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Published on: June 28, 2019
Clinical Use of Coronary CTA-Derived FFR for Decision-Making in Stable CAD
Bjarne L Nørgaard1, Jakob Hjort1, Sara Gaur1
1Department of Cardiology, Aarhus University Hospital Skejby, Aarhus, Denmark.
Insights
Fractional flow reserve computed from CT angiography (FFRCT) is feasible for stable coronary artery disease patients. This non-invasive test accurately guides decisions, with favorable outcomes for patients deferred from invasive angiography.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
- Diagnostic Technology
Background:
- Fractional flow reserve computed from CT angiography (FFRCT) shows promise in identifying ischemia.
- Real-world feasibility and diagnostic impact of FFRCT in suspected coronary artery disease (CAD) remain unclear.
Purpose of the Study:
- To evaluate the clinical utility of FFRCT in real-world decision-making for stable CAD patients.
- To assess the impact of FFRCT on diagnostic work-up and clinical outcomes.
Main Methods:
- Retrospective review of 189 patients with intermediate coronary lesions undergoing FFRCT at Aarhus University Hospital.
- Evaluation of downstream testing, agreement with invasive FFR/iFR, and short-term clinical outcomes.
Main Results:
- FFRCT was conclusive in 98% of patients, identifying significant ischemia (FFRCT ≤0.80) in 31% of patients.
- FFRCT demonstrated good agreement with invasive FFR/iFR.
- No adverse cardiac events occurred in patients deferred from invasive angiography with FFRCT >0.80.
Conclusions:
- FFRCT is a feasible tool for real-world assessment of symptomatic patients with intermediate coronary stenosis.
- FFRCT implementation can influence diagnostic pathways.
- Deferring invasive angiography based on FFRCT >0.80 is associated with a favorable short-term prognosis.
Objectives:
The goal of this study was to assess the real-world clinical utility of fractional flow reserve (FFR) derived from coronary computed tomography angiography (FFRCT) for decision-making in patients with stable coronary artery disease (CAD).
Background:
FFRCT has shown promising results in identifying lesion-specific ischemia. The real-world feasibility and influence on the diagnostic work-up of FFRCT testing in patients suspected of having CAD are unknown.
Methods:
We reviewed the complete diagnostic work-up of nonemergent patients referred for coronary computed tomography angiography over a 12-month period at Aarhus University Hospital, Denmark, including all patients with new-onset chest pain with no known CAD and with intermediate-range coronary lesions (lumen reduction, 30% to 70%) referred for FFRCT. The study evaluated the consequences on downstream diagnostic testing, the agreement between FFRCT and invasively measured FFR or instantaneous wave-free ratio (iFR), and the short-term clinical outcome after FFRCT testing.
Results:
Among 1,248 patients referred for computed tomography angiography, 189 patients (mean age 59 years; 59% male) were referred for FFRCT, with a conclusive FFRCT result obtained in 185 (98%). FFRCT was ≤0.80 in 31% of patients and 10% of vessels. After FFRCT testing, invasive angiography was performed in 29%, with FFR measured in 19% and iFR in 1% of patients (with a tendency toward declining FFR-iFR guidance during the study period). FFRCT ≤0.80 correctly classified 73% (27 of 37) of patients and 70% (37 of 53) of vessels using FFR ≤0.80 or iFR ≤0.90 as the reference standard. In patients with FFRCT >0.80 being deferred from invasive coronary angiography, no adverse cardiac events occurred during a median follow-up period of 12 (range 6 to 18 months) months.
Conclusions:
FFRCT testing is feasible in real-world symptomatic patients with intermediate-range stenosis determined by coronary computed tomography angiography. Implementation of FFRCT for clinical decision-making may influence the downstream diagnostic workflow of patients. Patients with an FFRCT value >0.80 being deferred from invasive coronary angiography have a favorable short-term prognosis.
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