic Imaging
- Health Outcomes Research
Background:
- Chest pain is a common reason for observation unit admissions.
- Cardiac stress testing is frequently used to assess for coronary artery disease (CAD).
- Current decisions for stress testing rely on clinical judgment.
Purpose of the Study:
- To evaluate the impact of cardiac risk factor burden on stress test outcomes.
- To determine if the number of risk factors influences diagnostic value.
Main Methods:
- Retrospective observational cohort study of 4026 patients undergoing stress testing.
- Analysis of cardiac risk factors, age, and known CAD.
- Multivariate regression and ROC curve analysis to assess diagnostic value.
Main Results:
- Hospitalized patients showed a higher likelihood of positive stress test outcomes (OR 1.41).
- Increased cardiac risk factors correlated with higher odds of positive tests.
- However, simply summing risk factors did not significantly improve diagnostic value.
Conclusions:
- The study does not support using the number of cardiac risk factors alone to guide stress test decisions.
- Clinical assessment remains essential for risk stratification in patients with chest pain.
Background:
Chest pain is the most common admission diagnosis for observation unit patients. These patients often undergo cardiac stress testing to further risk stratify for coronary artery disease (CAD). The decision of whom to stress is currently based on clinical judgment. We sought to determine the influence of cardiac risk factor burden on cardiac stress test outcome for patients tested from an observation unit, inpatient or outpatient setting.
Methods:
We performed a retrospective observational cohort study for all patients undergoing stress testing in our institution from June 2006 through July 2007. Cardiac risk factors were collected at the time of stress testing. Risk factors were evaluated in a summative fashion using multivariate regression adjusting for age and known coronary artery disease. The model was tested for goodness of fit and collinearity and the c statistic was calculated using the receiver operating curve.
Results:
A total of 4026 subjects were included for analysis of which 22% had known CAD. The rates of positive outcome were 89 (12.0%), 95 (12.6%), and 343 (16.9%) for the OU, outpatients, and hospitalized patients respectively. While the odds of a positive test outcome increased for additional cardiac risk factors, ROC curve analysis indicates that simply adding the number of risk factors does not add significant diagnostic value. Hospitalized patients were more likely to have a positive stress test, OR 1.41 (1.10 - 1.81).
Conclusions:
Our study does not support basing the decision to perform a stress test on the number of cardiac risk factors.
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