Key result
> 1 mm ST-segment elevation on baseline ECG was significantly associated with an increased visual presence score of late gadolinium enhancement on cardiac magnetic resonance imaging (β = 3.08).
Why the study?
While ECG abnormalities and CMR late gadolinium enhancement correlate with poor prognosis in acute myocarditis, whether ECG parameters associate with the distribution and dynamic changes of LGE remained unestablished.
Are ECG parameters associated with the distribution and dynamic of late gadolinium enhancement in patients with acute myocarditis?
Cohort (n=51)
No
Are ECG parameters associated with the distribution and dynamic of late gadolinium enhancement in patients with acute myocarditis?
Mean Difference: 3.08 (95% CI 1.75–4.41)
p-value: p=< 0.001
While ST-elevation on ECG correlates with late gadolinium enhancement in acute myocarditis, ECG has limited utility for estimating territorial involvement and dynamic changes compared to CMR.
ECG may complement CMR for LGE assessment in myocarditis; hypothesis-generating for serial monitoring strategies.
PURPOSE: Numerous electrocardiogram (ECG) abnormalities and late gadolinium enhancement (LGE) in cardiac magnetic resonance imaging (CMR) have been related to poor prognosis in acute myocarditis. We evaluated whether ECG parameters are associated with the distribution and dynamic of LGE along the course of myocarditis. METHODS: Fifty-one patients with CMR confirmed acute myocarditis were included who underwent CMR with LGE and 12-lead ECG at baseline and 3-month follow-up at our institution. The association between the presence, regional distribution and change of ECG parameters and LGE was investigated using linear regression analysis. LGE was quantified as visual presence score (VPS) and visual transmurality score (VTS). RESULTS: Among many ECG parameters only > 1 mm ST-elevation (STE) was associated with VPS and VTS at baseline (β = 3.08 [95%CI: 1.75; 4.41], p = < 0.001 and β = 5.40 [95%CI: 1.92; 8.88], p = 0.004; respectively). STE was most frequent in lateral and inferior ECG-leads (48% and 31%) and it was associated with VPS and VTS in these localizations (p < 0.05 all), however no association between anterior-septal STE and LGE could be confirmed. At follow-up the regression of STE was associated with the regression of VPS and VTS in univariate analysis (β=-1.49 [95%CI: -2.41; -0.57], p = 0.003 and β=-4.87 [95%CI: -7.18; -2.56], p = 0.001, respectively), which remained significant for VTS using a multivariate model (β=-2.39 [95%CI: -3.32; -0.47], p = 0.019). CONCLUSION: Although we demonstrated some promising associations between STE and LGE, the usability of ECG to estimate the territorial involvement and dynamical changes of LGE along the course of myocarditis is generally limited and cardiac magnetic resonance should be considered for this purpose.
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Károlyi et al. (2023) conducted a cohort in Acute myocarditis (n=51). > 1 mm ST-segment elevation on ECG vs. Absence of > 1 mm ST-segment elevation was evaluated on Visual presence score (VPS) of late gadolinium enhancement at baseline (β = 3.08, 95% CI 1.75; 4.41, p=< 0.001). > 1 mm ST-segment elevation on baseline ECG was significantly associated with an increased visual presence score of late gadolinium enhancement on cardiac magnetic resonance imaging (β = 3.08).
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