scholarly journals Multiparametric exercise stress cardiovascular magnetic resonance in the diagnosis of coronary artery disease: the EMPIRE trial

2021 ◽  
Vol 23 (1) ◽  
Author(s):  
Thu-Thao Le ◽  
Briana W. Y. Ang ◽  
Jennifer A. Bryant ◽  
Chee Yang Chin ◽  
Khung Keong Yeo ◽  
...  

Abstract Background Stress cardiovascular magnetic resonance (CMR) offers assessment of ventricular function, myocardial perfusion and viability in a single examination to detect coronary artery disease (CAD). We developed an in-scanner exercise stress CMR (ExCMR) protocol using supine cycle ergometer and aimed to examine the diagnostic value of a multiparametric approach in patients with suspected CAD, compared with invasive fractional flow reserve (FFR) as the reference gold standard. Methods In this single-centre prospective study, patients who had symptoms of angina and at least one cardiovascular disease risk factor underwent both ExCMR and invasive angiography with FFR. Rest-based left ventricular function (ejection fraction, regional wall motion abnormalities), tissue characteristics and exercise stress-derived (perfusion defects, inducible regional wall motion abnormalities and peak exercise cardiac index percentile-rank) CMR parameters were evaluated in the study. Results In the 60 recruited patients with intermediate CAD risk, 50% had haemodynamically significant CAD based on FFR. Of all the CMR parameters assessed, the late gadolinium enhancement, stress-inducible regional wall motion abnormalities, perfusion defects and peak exercise cardiac index percentile-rank were independently associated with FFR-positive CAD. Indeed, this multiparametric approach offered the highest incremental diagnostic value compared to a clinical risk model (χ2 for the diagnosis of FFR-positive increased from 7.6 to 55.9; P < 0.001) and excellent performance [c-statistic area under the curve 0.97 (95% CI: 0.94–1.00)] in discriminating between FFR-normal and FFR-positive patients. Conclusion The study demonstrates the clinical potential of using in-scanner multiparametric ExCMR to accurately diagnose CAD. Trial registration: ClinicalTrials.gov, NCT03217227, Registered 11 July 2017–Retrospectively registered, https://clinicaltrials.gov/ct2/show/NCT03217227?id=NCT03217227&draw=2&rank=1&load=cart

1988 ◽  
Vol 67 (7) ◽  
pp. 695???700 ◽  
Author(s):  
John R. Slavik ◽  
Kenneth R. LaMantia ◽  
Charles J. Kopriva ◽  
Edward Prokop ◽  
Michael D. Ezekowitz ◽  
...  

ESC CardioMed ◽  
2018 ◽  
pp. 435-438
Author(s):  
Anastasia Vamvakidou ◽  
Roxy Senior

The major requirement for optimal echocardiographic image interpretation, reproducibility, and diagnostic accuracy is image quality. Despite the use of harmonics, a significant proportion of patients have challenging images, which has an impact on diagnosis and management. The ultrasound contrast agents (UCAs), which are administered intravenously, have been a significant development in image quality optimization and have proved to be an important aid in the assessment of structural abnormalities, detection of regional wall motion abnormalities, and calculation of left ventricular ejection fraction. The use of UCAs is also of critical importance for the detection of ischaemia and the assessment of significant coronary artery disease through detection of inducible regional wall motion abnormalities during stress echocardiography. UCAs can also assess myocardial perfusion, which improves assessment of myocardial ischaemia during stress echocardiography. Similarly the simultaneous assessment of wall motion and perfusion improves assessment of viable myocardium in patients with left ventricular dysfunction. As the use of UCAs results in increased feasibility, reproducibility, and diagnostic and prognostic accuracy of echocardiography including cost-efficiency, both European and American guidelines endorse its use in clinical cardiology.


1986 ◽  
Vol 58 (6) ◽  
pp. 406-410 ◽  
Author(s):  
Nagara Tamaki ◽  
Tsunehiro Yasuda ◽  
Robert C. Leinbach ◽  
Herman K. Gold ◽  
Kenneth A. McKusick ◽  
...  

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