Real-World Comparison of Cardiac MRI and Nuclear Perfusion Imaging for Myocardial Scar Detection

BACKGROUND: Cardiovascular magnetic resonance late gadolinium enhancement (CMR-LGE) is the reference standard for scar detection, but data comparing LGE with fixed perfusion defects (FPD) on nuclear myocardial perfusion imaging (MPI) are limited. OBJECTIVES: This study aimed to evaluate concordance between myocardial scar detection by CMR-LGE and nuclear MPI. METHODS: ) was determined for PET. Patients with myocardial infarction or revascularization between studies were excluded. Associations of LGE and FPD with major adverse cardiovascular events (MACE) were analyzed. RESULTS: (0.61 [0.53-0.68] vs 0.80 [0.74-0.85] mL/min/g; P < 0.001). Patients with both LGE and FPD had higher MACE risk than patients without these features (HR: 4.95 [95% CI: 3.01-8.11]; P < 0.001). CONCLUSIONS: MPI detected myocardial scar less frequently than CMR-LGE, with PET providing greater specificity than SPECT for ischemic and transmural scar. Combined LGE and FPD identified patients at highest risk of adverse outcomes, supporting PET MPI for myocardial scar characterization.

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Journal
JACC Advances
Published
2026-10-05
DOI
https://doi.org/10.1016/j.jacadv.2026.103303
Primary Topic
Cardiac Imaging and Diagnostics
Type
article
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article

Real-World Comparison of Cardiac MRI and Nuclear Perfusion Imaging for Myocardial Scar Detection

Attila Fehér, Catherine Xie Wright, Albert J. Sinusas, Ioannis Kyriakoulis et al.
JACC Advances
Cardiac Imaging and Diagnostics
article

Real-World Comparison of Cardiac MRI and Nuclear Perfusion Imaging for Myocardial Scar Detection

Attila Fehér, Catherine Xie Wright, Albert J. Sinusas, Ioannis Kyriakoulis, Ibolya Csécs, Damianos G. Kokkinidis, Ahmed Ibrahim Ahmed, Edward J. Miller
article en

Abstract

BACKGROUND: Cardiovascular magnetic resonance late gadolinium enhancement (CMR-LGE) is the reference standard for scar detection, but data comparing LGE with fixed perfusion defects (FPD) on nuclear myocardial perfusion imaging (MPI) are limited. OBJECTIVES: This study aimed to evaluate concordance between myocardial scar detection by CMR-LGE and nuclear MPI. METHODS: ) was determined for PET. Patients with myocardial infarction or revascularization between studies were excluded. Associations of LGE and FPD with major adverse cardiovascular events (MACE) were analyzed. RESULTS: (0.61 [0.53-0.68] vs 0.80 [0.74-0.85] mL/min/g; P < 0.001). Patients with both LGE and FPD had higher MACE risk than patients without these features (HR: 4.95 [95% CI: 3.01-8.11]; P < 0.001). CONCLUSIONS: MPI detected myocardial scar less frequently than CMR-LGE, with PET providing greater specificity than SPECT for ischemic and transmural scar. Combined LGE and FPD identified patients at highest risk of adverse outcomes, supporting PET MPI for myocardial scar characterization.

JACC AdvancesVol. 5(11)
University of Thessaly (GR), Yale University (US)
Good health and well-being
Openalex Percentile: Top 12%
Cardiac Imaging and Diagnostics
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Real-World Comparison of Cardiac MRI and Nuclear Perfusion Imaging for Myocardial Scar Detection — Attila Fehér, Catherine Xie Wright, et al. · JACC Advances (2026) | TGRS Research Map | TGRS