Skip to content

International Study of Comparative Health Effectiveness With Medical and Invasive Approaches (ISCHEMIA)

International Study of Comparative Health Effectiveness With Medical and Invasive Approaches (ISCHEMIA)

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01471522
Acronym
ISCHEMIA
Enrollment
5179
Registered
2011-11-15
Start date
2012-07-31
Completion date
2023-05-30
Last updated
2023-06-01

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiovascular Diseases, Coronary Artery Disease, Coronary Disease, Heart Diseases, Myocardial Ischemia

Brief summary

The purpose of the ISCHEMIA trial is to determine the best management strategy for higher-risk patients with stable ischemic heart disease (SIHD). This is a multicenter randomized controlled trial with 5179 randomized participants with moderate or severe ischemia on stress testing. A blinded coronary computed tomography angiogram (CCTA) was performed in most participants with eGFR ≥60 mL/min/1.73m2 to identify and exclude participants with either significant unprotected left main disease (≥50% stenosis) or those without obstructive CAD (\<50% stenosis in all major coronary arteries). Of 8518 participants enrolled, those that had insufficient ischemia, ineligible anatomy demonstrated on CCTA or another exclusion criterion, did not go on to randomization. Eligible participants were then assigned at random to a routine invasive strategy (INV) with cardiac catheterization followed by revascularization, if feasible, plus optimal medical therapy (OMT) or to a conservative strategy (CON) of OMT, with cardiac catheterization and revascularization reserved for those who fail OMT. SPECIFIC AIMS A. Primary Aim The primary aim of the ISCHEMIA trial is to determine whether an initial invasive strategy of cardiac catheterization followed by optimal revascularization, if feasible, in addition to OMT, will reduce the primary composite endpoint of cardiovascular death, nonfatal myocardial infarction, resuscitated cardiac arrest, or hospitalization for unstable angina or heart failure in participants with SIHD and moderate or severe ischemia over an average follow-up of approximately 3.5 years compared with an initial conservative strategy of OMT alone with catheterization reserved for failure of OMT. B. Secondary Aims Secondary aims are to determine whether an initial invasive strategy compared to a conservative strategy will improve: 1) the composite of CV death or MI; 2) angina symptoms and quality of life, as assessed by the Seattle Angina Questionnaire; 3) all-cause mortality; 4) net clinical benefit assessed by including stroke in the primary and secondary composite endpoints; and 5) individual components of the composite endpoints. Condition: Coronary Disease Procedure: Coronary CT Angiogram Procedure: Cardiac catheterization Phase: Phase III per NIH Condition: Cardiovascular Diseases Procedure: Angioplasty, Transluminal, Percutaneous Coronary, other catheter-based interventions Phase: Phase III per NIH Condition: Heart Diseases Procedure: Coronary Artery Bypass Surgery Phase: Phase III per NIH

Detailed description

BACKGROUND: Evidence supporting a routine invasive practice paradigm for patients with SIHD is outdated. In strategy trials conducted in the 1970s, coronary artery bypass grafting (CABG) improved survival as compared with no CABG in SIHD patients with high-risk anatomic features. The relevance of these studies today is speculative because contemporary secondary prevention-aspirin, beta-blockers, statins, ACE inhibitors, and lifestyle interventions-were used minimally if at all. Subsequent trials have compared percutaneous coronary intervention (PCI) with medical therapy, as PCI has replaced CABG as the dominant method of revascularization for SIHD. To date, PCI has not been shown to reduce death or myocardial infarction (MI) compared with medical therapy in SIHD patients. COURAGE and BARI 2D, the two largest trials comparing coronary revascularization vs. medical therapy in SIHD patients, found that among patients selected on the basis of coronary anatomy after cardiac catheterization, an initial management strategy of coronary revascularization (PCI, PCI or CABG, respectively) did not reduce the primary endpoints of death or MI (COURAGE), or death (BARI 2D) compared with OMT alone. These data suggest, but do not prove, that routine cardiac catheterization--which often leads to ad hoc PCI through the diagnostic-therapeutic cascade--may not be required in SIHD patients. However, most patients enrolled in COURAGE and BARI 2D who had ischemia severity documented at baseline had only mild or moderate ischemia, leaving open the question of the appropriate role of cardiac catheterization and revascularization among higher-risk patients with more severe ischemia. Observational data suggest that revascularization of patients with moderate-to-severe ischemia is associated with a lower mortality than medical therapy alone, but such data cannot establish a cause and effect relationship. In clinical practice only about half such patients are referred for cardiac catheterization, indicating equipoise. Furthermore, analysis of outcomes for 468 COURAGE patients with moderate-to-severe ischemia at baseline did not reveal a benefit from PCI. This issue cannot be resolved using available data because all prior SIHD strategy trials enrolled patients after cardiac catheterization, introducing undefined selection biases (e.g., highest risk patients not enrolled) and making translation of study results problematic for clinicians managing patients who have not yet had cardiac catheterization. A clinical trial in SIHD patients uniformly at higher risk (which could not have been performed before COURAGE and BARI 2D results were available) is needed to inform optimal management for such patients. DESIGN NARRATIVE, INCLUDING MODIFICATIONS DURING THE TRIAL Primary Endpoint A composite of CV death, MI, resuscitated cardiac arrest, or hospitalization for unstable angina or heart failure was proposed as the primary endpoint in the application that was funded by NLHBI, with a secondary endpoint of CV death or MI. Study protocol version 1.0 was finalized on January 18, 2012 after review and approval by the protocol review committee (DSMB) with the primary endpoint specified as the composite of CV death or MI. Regarding the final status of the primary endpoint, the protocol stated: To ensure that the primary analysis is well-powered and useful, a prospective plan to allow extending follow-up and/or changing the primary endpoint based on aggregate event rate data will be established prior to the first review of unblinded trial data. At a designated time during the trial, an analysis will be conducted to estimate the overall aggregate primary endpoint event rate and project the final number of observed events. If the estimated unconditional power (i.e. based on aggregate event rate data; not by treatment group) is less than the originally targeted 90%, then one or more of the following options will be considered: 1. Extend follow-up to allow more events to accrue. 2. Change the primary endpoint to one that occurs more frequently. The current primary endpoint would become a secondary endpoint. The proposed new primary endpoint would be the composite of CV death, MI, resuscitated cardiac arrest, or hospitalization for unstable angina or heart failure. 3. Follow the recommendation of an independent advisory panel. An independent advisory panel, separate from the DSMB, will be convened for the purpose of reviewing unconditional power estimates and making a recommendation to the NHLBI Director. Members of this panel will not have access to unblinded data by treatment group or other data that may bias their recommendation. All 5 event types were adjudicated throughout the trial. Study protocol v2.0 (January 2014) allowed ischemia eligibility by non-imaging exercise stress test if more stringent (≥70% stenosis) CCTA criteria were met. The 2016 protocol addendum describes the NHLBI-approved reduction in sample size and extension of recruitment and follow-up due to slower than projected recruitment. The pre-specified first analysis for monitoring and projecting the final aggregate number of primary endpoint events was conducted in 2015. In 2016, the projected need to increase the power by extending follow-up and elevating the 5-component secondary endpoint to become primary was discussed at Steering Committee and Investigator meetings and communicated by email. An Independent Advisory Panel convened by NHLBI met in May 2017, and in June 2017 NHLBI approved the Independent Advisory Panel's recommendation to elevate the 5-component secondary endpoint to become primary and retain the 2-component composite as a key secondary endpoint. The panel also recommended extension of follow-up. This was communicated to the Steering Committee and Investigators at August and November 2017 meetings and by email. The last visit date was June 30, 2019. A statistical plan developed for the Independent Advisory Panel process in 2012 specified that a decision about changing the primary endpoint would be targeted to occur before 75% of the final number of primary endpoint events had accrued. Although the final number of primary endpoint events was unknown during the course of the trial, estimates performed at the time of the Advisory Panel meeting suggested that the ratio of accrued endpoint events to final endpoint events was below 50%. See Maron DJ et al. Am Heart J. 2018 201:124-135. PMC6005768 for additional details about modifications to the trial while it was being conducted. Analysis of Patients' Health Status as a Key Secondary Endpoint A key secondary objective of the ISCHEMIA trial is to compare the quality of life outcomes-patients' symptoms, functioning and well-being-between those assigned to an invasive strategy as compared with a conservative strategy. In the protocol, angina frequency and disease-specific quality of life measured by the Seattle Angina Questionnaire (SAQ) Angina Frequency and Quality of Life scales, respectively, are described as the tools that will be used to make this comparative assessment. Recent work has indicated that it is possible to combine the information from the individual domain scores in the SAQ into a new Summary Score that captures the information from the SAQ Angina Frequency, Physical Limitation and Quality of Life scales into a single overall score. The advantages of using a summary score as the primary measure of QOL effects of a therapy are a single primary endpoint comparison rather than two or three (eliminating concerns some may have about multiple comparisons) and a more intuitive holistic (patient-centric) interpretation of the effectiveness results. With these advantages in mind, the ISCHEMIA leadership has agreed that the SAQ Summary Score will be designated as the primary way this outcome for this key secondary endpoint of the ISCHEMIA trial will be analyzed and interpreted, with the individual SAQ scores being used in a secondary, explanatory and descriptive role. PARTICIPATING COUNTRIES: North America: Canada; Mexico; USA South America: Argentina; Brazil; Peru Asia: China; India; Japan; Malaysia; Singapore; Taiwan; Thailand; Russian Federation Pacifica: Australia; New Zealand Europe: Austria; Belgium; France; Germany; Hungary; Italy; Lithuania; Macedonia; Netherlands; Poland; Portugal; Romania; Serbia; Spain; Sweden; Switzerland; UK Middle East: Egypt; Israel; Saudi Arabia Africa: South Africa

Interventions

PROCEDUREcardiac catheterization

Narrowed blood vessels can be opened without surgery using stents or can be bypassed with surgery. To determine which is the best approach for you the doctor needs to look at your blood vessels to see where the narrowings are and how much narrowing there is. This is done by a procedure known as a cardiac catheterization.

PROCEDUREcoronary artery bypass graft surgery

Artery narrowing is bypassed during surgery with a healthy artery or vein from another part of the body. This is known as coronary artery bypass grafting, or CABG (said, cabbage). The surgery creates new routes around narrowed and blocked heart arteries. This allows more blood flow to the heart.

PROCEDUREpercutaneous coronary intervention

Percutaneous coronary intervention may be done as part of the cardiac catheterization procedure. With this procedure a small, hollow, mesh tube (stent) is inserted into the narrowed part of the artery. The stent pushes the plaque against the artery wall, and opens the vessel to allow better blood flow.

BEHAVIORALLifestyle

diet, physical activity, smoking cessation

DRUGMedication

antiplatelet, statin, other lipid lowering, antihypertensive, and anti-ischemic medical therapies

Sponsors

New York University
CollaboratorOTHER
Stanford University
CollaboratorOTHER
National Heart, Lung, and Blood Institute (NHLBI)
CollaboratorNIH
Albany Stratton VA Medical Center
CollaboratorFED
Cedars-Sinai Medical Center
CollaboratorOTHER
Columbia University
CollaboratorOTHER
Duke University
CollaboratorOTHER
East Carolina University
CollaboratorOTHER
Emory University
CollaboratorOTHER
Harvard University
CollaboratorOTHER
Massachusetts General Hospital
CollaboratorOTHER
Montreal Heart Institute
CollaboratorOTHER
University of British Columbia
CollaboratorOTHER
University of Missouri, Kansas City
CollaboratorOTHER
Vanderbilt University
CollaboratorOTHER
NYU Langone Health
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
21 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* At least moderate ischemia on a qualifying stress test * Participant is willing to comply with all aspects of the protocol, including adherence to the assigned strategy, medical therapy and follow-up visits * Participant is willing to give written informed consent * Age ≥ 21 years

Exclusion criteria

* LVEF \< 35% * History of unprotected left main stenosis \>50% on prior coronary computed tomography angiography (CCTA) or prior cardiac catheterization (if available) * Finding of no obstructive CAD (\<50% stenosis in all major epicardial vessels) on prior CCTA or prior catheterization, performed within 12 months * Coronary anatomy unsuitable for either PCI or CABG * Unacceptable level of angina despite maximal medical therapy * Very dissatisfied with medical management of angina * History of noncompliance with medical therapy * Acute coronary syndrome within the previous 2 months * PCI within the previous 12 months * Stroke within the previous 6 months or spontaneous intracranial hemorrhage at any time * History of ventricular tachycardia requiring therapy for termination, or symptomatic sustained ventricular tachycardia not due to a transient reversible cause * NYHA class III-IV heart failure at entry or hospitalization for exacerbation of chronic heart failure within the previous 6 months * Non-ischemic dilated or hypertrophic cardiomyopathy * End stage renal disease on dialysis or estimated glomerular filtration rate (eGFR) \<30mL/min (not an exclusion criterion for CKD ancillary trial, see CKD ancillary trial, Section 18) * Severe valvular disease or valvular disease likely to require surgery or percutaneous valve replacement during the trial * Allergy to radiographic contrast that cannot be adequately pre-medicated, or any prior anaphylaxis to radiographic contrast * Planned major surgery necessitating interruption of dual antiplatelet therapy (note that patients may be eligible after planned surgery) * Life expectancy less than the duration of the trial due to non-cardiovascular comorbidity * Pregnancy (known to be pregnant; to be confirmed before CCTA and/or randomization, if applicable) * Patient who, in the judgment of the patient's physician, is likely to have significant unprotected left main stenosis (Those who are able to undergo CCTA will have visual assessment of the left main coronary artery by the CCTA core lab) * Enrolled in a competing trial that involves a non-approved cardiac drug or device * Inability to comply with the protocol * Exceeds the weight or size limit for CCTA or cardiac catheterization at the site * Canadian Cardiovascular Society Class III angina of recent onset, OR angina of any class with a rapidly progressive or accelerating pattern * Canadian Cardiovascular Society Class IV angina, including unprovoked rest angina * High risk of bleeding which would contraindicate the use of dual antiplatelet therapy * Cardiac transplant recipient * Prior CABG, unless CABG was performed more than 12 months ago, and coronary anatomy has been demonstrated to be suitable for PCI or repeat CABG to accomplish complete revascularization of ischemic areas (CCC approval required)

Design outcomes

Primary

MeasureTime frameDescription
Primary Composite Outcome: Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest3.2 year follow-up (median)
Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)5 yearsThis measure represents the estimated cumulative probability of experiencing the primary endpoint within the indicated timeframe in each treatment group. The interpretation of the measure is similar to Kaplan-Meier event rates. Estimates are expressed as percentages ranging from 0% (endpoint is certain not to occur) to 100% (endpoint is certain to occur).
Number of Participants That Experienced Death From Cardiovascular Causes or Myocardial Infarction5 years
Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial Infarction5 yearsThis measure represents the estimated cumulative probability of experiencing Death from cardiovascular causes or myocardial infarction within the indicated timeframe in each treatment group. The interpretation of the measure is similar to Kaplan-Meier event rates. Estimates are expressed as percentages ranging from 0% (endpoint is certain not to occur) to 100% (endpoint is certain to occur).
Number of Participants That Experienced Death From Any Cause5 years
Cumulative Event Rate of Death From Any Cause5 years
Number of Participants That Experienced Myocardial Infarction5 years
Cumulative Event Rate of Myocardial Infarction5 years
Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus Conservative5 yearsThe primary composite outcome includes death from cardiovascular causes, myocardial infarction, or hospitalization for unstable angina, heart failure, or resuscitated cardiac arrest.
Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative Strategies5 years
Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus Conservative5 years
Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus Conservative5 years

Countries

Argentina, Australia, Austria, Belgium, Brazil, Canada, China, Egypt, France, Germany, Hungary, India, Israel, Italy, Japan, Lithuania, Malaysia, Mexico, Netherlands, New Zealand, North Macedonia, Peru, Poland, Portugal, Romania, Russia, Saudi Arabia, Serbia, Singapore, South Africa, Spain, Sweden, Switzerland, Taiwan, Thailand, United Kingdom, United States

Participant flow

Participants by arm

ArmCount
Invasive Strategy (INV)
Invasive Strategy (INV)
2,588
Conservative Strategy
Conservative Strategy
2,591
Total5,179

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyLost to Follow-up3626
Overall StudyWithdrawal by Subject2822

Baseline characteristics

CharacteristicInvasive Strategy (INV)TotalConservative Strategy
Age, Continuous64 years64 years64 years
Ethnicity (NIH/OMB)
Hispanic or Latino
372 Participants763 Participants391 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
2030 Participants4052 Participants2022 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
186 Participants364 Participants178 Participants
Race (NIH/OMB)
American Indian or Alaska Native
8 Participants13 Participants5 Participants
Race (NIH/OMB)
Asian
747 Participants1485 Participants738 Participants
Race (NIH/OMB)
Black or African American
96 Participants204 Participants108 Participants
Race (NIH/OMB)
More than one race
7 Participants12 Participants5 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
5 Participants12 Participants7 Participants
Race (NIH/OMB)
Unknown or Not Reported
19 Participants50 Participants31 Participants
Race (NIH/OMB)
White
1706 Participants3403 Participants1697 Participants
Region of Enrollment
Africa
8 Participants13 Participants5 Participants
Region of Enrollment
Asia
791 Participants1577 Participants786 Participants
Region of Enrollment
Europe
853 Participants1718 Participants865 Participants
Region of Enrollment
Latin America
239 Participants478 Participants239 Participants
Region of Enrollment
Middle East
10 Participants20 Participants10 Participants
Region of Enrollment
North America
648 Participants1300 Participants652 Participants
Region of Enrollment
Pacifica
39 Participants73 Participants34 Participants
Sex: Female, Male
Female
606 Participants1168 Participants562 Participants
Sex: Female, Male
Male
1982 Participants4011 Participants2029 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
145 / 2,588144 / 2,591
other
Total, other adverse events
0 / 2,5880 / 2,591
serious
Total, serious adverse events
318 / 2,588352 / 2,591

Outcome results

Primary

Cumulative Event Rate of Death From Any Cause

Time frame: 5 years

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 6 months0.8 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 1 year1.7 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 2 years2.8 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 3 years4.3 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 4 years6.5 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Any CauseAt 5 years9.0 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 4 years6.4 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 6 months0.4 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 3 years4.3 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 1 year1.0 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 5 years8.3 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Any CauseAt 2 years2.9 Cumulative event rate -- %
Primary

Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial Infarction

This measure represents the estimated cumulative probability of experiencing Death from cardiovascular causes or myocardial infarction within the indicated timeframe in each treatment group. The interpretation of the measure is similar to Kaplan-Meier event rates. Estimates are expressed as percentages ranging from 0% (endpoint is certain not to occur) to 100% (endpoint is certain to occur).

Time frame: 5 years

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 6 months4.8 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 1 year6.2 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 2 years7.9 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 3 years9.7 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 4 years11.7 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 5 years14.2 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 4 years13.9 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 6 months2.9 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 3 years11.0 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 1 year4.6 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 5 years16.5 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Death From Cardiovascular Causes or Myocardial InfarctionAt 2 years8.2 Cumulative event rate -- %
Primary

Cumulative Event Rate of Myocardial Infarction

Time frame: 5 years

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 6 months4.3 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 1 year5.3 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 2 years6.3 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 3 years7.7 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 4 years8.9 Cumulative event rate -- %
Invasive Strategy (INV)Cumulative Event Rate of Myocardial InfarctionAt 5 years10.3 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 4 years10.1 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 6 months2.6 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 3 years8.5 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 1 year3.8 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 5 years11.9 Cumulative event rate -- %
Conservative StrategyCumulative Event Rate of Myocardial InfarctionAt 2 years6.5 Cumulative event rate -- %
Primary

Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)

This measure represents the estimated cumulative probability of experiencing the primary endpoint within the indicated timeframe in each treatment group. The interpretation of the measure is similar to Kaplan-Meier event rates. Estimates are expressed as percentages ranging from 0% (endpoint is certain not to occur) to 100% (endpoint is certain to occur).

Time frame: 5 years

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 6 months5.3 cumulative event rate - %
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 1 year7.0 cumulative event rate - %
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 2 years9.0 cumulative event rate - %
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 3 years11.3 cumulative event rate - %
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 4 years13.3 cumulative event rate - %
Invasive Strategy (INV)Cumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 5 years16.4 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 4 years15.5 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 6 months3.4 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 3 years12.7 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 1 year5.4 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 5 years18.2 cumulative event rate - %
Conservative StrategyCumulative Event Rate of Primary Composite Outcome (Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest)At 2 years9.5 cumulative event rate - %
Primary

Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus Conservative

Time frame: 5 years

Population: Invasive = 2588; Conservative = 2591

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 6 months0.4 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 1 year0.7 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 2 years-0.1 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 3 years0 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 4 years0.1 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Any Cause: Invasive Minus ConservativeAt 5 years0.7 cumulative event rate - %
Primary

Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative Strategies

Time frame: 5 years

Population: Invasive = 2588; Conservative = 2591

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 6 months1.9 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 1 year1.6 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 2 years-0.3 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 3 years-1.3 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 4 years-2.2 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Death From Cardiovascular Causes: Invasive Minus Conservative or Myocardial Infarction Between Invasive and Conservative StrategiesAt 5 years-2.3 cumulative event rate - %
Primary

Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus Conservative

Time frame: 5 years

Population: Invasive = 2588; Conservative = 2591

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 6 months1.8 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 1 year1.5 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 2 years-0.1 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 3 years-0.7 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 4 years-1.2 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate of Myocardial Infarction: Invasive Minus ConservativeAt 5 years-1.6 cumulative event rate - %
Primary

Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus Conservative

The primary composite outcome includes death from cardiovascular causes, myocardial infarction, or hospitalization for unstable angina, heart failure, or resuscitated cardiac arrest.

Time frame: 5 years

Population: Invasive = 2588; Conservative = 2591

ArmMeasureGroupValue (NUMBER)
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 6 months1.9 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 1 year1.5 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 2 years-0.5 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 3 years-1.3 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 4 years-2.2 cumulative event rate - %
Invasive Strategy (INV)Estimated Difference in Cumulative Event Rate ( %) of Primary Composite Outcome: Invasive Minus ConservativeAt 5 years-1.8 cumulative event rate - %
Primary

Number of Participants That Experienced Death From Any Cause

Time frame: 5 years

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Invasive Strategy (INV)Number of Participants That Experienced Death From Any Cause145 Participants
Conservative StrategyNumber of Participants That Experienced Death From Any Cause144 Participants
Primary

Number of Participants That Experienced Death From Cardiovascular Causes or Myocardial Infarction

Time frame: 5 years

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Invasive Strategy (INV)Number of Participants That Experienced Death From Cardiovascular Causes or Myocardial Infarction276 Participants
Conservative StrategyNumber of Participants That Experienced Death From Cardiovascular Causes or Myocardial Infarction314 Participants
Primary

Number of Participants That Experienced Myocardial Infarction

Time frame: 5 years

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Invasive Strategy (INV)Number of Participants That Experienced Myocardial Infarction210 Participants
Conservative StrategyNumber of Participants That Experienced Myocardial Infarction233 Participants
Primary

Primary Composite Outcome: Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest

Time frame: 3.2 year follow-up (median)

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Invasive Strategy (INV)Primary Composite Outcome: Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest318 Participants
Conservative StrategyPrimary Composite Outcome: Death From Cardiovascular Causes, Myocardial Infarction, or Hospitalization for Unstable Angina, Heart Failure, or Resuscitated Cardiac Arrest352 Participants

Source: ClinicalTrials.gov · Data processed: Aug 6, 2026