Comparative Prognosis by Stress ECG and Stress Imaging: Results From the ISCHEMIA Trial
Leslee J Shaw1, Lawrence M Phillips2, Jonathon Leipsic3
1Icahn School of Medicine at Mount Sinai, New York, New York, USA.
Insights
Stress imaging and exercise ECG effectively predict outcomes in chronic coronary syndromes (CCS). Scar burden and reduced ejection fraction are key risk indicators, while ischemia extent by CMR shows prognostic value.
Area of Science:
- Cardiology
- Diagnostic Imaging
- Preventive Medicine
Background:
- Limited contemporary evidence exists on risk prediction using stress imaging and exercise electrocardiography (ECG) in patients with chronic coronary syndromes (CCS).
- The ISCHEMIA study provides a unique opportunity to examine prognostic capabilities of these diagnostic tools in a large CCS cohort.
Purpose of the Study:
- To assess the prognostic value of core laboratory-defined stress imaging and exercise ECG findings in patients with chronic coronary syndromes (CCS).
- To evaluate the association between imaging and ECG parameters and key clinical trial endpoints.
Main Methods:
- A total of 5,179 patients from the ISCHEMIA study were analyzed, utilizing data from stress nuclear imaging, echocardiography, cardiac magnetic resonance (CMR), and ECG.
- Cox models were employed to assess associations between trial endpoints and measures such as scarred/ischemic segments, rest/stress left ventricular ejection fraction (LVEF), and ST-segment depression.
- Prognostic models were examined for the primary composite endpoint, cardiovascular death, spontaneous MI, procedural MI, and type 2 MI.
Main Results:
- The number of scarred segments and rest/stress LVEF were significant predictors of the primary composite endpoint (CV death, MI, cardiac arrest, or hospitalization).
- Extent of scar and rest/stress LVEF on echocardiography and nuclear imaging predicted multiple trial endpoints.
- Ischemic segments predicted spontaneous and procedural MI, while ischemia extent by CMR predicted the primary endpoint and spontaneous MI.
Conclusions:
- Stress imaging and exercise ECG measures demonstrate variable but significant associations with key clinical endpoints in CCS patients.
- Stress CMR ischemia shows prognostic value, supporting its expanded role in evaluating patients with CCS.
- Findings from the ISCHEMIA trial delineate risk patterns for ischemia and infarction, aiding in risk stratification for CCS.
Background:
Limited contemporary evidence exists on risk prediction by stress imaging and exercise electrocardiography (ECG) among patients with chronic coronary syndromes (CCS). Objectives From the ISCHEMIA (International Study of Comparative Health Effectiveness with Medical and Invasive Approaches) study, prognosis was examined by core laboratory-defined stress imaging and exercise ECG findings in CCS patients.
Methods:
A total of 5,179 patients (qualifying by stress nuclear imaging [n = 2,567], echocardiography [n = 1,085], cardiac magnetic resonance [CMR] [n = 257], and ECG [n = 1,270]) were randomized. Cox models assessed associations between trial endpoints and the number of scarred and ischemic segments, rest/stress left ventricular ejection fraction (LVEF), and ST-segment depression. HRs and 95% CIs were calculated per millimeter, segment, or 5% of LVEF. We examined prognostic models for the following trial endpoints: 1) the trial's primary endpoint of cardiovascular (CV) death, myocardial infarction (MI), resuscitated cardiac arrest, or hospitalization for unstable angina or heart failure; 2) CV death; 3) spontaneous MI; 4) procedural MI; and 5) type 2 MI.
Results:
The number of scarred segments (HR: 1.07 [95% CI: 1.02-1.13]; P = 0.0209), rest LVEF (HR: 0.88 [95% CI: 0.83-0.93]; P < 0.001), and stress LVEF (HR: 0.87 [95% CI: 0.83-0.91]; P < 0.001) predicted the trial's primary endpoint of CV death, MI, resuscitated cardiac arrest, or hospitalization for unstable angina or heart failure. The extent of scar and rest/stress LVEF on echocardiography and nuclear imaging predicted several trial endpoints. The number of ischemic segments predicted spontaneous (HR: 1.08 [95% CI: 1.03-1.14]; P = 0.0104) and procedural MI (HR: 1.14 [95% CI: 1.03-1.25]; P = 0.0015) but was of borderline significance for the trial's primary endpoint (P = 0.0746). Ischemia extent by CMR predicted the trial's primary endpoint (P = 0.0068) and spontaneous MI (P = 0.0042).
Conclusions:
ISCHEMIA trial findings from 320 worldwide centers revealed that stress imaging and exercise ECG measures exhibited a variable association with key trial endpoints delineating risk patterns for ischemia and infarction. Stress CMR ischemia predicted several trial endpoints, supporting an expanded role in the evaluation of patients with CCS (ISCHEMIA [International Study of Comparative Health Effectiveness With Medical and Invasive Approaches]; NCT01471522).
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