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Updated: Feb 12, 2026

Murine Short Axis Ventricular Heart Slices for Electrophysiological Studies
Published on: June 4, 2017
Usefulness of Epicardial Area in the Short Axis to Identify Elevated Left Ventricular Mass in Men
Jesse K Fitzpatrick1, Beth E Cohen2, Andrew Rosenblatt3
1Department of Medicine, University of California San Francisco, San Francisco, California.
Insights
Epicardial area measurements can rapidly screen for left ventricular (LV) hypertrophy, a condition linked to heart disease. This method may help validate traditional LV mass calculations, improving patient classification.
Area of Science:
- Cardiology
- Medical Imaging
- Echocardiography
Background:
- Left ventricular (LV) hypertrophy is a significant risk factor for cardiovascular morbidity and mortality.
- Current 2D LV mass algorithms have measurement variability, potentially misclassifying patients.
- Epicardial and endocardial areas offer lower interobserver variation for LV mass corroboration.
Purpose of the Study:
- To identify cut-off values for epicardial and endocardial areas to discriminate between normal and elevated LV mass.
- To evaluate the utility of epicardial and endocardial areas as standalone discriminators of LV hypertrophy.
Main Methods:
- Correlation analysis between LV mass index and epicardial/endocardial areas in 664 men.
- Utilized receiver operator characteristic (ROC) curves to determine area cut-points.
- Assessed sensitivity and specificity of identified cut-points for LV hypertrophy detection.
Main Results:
- LV mass index showed a stronger correlation with epicardial area (r=0.70) than endocardial area (r=0.27).
- Epicardial area demonstrated a significantly higher area under the ROC curve (0.90) compared to endocardial area (0.63).
- An epicardial area cut-point of ≥38.0 cm² achieved 95.0% sensitivity and 54.4% specificity for LV hypertrophy.
Conclusions:
- Epicardial area is a promising, rapid screening tool for LV hypertrophy.
- Epicardial area measurements can potentially validate formal LV mass calculations.
- This approach may improve the accuracy of patient classification regarding LV hypertrophy.
Abstract:
Left ventricular (LV) hypertrophy is strongly associated with increased cardiovascular morbidity and mortality. The 2-dimensional LV mass algorithms suffer from measurement variability that can lead to misclassification of patients with LV hypertrophy as normal, or vice versa. Among the 4 echocardiographic measurements required by the 2-dimensional LV mass algorithms, epicardial and endocardial area have the lowest interobserver variation and could be used to corroborate LV mass calculations. We sought cut-off values that are able to discriminate between elevated and normal LV mass based on endocardial or epicardial area alone. Using data from 664 men enrolled in the Mind Your Heart Study, we calculated the correlation of LV mass index with epicardial area and endocardial area. We then used receiver operator characteristic curves to identify epicardial and endocardial area cut-points that could discriminate subjects with normal LV mass and LV hypertrophy. LV mass index was more strongly correlated with epicardial area compared with endocardial area, r = 0.70 versus r = 0.27, respectively. Epicardial area had a significantly higher area under the receiver operator characteristic curve (p <0.001) compared with endocardial area, 0.90 (95% confidence interval 0.86 to 0.93) versus 0.63 (95% confidence interval 0.57 to 0.71). An epicardial area cut-point of ≥38.0 cm2 corresponded to a sensitivity of 95.0% and specificity of 54.4% for detecting LV hypertrophy. In conclusion, epicardial area showed promise as a method of rapid screening for LV hypertrophy and could be used to validate formal LV mass calculations.
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