Association between cardiac time intervals and incident heart failure after acute coronary syndrome
Caroline Løkke Bjerregaard1,2,3, Flemming Javier Olsen4,5,6, Kristoffer Grundtvig Skaarup4,5,6
1Department of Cardiology, Copenhagen University Hospital - Herlev and Gentofte, Hellerup, Denmark. bjerregaard.caroline@gmail.com.
Insights
Shortened systolic ejection time (ET) and higher myocardial performance index (MPI) are linked to increased heart failure (HF) risk in acute coronary syndrome (ACS) patients. These cardiac time intervals can help predict HF development post-ACS.
Area of Science:
- Cardiology
- Echocardiography
- Heart Failure Research
Background:
- Cardiac time intervals are crucial indicators of myocardial dysfunction and heart failure (HF) risk.
- Acute coronary syndrome (ACS) patients are particularly vulnerable to developing HF.
Purpose of the Study:
- To investigate the association between specific cardiac time intervals and the incidence of HF in patients with ACS.
- To identify echocardiographic markers that predict HF development after ACS.
Main Methods:
- 386 ACS patients undergoing percutaneous coronary intervention (PCI) were studied.
- Echocardiography, including tissue Doppler, was performed to measure isovolumic relaxation time (IVRT), isovolumic contraction time (IVCT), systolic ejection time (ET), and myocardial performance index (MPI).
- Incident HF was the primary outcome, with a median follow-up of 4.3 years.
Main Results:
- 140 (36%) patients developed incident HF during follow-up.
- Higher MPI and shorter ET were significantly associated with an increased risk of HF after multivariable adjustment.
- The association between ET and HF was significant in patients with left ventricular ejection fraction (LVEF) ≥ 36%.
Conclusions:
- Shortened ET and elevated MPI are independent predictors of incident HF in ACS patients.
- ET serves as a valuable prognostic marker for HF in ACS patients, particularly those with preserved or mildly impaired LVEF.
Background:
Cardiac time intervals are sensitive markers of myocardial dysfunction that predispose to heart failure (HF). We aimed to investigate the association between cardiac time intervals and HF in patients with acute coronary syndrome (ACS).
Methods:
This study included 386 ACS patients treated with percutaneous coronary intervention (PCI). Patients underwent an echocardiography examination a median of two days after PCI. Cardiac time intervals including isovolumic relaxation time (IVRT), isovolumic contraction time (IVCT), and systolic ejection time (ET), and myocardial performance index (MPI) were obtained by tissue Doppler echocardiography. The outcome was incident HF.
Results:
During follow-up (median 4.3, IQR:1.0-6.7 years), 140 (36%) developed HF. In unadjusted analyses, IVRT was not associated with HF (HR 1.02 (0.95-1.10), p = 0.61, per 10ms increase), and neither was IVCT (HR 0.07 (0.95-1.22), p = 0.26, per 10ms increase). Increasing MPI was associated with a higher risk of HF (HR 1.20 (1.08-1.34), P = 0.001, per 0.1 increase), and so was decreasing ET (HR 1.13 (1.07-1.18), P < 0.001 per 10ms decrease). After multivariable adjustment for cardiovascular risk factors, MPI (HR 1.13 (1.01-1.27), P = 0.034) and ET (HR 1.09 (1.01-1.17), P = 0.025) remained significantly associated with incident HF. LVEF modified the association between ET and HF (p for interaction = 0.002), such that ET was associated with HF in patients with LVEF ≥ 36% (HR = 1.15 (1.06-1.24), P = 0.001, per 10ms decrease).
Conclusion:
In patients admitted with ACS, shortened ET and higher MPI were independently associated with an increased risk of incident HF. Additionally, ET was associated with incident HF in patients with LVEF above 36%.
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