Utilization of stress echocardiography in patients with multivessel coronary artery disease
Vikram Agarwal1, Siu-Sun Yao, Farooq A Chaudhry
1aMount Sinai Health System, New York bValley Health System, Ridgewood, New Jersey, USA.
Insights
Stress echocardiography effectively risk-stratifies patients with multivessel coronary artery disease (CAD). Abnormal stress echocardiography results significantly predict adverse cardiac events, offering valuable prognostic insights.
Area of Science:
- Cardiology
- Diagnostic Imaging
- Preventive Medicine
Background:
- Stress echocardiography is a recognized method for diagnosing and assessing prognosis in patients with coronary artery disease (CAD).
- Multivessel CAD poses significant risks, necessitating accurate risk stratification and prognostic evaluation.
Purpose of the Study:
- To determine the utility of stress echocardiography in risk stratification and prognosis for patients with multivessel CAD.
- To assess the predictive value of stress echocardiography for cardiac events in this patient group.
Main Methods:
- Evaluated 409 patients with multivessel CAD undergoing stress echocardiography and coronary angiography.
- Assessed left ventricular wall motion using a 16-segment model and a five-point scale.
- Defined abnormal stress echocardiography by the presence of stress-induced ischemia.
Main Results:
- Stress echocardiography differentiated cardiac event risk between patients with normal (1.9%/year) and abnormal (5.4%/year) stress tests.
- Stress-induced ischemia was identified as a significant predictor of adverse cardiac events (HR 5.5).
- Stress echocardiography provided incremental prognostic value beyond clinical variables and resting left ventricular function.
Conclusions:
- Stress echocardiography effectively stratifies risk in patients with multivessel CAD.
- Abnormal stress echocardiography identifies a high-risk group for adverse cardiac events.
- The technique offers valuable prognostic information for guiding patient management.
Objective:
The purpose of this study was to evaluate the role of stress echocardiography in the risk stratification and prognosis of patients with multivessel coronary artery disease (CAD).
Background:
Stress echocardiography is an established technique for diagnosis, risk stratification, and prognosis of patients with known or suspected CAD.
Methods:
We evaluated 409 patients (65 ± 10 years; 63% men) referred for stress echocardiography (45% treadmill, 55% dobutamine), who underwent stress echocardiography and coronary angiography within 3 months. All patients had multivessel CAD as defined by coronary stenosis (≥50% left main or ≥70% in two or more major epicardial vessels or branches). The left ventricle was divided into 16 segments and was scored on a five-point scale of wall motion. Patients with abnormal results on stress echocardiography were defined as those with stress-induced ischemia (increase in wall motion score of ≥1 grade).
Results:
Follow-up (3.1 ± 1.3 years) for nonfatal myocardial infarction (n = 35) and cardiac death (n = 25) was obtained. In patients with multivessel CAD, stress echocardiography effectively risk-stratified normal (no ischemia, n = 83) vs. abnormal (ischemia, n = 326) groups for cardiac events (event rate 1.9 vs. 5.4%/year; P < 0.01). Multivariable Cox proportional-hazards regression model identified stress-induced ischemia (hazard ratio 5.5, 95% confidence interval 1.9-15.9, P = 0.002) as the most significant predictor of adverse cardiac events. A stepwise Cox proportional-hazards model demonstrated significant incremental prognostic value of stress echocardiography over clinical variables, stress electrocardiography and resting left ventricular function (P < 0.0001), with the highest global chi-square value.
Conclusions:
In patients with angiographically significant multivessel CAD, despite normal-stress echocardiography, there was an intermediate cardiac event rate (1.9%/year); abnormal-stress echocardiography identified a high-risk group (5.4%/year); and stress echocardiography provided incremental prognostic value for risk stratification and prediction of cardiac events.
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