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Published on: April 13, 2015
Coronary sinus dilatation is associated with left ventricular systolic dysfunction and poor functional status in
Murat Yuce1, Vedat Davutoglu, Sema Yavuz
1Department of Cardiology, Gaziantep University, Gaziantep, Turkey.
Insights
Dilated coronary sinus, identified via echocardiography, may indicate heart failure severity. This finding offers a new prognostic marker for chronic heart failure patients, aiding therapeutic decisions.
Area of Science:
- Cardiology
- Medical Imaging
Background:
- Chronic heart failure prognosis requires reliable markers beyond plasma biomarkers.
- Coronary sinus (CS) anatomical changes, often overlooked, may reflect cardiac remodeling in heart failure.
Purpose of the Study:
- To investigate echocardiographic assessment of coronary sinus (CS) anatomical alterations in heart failure.
- To evaluate the relationship between CS anatomical changes and left ventricular systolic dysfunction.
Main Methods:
- Echocardiography was used to analyze 112 heart failure patients and 61 controls.
- Measurements included left/right ventricular volumes, left atrial area, and mean coronary sinus dimensions.
- Correlations were assessed between CS measurements and various cardiac parameters.
Main Results:
- Coronary sinus diameter was significantly larger in heart failure patients compared to controls.
- CS measurements positively correlated with ventricular volumes, left atrial area, NYHA class, regurgitation severity, and left ventricular mass.
- CS diameter negatively correlated with left ventricular ejection fraction and was an independent predictor of CS diameter.
Conclusions:
- Dilated coronary sinus is likely a component of cardiac remodeling in heart failure.
- Echocardiographic assessment of CS diameter provides valuable additional information for predicting heart failure severity and functional class.
Background And Aims:
Reliable echocardiographic markers additional to plasma biomarkers that would establish prognosis of chronic heart failure and guide therapeutic approach would be beneficial. In our hypothesis, echocardiographic assessment of coronary sinus anatomic alteration, which has been ignored, may be part of remodeling process in heart failure. We also aimed to evaluate relationship between coronary sinus anatomic alteration and left ventricular systolic dysfunction. We echocardiographically analysed 112 patients with heart failure and 61 normal subjects. Left/right ventricular volumes, left atrial area and mean coronary sinus were measured. Coronary sinus diameter was significantly higher in patients than in control group. Statistically positive correlation were present between coronary sinus measurements and left/right ventricular volumes (R = 0.5, P < 0.001; R = 0.4, P < 001, respectively), left atrial area (R = 0.6, P < 0.001), NYHA class (R = 0.3, P < 0.001), mitral regurgitation (R = 0.329, P < 0.001), tricuspid regurgitation (R = 0.215, P < 0.02) and left ventricular mass (R = 0.482, P < 0.001). Statistically negative correlation were present between coronary sinus measurements and left ventricle ejection fraction (R = -0.4, P < 0.001). However, coronary sinus diameter was not correlated with body surface area and pulmonary artery pressure. Tricuspid and mitral regurgitation, left ventricular mass, ejection fraction and functional class were included in multivariate analysis and only ejection fraction was independent predictor of coronary sinus diameter (P = 0.012). We demonstrated that, dilated coronary sinus is possibly a part of entire process of cardiac remodeling and echocardiographic assessment of dilated coronary sinus may provide useful additional information, predicting the severity of chronic heart failure and poor functional class.
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