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Primary Outcome Assessment in a Pig Model of Acute Myocardial Infarction
Published on: October 14, 2016
The QRS scoring system for estimating myocardial infarct size: clinical, angiographic and prognostic correlations
Insights
A routine electrocardiogram QRS score effectively estimates left ventricular function after myocardial infarction. Higher scores indicate poorer heart function and higher risk, aiding in patient stratification.
Area of Science:
- Cardiology
- Medical Imaging
- Clinical Diagnostics
Background:
- Left ventricular dysfunction is a key determinant of outcomes post-myocardial infarction.
- Assessing left ventricular function non-invasively is crucial for patient management.
Purpose of the Study:
- To investigate the correlation between a QRS score from routine electrocardiograms and left ventricular function in post-myocardial infarction patients.
- To determine if the QRS score can predict ejection fraction and identify high-risk individuals.
Main Methods:
- A QRS score was calculated from routine electrocardiograms in 181 patients post-myocardial infarction.
- Patients with left ventricular hypertrophy and conduction defects were excluded.
- Correlation analysis and regression equations were used to assess the relationship between QRS score, wall motion abnormalities, and ejection fraction.
Main Results:
- The QRS score strongly correlated with the severity of wall motion abnormalities and left ventricular ejection fraction (r = -0.81, p < 0.001).
- A regression equation was developed: LVEF (%) = 66 - (3.3 x QRS score), accurately predicting ejection fraction in a prospective cohort.
- Higher QRS scores were associated with worse clinical functional class, severe wall motion abnormalities, and unfavorable outcomes.
Conclusions:
- The QRS score is a valuable, inexpensive tool for estimating left ventricular function after myocardial infarction.
- A QRS score ≥ 7 is highly specific (97%) for predicting reduced ejection fraction (< 45%) and identifies high-risk patients.
Abstract:
The relation between a QRS score derived from the routine electrocardiogram and left ventricular function was investigated in 181 patients after myocardial infarction. Patients with left ventricular hypertrophy and conduction defects were excluded. The QRS score correlated closely with the severity of wall motion abnormalities and left ventricular ejection fraction. The more severe the dyssynergy, the higher the QRS score (hypokinesia = 3.0; akinesia = 5.4; dyskinesia = 9.1). The left ventricular ejection fraction (percent) = 66 - (3.3 x QRS score) (correlation coefficient [r] = -0.81, probability [p] less than 0.001). With use of this regression equation, the QRS score predicted angiographic left ventricular ejection fraction to within 12% of the angiographic ejection fraction in 29 of 30 additional patients studied prospectively. The QRS score was also related to clinical functional class. The worse the clinical manifestation of left ventricular dysfunction, the higher the QRS score (Killip class I = 3.5; class II = 6.5; class III = 7.1). A QRS score greater than or equal to 7 had a specificity of 97% and a sensitivity of 59% for predicting an ejection fraction of less than 45%. Patients with a QRS score of 7 or greater had severe wall motion abnormalities, higher peak serum creatine kinase levels, higher prevalence of multivessel coronary disease, poor clinical functional class and an unfavorable outcome. The QRS score provides an inexpensive, clinically useful estimate of left ventricular function after myocardial infarction and can identify patients at high risk.
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