OMI/NOMI: Time for a New Classification of Acute Myocardial Infarction
Martiola Kola1, Naltin Shuka2, Harvey Pendell Meyers3
1Cardiology, University Hospital Center Mother Teresa, 1001 Tirana, Albania.
Insights
Forty percent of acute myocardial infarction patients lack STEMI criteria, delaying treatment. Prompt identification of these acute coronary occlusion cases is crucial for better outcomes and reduced mortality.
Area of Science:
- Cardiology
- Emergency Medicine
- Interventional Cardiology
Background:
- Forty percent of acute myocardial infarction (OMI) patients do not meet ST-elevation myocardial infarction (STEMI) criteria, leading to delayed treatment and increased morbidity.
- Prompt identification of OMI in non-STEMI patients is critical for timely intervention and improved patient outcomes.
- This study evaluates acute coronary occlusion in both STEMI and non-STEMI patients, focusing on the impact of delayed revascularization in NSTEMI-OMI.
Purpose of the Study:
- To evaluate acute coronary occlusion myocardial infarction (OMI) cases presenting with and without STEMI criteria.
- To analyze the consequences of delayed revascularization in NSTEMI patients with acute coronary occlusion (NSTEMI-OMI).
- To compare clinical outcomes, including complications and mortality, between STEMI(+)OMI and STEMI(-)OMI groups.
Main Methods:
- Retrospective analysis of 334 patients undergoing coronary angiography for acute coronary syndrome.
- OMI defined by acute culprit lesion with TIMI 0-2 flow or TIMI 3 flow with highly elevated troponin.
- Comparison of STEMI criteria presence, time to PCI, ejection fraction, ischemia time, length of stay, and complications between groups.
Main Results:
- 98 patients (29.3%) were diagnosed with NSTEMI-OMI; 96 patients (40%) with OMI did not meet STEMI criteria.
- STEMI(-)OMI patients experienced significant delays in PCI (11% within 12h) compared to STEMI(+)OMI patients (77%).
- Despite delays, STEMI(-)OMI patients showed similar rates of PCI, mechanical/electrical complications, and comparable mortality to STEMI(+)OMI patients.
Conclusions:
- Patients with acute coronary occlusion myocardial infarction (OMI) but without STEMI criteria face delayed treatment.
- These STEMI(-)OMI patients exhibit similar angiographic findings, PCI rates, and complication profiles to STEMI(+)OMI patients.
- Refocusing acute myocardial infarction paradigms to improve recognition and rapid reperfusion of all OMI cases, not just STEMI, is warranted.
Abstract:
Forty percent of patients with acute coronary occlusion myocardial infarction (OMI) do not present with STEMI criteria, which delays their treatment and increases morbidity and mortality. The need to identify these patients promptly is crucial, and this sets the stage for the proposed reclassification. Many of these patients can be identified by other ECG and clinical features. Background/Objectives: We sought to evaluate cases of STEMI and NSTEMI that result in OMI. Additionally, we focused on the consequences of delayed revascularization in NSTEMI patients with acute coronary occlusion (NSTEMI-OMI). Methods: The study is a retrospective analysis conducted on 334 patients who underwent coronary angiography for acute coronary syndrome at UHC "Mother Teresa", Tirana, Albania, during January-May 2023. "OMI was defined as an acute culprit lesion with TIMI 0-2 flow, or an acute culprit lesion with TIMI 3 flow intervened upon and with highly elevated troponin (cTnI > 10.0 ng/mL, hs-cTnI > 5000 ng/L)". The presence or absence of STEMI criteria were determined in the final diagnosis written on the chart by a cardiologist using the third universal definition of MI. Ejection fraction (EF), total ischemia time, length of stay, and complications were compared between groups. Mechanical complications include acute ventricular failure, cardiogenic shock, rupture of the interventricular septum, rupture of the free wall, rupture of the papillary muscle, and pericarditis. Electrical complications include ventricular arrhythmias, supraventricular arrhythmias, and atrioventricular and interventricular blocks. Results: There were 334 patients included, 98 (29.3%) of whom were NSTEMI-OMI patients. Ninety-six patients (40%) of OMI patients did not fulfill the STEMI criteria. Only 11 patients (11%) of STEMI(-)OMI had PCI performed within the first 12 h vs. 76 patients (77%) with STEMI(+)OMI, p < 0.001. There was no difference in the percent of patients requiring PCI between the STEMI(+)OMI 98 patients (93%) and STEMI(-)OMI 87 patients (89%) (p = 0.496). The overall in-hospital mortality was 19 patients (5.7%), with subgroup mortality of 14 patients (4.2%) with STEMI(+)OMI, 2 patients (0.6%) with STEMI(+) NOMI, and 3 patients (0.9%) with STEMI(-)OMI, 0% STEMI(-)NOMI, (p = 0.013). Patients with mechanical complications included 67 patients (46.8%) with STEMI(+)OMI and 45 patients (46.4%) with STEMI(-)OMI. In addition, 26 patients (18.5%) with STEMI(+)OMI and 13 patients (13.1%) with STEMI(-)OMI developed electrical complications. Conclusions: STEMI(-)OMI patients had significant delays in catheterization, yet had angiographic findings, rates of PCI, and complications similar to STEMI(+)OMI. These data add further support to refocusing the paradigm of acute MI to improve recognition and rapid reperfusion of all OMIs, rather than only those with STEMI criteria.
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