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Updated: Jan 4, 2026

Evaluation of Left Ventricular Structure and Function using 3D Echocardiography
Published on: October 28, 2020
Left Ventricular Strain and Rotation in Patients with Dilated Cardiomyopathy and Severe Systolic Dysfunction
Elena Kinova1, Desislava Somleva-Todorova2, Assen Goudev2
1Department of Cardiology, University Hospital "Tsaritsa Yoanna - ISUL," Medical University Sofia, Sofia, Bulgaria, kinova.e@abv.bg.
Insights
In dilated cardiomyopathy (DCM), left ventricular (LV) mechanics like global longitudinal strain and basal rotation can predict severe systolic dysfunction. These findings aid in risk stratification and treatment decisions for DCM patients.
Area of Science:
- Cardiology
- Echocardiography
- Cardiac Mechanics
Background:
- Dilated cardiomyopathy (DCM) is characterized by reduced left ventricular (LV) strain and twist.
- The precise impact of varying systolic dysfunction severity on LV deformation rate is not well-understood.
Purpose of the Study:
- To investigate the relationship between LV mechanics and conventional/tissue Doppler imaging (TDI) parameters in DCM.
- To identify a set of echocardiographic findings indicative of severe systolic dysfunction (SSD) in DCM patients.
Main Methods:
- Prospective enrollment of 52 NYHA class III-IV heart failure patients with ejection fraction (EF) ≤45%.
- Severe systolic LV dysfunction defined as EF <30%.
- Echocardiography with 2D-speckle tracking analysis performed.
Main Results:
- Strong correlations observed between global longitudinal strain (GLS) and EF (r=-0.53), circumferential strain at mid-level (CSmid) and EF (r=-0.50), and GLS with systolic medial mitral annulus velocity (r=-0.56).
- Basal endocardial rotation (BRendo) showed weak correlations with EF and CSmid.
- GLS and BRendo identified as predictors of EF change; ROC analysis defined cut-off values for GLS (-7.2%), CSmid (-7.5%), and BRendo (-2.43°) for SSD detection.
Conclusions:
- LV mechanics parameters correlate with conventional and TDI systolic parameters in DCM.
- Altered LV longitudinal/circumferential deformation and basal rotation can identify patients with SSD.
- These mechanical parameters may assist in risk stratification and therapeutic decision-making for DCM.
Introduction:
In dilated cardiomyopathy (DCM) left ventricular (LV) strain and twist are significantly decreased. However, the rate of attenuation has not been investigated well in patients with varying degrees of systolic dysfunction.
Aim:
The present study aimed to investigate the relationship between LV deformational and rotational mechanics and conventional and tissue Doppler imaging (TDI) parameters, and to search for a constellation of findings distinguishing patients with severe systolic dysfunction (SSD) in DCM.
Methods:
Fifty-two patients with heart failure NYHA class III-IV and ejection fraction (EF) ≤45% were prospectively enrolled (mean age 61.8 ± 13.4 years; 36 males, 69%). Severe systolic LV dysfunction was considered as EF <30%. Echocardiography with 2D-speckle tracking analysis was performed.
Results:
The relationships of global longitudinal strain (GLS) with EF, circumferential strain at mid-level (CSmid), and systolic medial mitral annulus velocity were strong (r = -0.53, 0.67, and -0.56, respectively, p < 0.0001 for all). A good correlation was found between CSmid and EF (r = -0.50, p < 0.0001). There were weak correlations between basal endocardial rotation (BRendo) and EF and CSmid. Multiple regression analysis found GLS (p < 0.0001) and BRendo (p = 0.04) to be predictors of the change of EF. In ROC curve analysis, the cut-off values of GLS -7.2% (AUC 0.81, p < 0.0001), CSmid -7.5% (AUC 0.76, p = 0.002), and BRendo -2.43° (AUC 0.68, p = 0.03) identified SSD.
Conclusions:
Parameters of LV mechanics were related to conventional and TDI systolic parameters in patients with DCM. The degree of alterations of LV longitudinal and circumferential deformation and basal rotation may identify patients with SSD and a higher risk, and may help in therapeutic decision making.
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