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Pericardial rather than epicardial fat is a cardiometabolic risk marker: an MRI vs echo study
Rosa Sicari1, Anna Maria Sironi, Roberta Petz
1National Research Council Institute of Clinical Physiology, Pisa, Italy.
Insights
Pericardial adipose tissue (PERI), measured by echocardiography, is a better marker for cardiometabolic risk than epicardial adipose tissue (EPI). PERI correlates with metabolic syndrome features, unlike EPI.
Area of Science:
- Cardiology
- Medical Imaging
- Metabolic Syndrome Research
Background:
- Echocardiography identifies epicardial adipose tissue (EPI) as a cardiometabolic risk marker.
- Previous validation of echocardiography against MRI or CT is lacking.
- Pericardial adipose tissue (PERI) shows recent correlation with cardiovascular disease risk factors.
Purpose of the Study:
- Validate echocardiographic measurements of cardiac fat depots against MRI.
- Determine if PERI or EPI is a more appropriate marker for cardiovascular risk.
Main Methods:
- 49 healthy subjects (age 25-68, BMI 21-40) underwent echocardiography and MRI.
- PERI and EPI fat depots were quantified.
- Measurements correlated with MRI visceral/subcutaneous fat, blood pressure, insulin sensitivity, lipids, glucose, and 10-year CHD risk.
Main Results:
- PERI constituted ~77% of cardiac fat.
- Echocardiographic PERI thickness strongly correlated with MRI area (r=0.36, P=.009).
- PERI correlated with BMI, waist circumference, visceral/subcutaneous fat, blood pressure, insulin sensitivity, lipids, glucose, and CHD risk.
- EPI thickness correlated only with age and not significantly with MRI EPI area.
- MRI EPI area correlated with age, BMI, subcutaneous fat, and hip/waist circumferences.
Conclusions:
- Increased pericardial fat is strongly linked to metabolic syndrome features.
- Epicardial fat showed no significant correlation with metabolic syndrome markers.
- Pericardial adipose tissue is a superior cardiometabolic risk marker compared to epicardial adipose tissue in clinical practice.
Background:
Several studies using echocardiography identified epicardial adipose tissue (EPI) as an important cardiometabolic risk marker. However, validation compared with magnetic resonance imaging (MRI) or computed tomography has not been performed. Moreover, pericardial adipose tissue (PERI) has recently been shown to have some correlation with cardiovascular disease risk factors. The aims of this study were to validate echocardiographic analyses compared with MRI and to evaluate which cardiac fat depot (EPI or PERI) is the most appropriate cardiovascular risk marker.
Methods:
Forty-nine healthy subjects were studied (age range, 25-68 years; body mass index, 21-40 kg/m(2)), and PERI and EPI fat depots were measured using echocardiography and MRI. Findings were correlated with MRI visceral fat and subcutaneous fat, blood pressure, insulin sensitivity, triglycerides, cholesterol, insulin, glucose, and 10-year coronary heart disease risk.
Results:
Most cardiac fat was constituted by PERI (about 77%). PERI thickness by echocardiography was well correlated with MRI area (r = 0.36, P = .009), and independently of the technique used for quantification, PERI was correlated with body mass index, waist circumference, visceral fat, subcutaneous fat, blood pressure, insulin sensitivity, triglycerides, cholesterol, glucose, and coronary heart disease risk. On the contrary, EPI thicknesses correlated only with age did not correlate significantly with MRI EPI areas, which were found to correlate with age, body mass index, subcutaneous fat, and hip and waist circumferences.
Conclusions:
Increased cardiac fat in the pericardial area is strongly associated with features of the metabolic syndrome, whereas no correlation was found with EPI, indicating that in clinical practice, PERI is a better cardiometabolic risk marker than EPI.
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