Key result
2-dimensional speckle tracking echocardiography identified severe coronary artery disease in women with normal ejection fraction through significantly impaired global longitudinal strain (-14.3% vs -17.2%) and increased mechanical dyssynchrony.
Why the study?
Does 2-Dimensional Speckle Tracking Echocardiography predict severe coronary artery disease in women with normal left ventricular function?
Case-Control (n=70)
No
Does 2-Dimensional Speckle Tracking Echocardiography predict severe coronary artery disease in women with normal left ventricular function?
Absolute Event Rate: -14.3% vs -17.2%
p-value: p=<0.001
2D-STE parameters, particularly LV dyssynchrony and abnormal strain values, can accurately identify severe coronary artery disease in women with normal left ventricular ejection fraction.
Suggests global longitudinal strain may help detect occult coronary disease in women with preserved ejection fraction; leaves.
BACKGROUND: Women who have coronary artery disease (CAD) often present with atypical symptoms that may lead to misdiagnosis. We assessed strain, systolic strain rate and left ventricular dyssynchrony with 2- dimensional- speckle tracking echocardiography to evaluate its use as a non-invasive method for detecting CAD in women with normal ejection fraction compared with healthy women controls with a normal angiogram. METHODS: We included 35 women with CAD confirmed by coronary angiography and a positive exercise stress echocardiography and 35 women in a control group with a low pretest probability of CAD, normal angiogram and a normal stress echocardiography with normal EF. RESULTS: , P = .05); global longitudinal LV S (GLS) (-14.3% vs -17.2%, P < .001). For mechanical dyssynchrony, SD of the GLS time-to-peak (TTP) was computed (99 vs 33 ms, P < .001). The receiver operating characteristic and area under the curve (AUC) were calculated. A cutoff value of 45 ms for 1 SD of the longitudinal S TTP had 97% sensitivity and 89% specificity (AUC, 0.96). GLS cutoff value of -15.87% had 71% sensitivity and 74% specificity; AUC, 0.74 in differentiating CAD and control groups. The combined GLS, CS, and SD of the longitudinal S TTP had an AUC of 0.96 (sensitivity 97%, specificity 86%). Interclass correlations of the GLS segment and GLS TTP measurements were 0.49 (95% CI, 0.227-0.868) and 0.74 (95% CI, 0.277-0.926), respectively. CONCLUSION: In women with a normal echocardiogram and LVEF, CAD can be identified by dyssynchrony and abnormal strain values, as evidenced by 2D-STE.
No takes yet. Share an insight, caveat, or question.
Hubbard et al. (2017) conducted a case-control in Coronary artery disease (n=70). 2-Dimensional Speckle Tracking Echocardiography (2D-STE) vs. Healthy women controls with normal angiogram was evaluated on Global longitudinal strain (GLS) (p=<0.001). 2-dimensional speckle tracking echocardiography identified severe coronary artery disease in women with normal ejection fraction through significantly impaired global longitudinal strain (-14.3% vs -17.2%) and increased mechanical dyssynchrony.
Synapse has enriched 2 closely related papers on similar clinical questions. Consider them for comparative context: