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CMR Versus CT in Coronary Artery Disease

Comparison of Cardiovascular Magnetic Resonance and Computed Tomography With Fractional Flow Reserve in the Diagnosis of Suspected Coronary Artery Disease

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04761991
Acronym
CONCORD
Enrollment
300
Registered
2021-02-21
Start date
2020-11-05
Completion date
2025-11-30
Last updated
2025-07-01

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

Conditions

Coronary Artery Disease

Keywords

MRI, CT-FFR, coronary artery disease

Brief summary

CONCORD is a prospective observational study evaluating the diagnostic accuracy of cardiovascular magnetic resonance (CMR) and computed tomography with fractional flow reserve (CT-FFR) in patients with suspected coronary artery disease, using invasive fractional flow reserve (FFR) as the reference standard.

Detailed description

In patients with suspected coronary artery disease (CAD), CT coronary angiography (CTCA) provides excellent sensitivity and negative predictive value, enabling the safe exclusion of significant CAD. However, its positive predictive value remains suboptimal (c.50%). Undertaking additional CT-FFR improves specificity and positive predictive value, reducing unnecessary invasive coronary angiography. It has been established that CMR perfusion imaging offers excellent diagnostic accuracy for the identification of functionally significant coronary artery disease. The diagnostic performance of qualitative CMR perfusion assessment may be further enhanced by additional quantitative assessment. The purpose of this prospective observational study is to evaluate the diagnostic performance of all three modalities (CT-FFR and qualitative and quantitative CMR perfusion imaging), involving 300 patients with suspected coronary artery disease referred for invasive coronary angiography. A subset of 167 subjects will undergo an additional accelerated CMR scan for comparison. Invasively measured fractional flow reserve (FFR) will serve as the reference standard.

Interventions

DIAGNOSTIC_TESTCMR and CTCA with CT-FFR

multi-parametric CMR assessment and CT coronary angiography with FFR assessment

Sponsors

HeartFlow, Inc.
CollaboratorINDUSTRY
National Heart, Lung, and Blood Institute (NHLBI)
CollaboratorNIH
University of Oxford
CollaboratorOTHER
University of Glasgow
CollaboratorOTHER
University of Leicester
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* Patients aged ≥18 years * Referred for invasive coronary angiography for investigation of chest pain

Exclusion criteria

* Recent acute coronary syndrome (\< 6 months) * Previous coronary artery bypass grafting * Severe claustrophobia * Absolute contraindications to CMR - those with MR conditional or safe devices will be included * Second-/third-degree atrioventricular block * Severe chronic obstructive pulmonary disease * Moderate-severe asthma * Estimated glomerular filtration rate \<30 ml/min/1.73m2 * Women who are pregnant, breast-feeding or of child-bearing potential( premenopausal women) * Contraindication to iodinated contrast * Participation in a research study involving an investigational product in the past 12 weeks

Design outcomes

Primary

MeasureTime frameDescription
1. Diagnostic performance of CMR and CT-FFR6 weeksDiagnostic accuracy of CMR perfusion imaging (quantitative and qualitative analysis) and CT-FFR to determine the presence/absence of significant coronary artery disease at the subject level when compared with invasive FFR.

Secondary

MeasureTime frameDescription
2. Diagnostic performance of CMR and CT-FFR6 weeks2\. Diagnostic accuracy, sensitivity and specificity of CMR perfusion imaging (quantitative and qualitative analysis) and CT-FFR to determine the presence/absence of significant coronary artery disease at the vessel level when compared with invasive FFR.
3. Diagnostic performance of CMR T1 mapping6 weeksDiagnostic accuracy, sensitivity and specificity of CMR T1 mapping using invasive FFR as the reference standard (per patient and per vessel levels).
4. Diagnostic performance of hybrid imaging6 weeksDiagnostic accuracy, sensitivity and specificity of hybrid CMR/CT-FFR using invasive FFR as the reference standard (per patient and per vessel levels).
Diagnostic performance of strain assessment6 weeks5\. Diagnostic accuracy, sensitivity and specificity of CMR strain assessment (global/segmental longitudinal/circumferential strain, mechanical dispersion) using invasive FFR as the reference standard (per patient and per vessel levels).
1. Diagnostic performance of CMR and CT-FFR6 weeks1\. Sensitivity and specificity of CMR perfusion imaging (quantitative and qualitative analysis) and CT-FFR to determine the presence/absence of significant coronary artery disease at the subject level when compared with invasive FFR.
7. Clinical endpoints2 yearsPrediction by imaging modalities of clinical endpoints (subsequent percutaneous and/or surgical revascularisation, admissions with acute coronary syndrome and cerebrovascular accident, all-cause mortality).
8. Subjective experience1 daySubjective patient scan experience for CMR and CTCA.
9. Time duration of each scan/scan component.1 dayDuration of each scan/scan component.
10. Image quality1 dayImage quality of each scan/scan component, assessed visually on a 4-point score - excellent (3), good (2), moderate (1) and poor (0).
6. Cost analysis2 yearsCost analysis to assess the long term costs of the different diagnostic testing strategies. Healthcare costs for each testing strategy - data on resource use (staff time, scan duration, hospital days and clinic visits) will be collected during the study period.

Countries

United Kingdom

Contacts

Primary ContactJayanth Arnold
jra14@le.ac.uk0300 303 1573
Backup ContactMo Elshibly
mmme1@le.ac.uk

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026