N. Uriel,G. Moravsky, A. Blatt, A. Tourovski, Z. Gabara, I. Yofik, V. Danicek, A. Hendler,
R. Braunstein, R. Krakover, Z. Vered and E. Kaluski
Background: Spontaneous coronary reperfusion occurs in 7–27% of patients with ST elevation myocardial infarction, and is an independent predictor of myocardial salvage, percutaneous coronary intervention success, and improved outcome.
Objectives: To determine the optimal PCI time for patients admitted to the hospital due to STEMI with SCR.
Methods: We performed a retrospective analysis of all patients admitted to the coronary care unit between July 2002 and November 2004 with a diagnosis of STEMI with SCR.
Results: The study group comprised 86 patients. There was not a single reinfarction episode during an observation period of 6579 patient hours. Cardiac catheterization was executed early (< 24 hours from pain onset) in 26 patients and late (> 24 hours) in 55. Pre-PCI angiographic TIMI flow 2–3 was seen in > 95% in both groups. PCI was performed more frequently in the “early” group (P = 0.024), while multi-vessel coronary artery disease (P = 0.094) requiring coronary bypass surgery (P = 0.056) was observed more frequently in the “late catheterization” group. Myocardial infarction and angina pectoris at 30 days occurred more frequently in the early catheterization group (P = 0.039), however no difference in any major adverse cardiac events was detected during long-term follow-up (491 ± 245 days).
Conclusions: Reinfarction after STEMI with SCR is a rare event. Early PCI in patients with STEMI and SCR, even when executed with aggressive anti-platelet therapy, seems to result in an excess of early MACE, without any long-term advantage. Prospective randomized trials should determine the optimal PCI timing for these patients.
A. Shiran, S. Adawi, I. Dobrecky-Mery, D. A. Halon, and Basil S. Lewis
Background: Echocardiographic ventricular function predicts prognosis and guides management in patients with acute coronary syndromes. In elderly patients, interpretation of echocardiographic measurements may be difficult, especially regarding assessment of diastolic left ventricular function.
Objectives: To examine the usefulness of echocardiographic systolic and echocardiographic diastolic LV function measurements as predictors of long-term outcome in elderly patients with ACS.
Methods: We studied 142 consecutive elderly patients (≥ 70 years old, mean age 80 ± 6 years) with ACS who had an echocardiogram at index hospitalization and were in sinus rhythm. LV ejection fraction and diastolic mitral inflow pattern were examined as predictors of survival and repeat hospitalization over a period of 18–24 months.
Results: During the 2 year mean follow-up period 35/142 patients died (25%). Survival was lower in patients with EF < 40% (n=42) as compared to EF ≥ 40% (n=100) (2 year survival rate 61% vs. 81%, P = 0.038). Patients with severe diastolic dysfunction (a restrictive LV filling pattern, n=7) had a lower survival rate than those without (43 vs. 76%, P = 0.009). The most powerful independent predictor of mortality was a restrictive filling pattern (hazard ratio 4.6, 95% confidence interval 1.6–13.5), followed by a clinical diagnosis of heart failure on admission and older age. Rate of survival free of repeat hospitalization was low (33% at 18 months) but repeat hospitalization was not predicted either by EF or by a restrictive filling pattern.
Conclusions: As in the young, echocardiographic measurements of systolic and diastolic LV function predicted long-term survival in elderly patients with ACS. A restrictive filling pattern was the strongest independent predictor of mortality.
N. Lipovetzky, H. Hod, A. Roth, Y. Kishon, S. Sclarovsky and M. S. Green
Background: Previous studies found some factors such as physical exertion, anger and heavy meals to be triggers for acute coronary syndrome.
Objectives: To estimate the relative risk of an ACS episode associated with positive and negative emotional experiences and anger as potential work-related triggers.
Methods: A total of 209 consecutive patients were interviewed a median of 2 days after a cardiac event that occurred at work or up to 2 hours later. The case-crossover design was used. Positive and negative emotional experiences and anger episodes in the hours immediately before the onset of ACS were compared with episodes in the comparable hours during the previous workday. For anger the episodes were compared with the usual frequency at work during the previous year. Positive and negative emotional experiences were assessed by the PANAS questionnaire (Positive and Negative Affect Scale), and anger by the Onset Anger Scale.
Results: The relative risks of an acute coronary event during the first hour after exposure to negative and positive emotional experiences were RR = 14.0 (95% confidence interval 1.8–106.5) and RR = 3.50 (95% CI, 0.7–16.8) respectively and RR = 9.0 (95% CI, 1.1–71) for an episode of anger. Using conditional logistic regression analysis, the highest relative risk was associated with negative emotional experiences.
A. Shturman, A. Chernihovski, M. Goldfeld, A. Furer, A. Wishniak and N. Roguin