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Updated: Jan 7, 2026

Evaluation of Left Ventricular Structure and Function using 3D Echocardiography
Published on: October 28, 2020
Diagnostic performance of left ventricular strain for predicting physiologically significant coronary artery disease
Pratya Rawangban1, Anusith Tunhasiriwet1, Rawish Wimolwattanaphan1
1Chulabhorn Royal Academy Hospital, Bangkok, Thailand.
Insights
The ischemic Bull's-eye pattern from left ventricular global longitudinal strain (LV GLS) shows high sensitivity for diagnosing coronary artery disease (CAD). Combining this pattern with central aortic pulse pressure improves diagnostic accuracy for obstructive CAD.
Area of Science:
- Cardiology
- Medical Imaging
- Diagnostic Tools
Background:
- Coronary artery disease (CAD) is a major global health concern.
- Invasive coronary angiography is definitive but costly; non-invasive screening is preferred.
- The diagnostic utility of left ventricular global longitudinal strain (LV GLS) for obstructive CAD needs clarification.
Purpose of the Study:
- To assess the accuracy of LV GLS in identifying significant CAD.
- To compare LV GLS with invasive measures like fractional flow reserve (FFR) and non-hyperemic pressure ratios (NHPRs).
- To explore LV GLS patterns and clinical factors for improved CAD prediction.
Main Methods:
- Retrospective cohort study of patients with suspected CAD undergoing angiography and physiological testing.
- Resting echocardiograms analyzed for LV GLS.
- Receiver operating characteristic (ROC) analysis and multivariate modeling used to evaluate predictive performance.
Main Results:
- Average LV GLS did not significantly differ between groups with and without significant CAD.
- The ischemic Bull's-eye pattern from LV GLS showed high sensitivity (93%) and negative predictive value (87%).
- Central aortic pulse pressure and the ischemic Bull's-eye pattern were independent predictors of significant CAD (AUC=0.76).
Conclusions:
- Average LV GLS is not a reliable standalone predictor of significant CAD.
- The ischemic Bull's-eye pattern derived from LV GLS is a valuable screening tool.
- Integrating LV GLS patterns and central aortic pulse pressure may enhance initial CAD screening protocols.
Background:
Coronary artery disease (CAD) remains a leading cause of morbidity and mortality worldwide. While invasive coronary angiography is the gold standard for diagnosing obstructive CAD, contemporary guidelines advocate for initial evaluation using resting transthoracic echocardiography. The role of left ventricular global longitudinal strain (LV GLS) as a screening tool in the diagnosis of obstructive CAD remains unclear.
Objective:
To evaluate the diagnostic utility of LV GLS in predicting physiologically significant CAD as confirmed by intracoronary physiological tests such as fractional flow reserve (FFR) and/or non-hyperemic pressure ratios (NHPRs).
Methods:
We conducted a retrospective cohort study at the Cardiac Center, Chulabhorn Hospital, Thailand, enrolling patients with suspected CAD who underwent coronary angiography with FFR and/or NHPRs between August 2018 and September 2024. Resting echocardiograms were reevaluated for LV GLS. Receiver operating characteristic (ROC) analysis was performed to assess the predictive value of LV GLS for physiologically significant CAD. A multivariate model incorporating LV GLS patterns and clinical parameters was also developed.
Results:
Of the 207 patients analyzed, 99 (47 %) had positive physiological test results (FFR ≤0.80 and/or NHPR ≤0.89). The average LV GLS was lower in the physiologically positive group (-15.6 %) compared to the negative group (-16.8 %), though this difference was not statistically significant. ROC analysis of average LV GLS yielded an area under the curve (AUC) of 0.56 (95 % CI: 0.48-0.64, p = 0.130). However, the ischemic Bull's-eye pattern derived from LV GLS demonstrated high sensitivity (93 %) and negative predictive value (87 %). Multivariate analysis identified central aortic pulse pressure (OR 1.02, 95 % CI = 1.00-1.04, p = 0.042) and the ischemic Bull's-eye pattern (OR 16.33, 95 % CI = 5.16-51.72, p < 0.001) as independent predictors of physiologically significant CAD. The combined model achieved an AUC of 0.76, outperforming both the average LV GLS alone and 2024 ESC clinical risk factor-based likelihood.
Conclusions:
While the average LV GLS is not a robust predictor of physiologically significant CAD, the ischemic Bull's-eye pattern derived from LV GLS offers high sensitivity and negative predictive value. When combined with central aortic pulse pressure, this approach enhances the diagnostic accuracy for physiologically significant CAD. These findings support the integration of ischemic Bull's-eye patterns derived from LV GLS and central aortic pulse pressure into initial CAD screening protocols.
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