虚血性心疾患の検出におけるストレスT1マッピング:前向き診断精度研究
Simran Shergill1, Mohamed Elshibly1, Anju Velvet1
1Department of Cardiovascular Sciences, University of Leicester, the National Institute for Health and Care Research Leicester Biomedical Research Centre and British Heart Foundation Centre of Research Excellence, Glenfield Hospital, Leicester, UK.
Background:
In the assessment of patients with suspected coronary artery disease (CAD), the diagnostic role of stress-perfusion cardiovascular magnetic resonance (CMR) is well established. However, its reliance on gadolinium-based contrast agents may restrict its application in certain populations. T1 mapping during vasodilatory stress has been proposed as a contrast-free alternative for detecting CAD. This study sought to compare the diagnostic accuracy of adenosine-stress T1 reactivity (ΔT1) with that of stress-perfusion CMR for identifying hemodynamically significant CAD.
Methods:
Patients with suspected angina referred for diagnostic invasive coronary angiography underwent 3-Tesla CMR consisting of: (1) T1 mapping at rest and following intravenous adenosine using a modified Look-Locker inversion recovery sequence, (2) stress and rest perfusion, and (3) late gadolinium enhancement. Significant CAD was defined invasively as fractional flow reserve ≤0.80 in epicardial vessels ≥2mm diameter (or quantitative flow ratio ≤0.80 if unavailable). A ΔT1 vessel threshold (% increase in T1 from rest to stress) was derived from receiver operating characteristic analysis, using invasive coronary angiography as the reference standard. Stress-perfusion CMR was assessed qualitatively with CAD determined by the presence of ischemia and/or infarction, (A) per-vessel (as determined by two independent readers) and (B) per-patient (following consensus read).
Results:
Of 121 prospectively recruited patients, 115 had paired T1 mapping and coronary angiography data (mean age 66±9 years, 72% male, CAD prevalence 51%). ΔT1 demonstrated poor diagnostic performance to detect significant CAD (AUC 0.59 [95% CI: 0.52, 0.65], p=0.011), with an optimal vessel threshold ≤4.36% giving accuracy 54.9%, sensitivity 68.3% and specificity 49.2%. Stress-perfusion CMR demonstrated superior diagnostic accuracy compared to ΔT1: (A) per-vessel (for the two independent reads, +26.2% [19.4%, 32.6%] and +26.7% [19.9%, 33.3%], both p<0.001) and (B) per-patient (for consensus read, +21.7% [10.2%, 32.6%], p<0.001).
Conclusion:
In patients with suspected angina, ΔT1 demonstrates limited diagnostic accuracy for the detection of obstructive CAD. Future efforts should be directed towards alternative contrast-free methods for the reliable detection of CAD in this population.
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