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Initial TIMI flow ≥ 2 and pre-angiography total ST-segment resolution predict an aborted myocardial infarction in
Marek Prech1, Ewa Bartela, Aleksander Araszkiewicz
1Department of Invasive Cardiology, Leszno, Poland; 1st Department of Cardiology, Poznan University of Medical Sciences, Poznan, Poland. mmprech@wp.pl.
Insights
Aborted myocardial infarction (MI) occurred in 9.8% of ST-segment elevation MI patients undergoing percutaneous coronary intervention (PCI). Good TIMI flow and ST-segment resolution before PCI predict aborted MI.
Area of Science:
- Cardiology
- Interventional Cardiology
- Acute Coronary Syndromes
Background:
- Primary percutaneous coronary intervention (PCI) is a key treatment for ST-segment elevation myocardial infarction (STEMI).
- Despite timely reperfusion, a significant rate of aborted myocardial infarction (MI) is observed in STEMI patients.
Purpose of the Study:
- To identify predictors of aborted MI in patients undergoing primary PCI for STEMI.
- To analyze clinical, electrocardiographic, and angiographic factors associated with aborted MI.
Main Methods:
- A prospective study included 310 STEMI patients treated with primary PCI within 12 hours of symptom onset.
- Statistical analysis correlated patient characteristics and procedural outcomes with the incidence of aborted MI.
Main Results:
- Aborted MI was diagnosed in 9.8% of patients.
- Predictors of aborted MI included TIMI flow ≥ 2 before PCI, complete ST-segment resolution prior to angiography, and a history of diabetes mellitus.
- Patients with aborted MI showed higher rates of favorable angiographic and electrocardiographic markers.
Conclusions:
- Aborted MI is a notable outcome in STEMI patients treated with primary PCI.
- Early indicators like good coronary blood flow (TIMI flow ≥ 2) and ST-segment resolution before PCI are significant predictors of aborted MI.
Background:
Studies on the treatment of patients with an acute ST-segment elevation myocardial infarction (STEMI) with primary percutaneous coronary intervention (PCI) have shown a high rate of aborted MI despite a relatively long delay from the onset of symptoms to reperfusion.
Aim:
To assess predictors of aborted MI in patients undergoing primary PCI.
Methods:
310 STEMI patients referred for primary PCI within 12 h of symptom onset were included into a prospective study. Relationships between incidence of aborted MI, clinical, electrocardiographic and angiographic factors were analysed.
Results:
Aborted MI was diagnosed in 29 (9.8%) patients. Patients with aborted MI did not differ with respect to age(59.4 ± 10.1 vs. 60.5 ± 11.2 years; p = 0.88), male sex (75.9% vs. 76.0%; p = 0.83), hypertension (51.7% vs. 48.3%;p = 0.87) or total ischaemic time (215.9 ± 104.6 vs. 241.9 ± 134.3 min; p = 0.44) except for the frequency of diabetes mellitus (34.5% vs. 16.1%; p = 0.02) when compared to a group with true MI. TIMI flow ≥ 2 prior to PCI (86.2% vs. 27.7%; p < 0.001), total ST-segment resolution (STSR), both pre-angiography (65.5% vs. 19.5%; p < 0.001) and post-PCI (89.7%vs. 69.2%; p = 0.018) and myocardial blush grade 3 (89.7% vs. 60.0%; p = 0.001) were significantly more frequent in patients with aborted MI. A logistic regression model confirmed TIMI flow ≥ 2 prior to PCI (OR 10.7; CI 3.1-37.8; p = 0.0002), pre-angiography total STSR (OR 3.6; CI 1.2-10.5; p = 0.02) and a history of previous diabetes mellitus (OR 8.6; CI 2.6-27.6; p = 0.0003) as predictors of aborted MI.
Conclusions:
1. Aborted MI was observed in 9.8% of STEMI patients undergoing PCI. 2. TIMI flow ≥ 2 and total STSR priorto PCI were identified as major angiographic and electrocardiographic predictors of aborted MI.
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