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Updated: Sep 24, 2025

Evaluation of Left Ventricular Structure and Function using 3D Echocardiography
Published on: October 28, 2020
3D Echocardiography - A Useful Method for Cardiovascular Risk Assessment in End-Stage Renal Disease Patients
M Kovářová1, Z Žilinská, J Páleš
15th Department of Internal Medicine, Comenius University Faculty of Medicine in Bratislava, University Hospital Bratislava, Ružinovská 6, 826 06 Bratislava, Slovakia. peter.jackuliak@fmed.uniba.sk.
Insights
Ankle-brachial index (ABI) is not a reliable cardiovascular risk marker in end-stage renal disease (ESRD) patients. Echocardiography, especially 3D, better assesses cardiac changes in hemodialysis and transplant patients.
Area of Science:
- Nephrology
- Cardiology
- Medical Imaging
Background:
- Patients with chronic kidney disease (CKD) face high cardiovascular mortality risk.
- Hemodialysis is linked to accelerated atherosclerosis.
- Ankle-brachial index (ABI) predicts cardiovascular events but its role in CKD is unclear.
Purpose of the Study:
- To identify subclinical cardiovascular risk markers using ABI and echocardiography in end-stage renal disease (ESRD) patients.
- To compare cardiac structure and function in hemodialysis patients, kidney transplant recipients, and controls.
- To evaluate the utility of 2D and 3D echocardiography in assessing cardiac abnormalities in CKD.
Main Methods:
- Assessed ABI and echocardiographic parameters (2D and 3D) in ESRD (dialysis), post-transplant, and control groups.
- Evaluated left ventricular (LV) structure and function.
- Compared sensitivity of various echocardiographic indices for cardiac changes.
Main Results:
- Cardiac structural changes are more pronounced than functional changes in hemodialysis patients.
- 3D echocardiography is more sensitive than 2D for assessing myocardial structure and function in CKD.
- ABI is not a suitable screening tool for cardiovascular risk in ESRD patients.
- Kidney transplantation showed a trend towards favorable cardiac remodeling, particularly in function, but differences were not statistically significant.
Conclusions:
- Ankle-brachial index is inappropriate for screening cardiovascular risk in end-stage renal disease patients.
- 3D echocardiography offers superior assessment of cardiac structural and functional abnormalities in CKD.
- Kidney transplantation may improve cardiac parameters, warranting further investigation.
Abstract:
Patients with chronic kidney disease (CKD) have an increased risk of premature mortality, mainly due to cardiovascular causes. The association between hemodialysis and accelerated atherosclerosis has long been described. The ankle-brachial index (ABI) is a surrogate marker of atherosclerosis and recent studies indicate its utility as a predictor of future cardiovascular disease and all-cause mortality. The clinical implications of ABI cut-points are not well defined in patients with CKD. Echocardiography is the most widely used imaging method for cardiac evaluation. Structural and functional myocardial abnormalities are common in patients with CKD due to pressure and volume overload as well as non-hemodynamic factors associated with CKD. Our study aimed to identify markers of subclinical cardiovascular risk assessed using ABI and 2D and 3D echocardiographic parameters evaluating left ventricular (LV) structure and function in patients with end-stage renal disease (ESRD) (patients undergoing dialysis), patients after kidney transplantation and non-ESRD patients (control). In ESRD, particularly in hemodialysis patients, changes in cardiac structure, rather than function, seems to be more pronounced. 3D echocardiography appears to be more sensitive than 2D echocardiography in the assessment of myocardial structure and function in CKD patients. Particularly 3D derived end-diastolic volume and 3D derived LV mass indexed for body surface appears to deteriorate in dialyzed and transplanted patients. In 2D echocardiography, myocardial mass represented by left ventricular mass/body surface area index (LVMI) appears to be a more sensitive marker of cardiac structural changes, compared to relative wall thickness (RWT), left ventricle and diastolic diameter index (LVEDDI) and left atrial volume index (LAVI). We observed a generally favorable impact of kidney transplantation on cardiac structure and function; however, the differences were non-significant. The improvement seems to be more pronounced in cardiac function parameters, peak early diastolic velocity/average peak early diastolic velocity of mitral valve annulus (E/e´), 3D left ventricle ejection fraction (LV EF) and global longitudinal strain (GLS). We conclude that ABI is not an appropriate screening test to determine the cardiovascular risk in patients with ESRD.
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