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July 12, 2023European Radiology3 citationsOpen Access

Differentiation of acute non-ST elevation myocardial infarction and acute infarct-like myocarditis by visual pattern analysis: a head-to-head comparison of different cardiac MR techniques

CJCharlotte JahnkeMSMartin SinnAHAmra Hot

Key Result

A conventional CMR approach combining cine, T2-weighted, and LGE imaging achieved a diagnostic accuracy of 92% for NSTEMI, which was not significantly different from visual pattern analysis of T1 maps.

Study Design

Type

Observational (n=60)

Blinding

Double-blind

Multicenter

No

Structured PICO

Does visual pattern analysis of parametric CMR techniques (T1/T2 mapping) provide comparable diagnostic accuracy to conventional CMR techniques in differentiating acute NSTEMI from infarct-like myocarditis?

P
Population
60 subjects including 20 patients with acute non-ST elevation myocardial infarction (NSTEMI) (median age 55, 85% male), 20 patients with acute 'infarct-like' myocarditis (median age 34, 85% male), and 20 healthy controls (median age 40, 70% male).
I
Intervention
Visual pattern analysis of parametric cardiac magnetic resonance (CMR) techniques (native T1 and T2 mapping) without providing quantitative values.
C
Comparator
Visual pattern analysis of conventional signal-intensity-based CMR techniques (combination of cine, T2-weighted, and late gadolinium enhancement [LGE] imaging).
O
Outcome
Diagnostic accuracy to visually differentiate ischemic from non-ischemic myocardial injury patterns (NSTEMI vs. myocarditis vs. healthy controls).surrogate

Visual pattern analysis of native T1 maps provides comparable diagnostic accuracy to conventional combined CMR techniques for differentiating NSTEMI from infarct-like myocarditis, potentially allowing for shorter, contrast-free CMR protocols.

Limitations

  • Small sample size of each cohort
  • T1 and T2 maps were restricted to three end-diastolic short-axis slices, whereas conventional imaging covered more sections
  • Included only patients with NSTEMI and infarct-like myocarditis phenotype
  • Difference in timing of CMR in reference to the inciting event between myocarditis and NSTEMI groups

Abstract

OBJECTIVES: Parametric cardiac magnetic resonance (CMR) techniques have improved the diagnosis of pathologies. However, the primary tool for differentiating non-ST elevation myocardial infarction (NSTEMI) from myocarditis is still a visual assessment of conventional signal-intensity-based images. This study aimed at analyzing the ability of parametric compared to conventional techniques to visually differentiate ischemic from non-ischemic myocardial injury patterns. METHODS: Twenty NSTEMI patients, twenty infarct-like myocarditis patients, and twenty controls were examined using cine, T2-weighted CMR (T2w) and late gadolinium enhancement (LGE) imaging and T1/T2 mapping on a 1.5 T scanner. CMR images were presented in random order to two experienced fully blinded observers, who had to assign them to three categories by a visual analysis: NSTEMI, myocarditis, or healthy. RESULTS: The conventional approach (cine, T2w and LGE combined) had the best diagnostic accuracy with 92% (95%CI: 81-97) for NSTEMI and 86% (95%CI: 71-94) for myocarditis. The diagnostic accuracies using T1 maps were 88% (95%CI: 74-95) and 80% (95%CI: 62-91), 84% (95%CI: 67-93) and 74% (95%CI: 54-87) for LGE, and 83% (95%CI: 66-92) and 73% (95%CI: 53-87) for T2w. The accuracies for cine (72% (95%CI: 52-86) and 60% (95%CI: 38-78)) and T2 maps (62% (95%CI: 40-79) and 47% (95%CI: 28-68)) were significantly lower compared to the conventional approach (p < 0.001 and p < 0.0001). CONCLUSIONS: The conventional approach provided a reliable visual discrimination between NSTEMI, myocarditis, and controls. The diagnostic accuracy of a visual pattern analysis of T1 maps was not significantly inferior, whereas the diagnostic accuracy of T2 maps was not sufficient in this context. CLINICAL RELEVANCE STATEMENT: The ability of parametric compared to conventional CMR techniques to visually differentiate ischemic from non-ischemic myocardial injury patterns can avoid potentially unnecessary invasive coronary angiography and help to shorten CMR protocols and to reduce the need of gadolinium contrast agents. KEY POINTS: • A visual differentiation of ischemic from non-ischemic patterns of myocardial injury is reliably achieved by a combination of conventional CMR techniques (cine, T2-weighted and LGE imaging). • There is no significant difference in accuracies between visual pattern analysis on native T1 maps without providing quantitative values and a conventional combined approach for differentiating non-ST elevation myocardial infarction, infarct-like myocarditis, and controls. • T2 maps do not provide a sufficient diagnostic accuracy for visual pattern analysis for differentiating non-ST elevation myocardial infarction, infarct-like myocarditis, and controls.

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Cite This Study

Jahnke et al. (2023) conducted an observational in Non-ST elevation myocardial infarction and acute infarct-like myocarditis (n=60). Conventional CMR approach (cine, T2w, and LGE combined) vs. Parametric CMR techniques (T1 and T2 mapping) was evaluated on Diagnostic accuracy for NSTEMI using the conventional approach (95% CI 81-97). A conventional CMR approach combining cine, T2-weighted, and LGE imaging achieved a diagnostic accuracy of 92% for NSTEMI, which was not significantly different from visual pattern analysis of T1 maps.

synapsesocial.com/papers/6a0e9f0bfca5c6c9f4479d07https://doi.org/10.1007/s00330-023-09905-5
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