2012Unpublished venueRequires access

Assessment of Left Ventricular Outflow Tract Dynamics During the Cardiac Cycle by Three-Dimensional Echocardiography

Mariano Falconi, Diego Funes, Aníbal A. Arias, Rodrigo Bagnati, Guillermo Jaimovich, Mauro Giacomini, Pablo Oberti, Arturo Cagide

Open publisher page 2 citations

Abstract

Background Anatomical and anatomo-functional disorders of the left ventricular outflow tract (LVOT) are subject of numerous studies. However, LVOT normal dynamic behavior, especially in procedures involving this area is also relevant, and may be evaluated with new three-dimensional imaging methods. Objective The aim of this study was to assess LVOT dynamics during the cardiac cycle with three-dimensional transesophageal echocardiography (TEE). Material and methods Forty two patients referred for transesophageal echocardiography (TEE) were prospectively included. All TEE studies were performed with a three-dimensional transesophageal probe. For complete volume images, 4 gated beats were acquired for off-line analysis. The cardiac cycle was divided in proto-systole (S1), mid-systole (S2) and tele-systole (S3) and proto-diastole (D1), mid-diastole (D2) and tele-diastole (D3). The LVOT area was measured by planimetry of the short axis, through orthogonal sections to the long axis of the LVOT in each phase. Results Mean age was 67±10 years, and 63% of the patients were male. The LVOT area (cm 2 ) in the different phases of the cardiac cycle was: S1: 4.44±1.02; S2: 4.15±0.91; S3: 3.9±0.89; D1: 3.76±0.98; D2: 3.89±1.04; D3: 4.34±1.11. Maximum area was observed in S1, corresponding to the closed position of the anterior leaflet of the mitral valve (AL) and reduced motion of the interventricular septum (IVS) towards LVOT; minimum area was obtained in D1 consistent with a certain persistence of IVS in the LVOT and maximal AL opening occupying part of the LVOT. Total area reduction was 15±11% (p<0.0001), changing the LVOT from a partially elliptical or circular shape (systole) to a markedly elliptical or semilunar one (diastole). Conclusion The LVOT changes its area and shape during the cardiac cycle, depending basically on the movement of the IVS (during systole) and mitral valve opening (during diastole). Rev Argent Cardiol 2012;80.

About this research paper

What this paper is about

Background Anatomical and anatomo-functional disorders of the left ventricular outflow tract (LVOT) are subject of numerous studies. However, LVOT normal dynamic behavior, especially in procedures involving this area is also relevant, and may be evaluated with new three-dimensional imaging methods. Objective The aim of this study was to assess LVOT dynamics during the cardiac cycle with three-dimensional transesophageal echocardiography (TEE). Material and methods Forty two patients referred for transesophageal echocardiography (TEE) were prospectively included. All TEE studies were performed with a three-dimensional transesophageal probe. For complete volume images, 4 gated beats were acquired for off-line analysis. The cardiac cycle was divided in proto-systole (S1), mid-systole (S2) and tele-systole (S3) and proto-diastole (D1), mid-diastole (D2) and tele-diastole (D3). The LVOT area was measured by planimetry of the short axis, through orthogonal sections to the long axis of the LVOT in each phase. Results Mean age was 67±10 years, and 63% of the patients were male. The LVOT area (cm 2 ) in the different phases of the cardiac cycle was: S1: 4.44±1.02; S2: 4.15±0.91; S3: 3.9±0.89; D1: 3.76±0.98; D2: 3.89±1.04; D3: 4.34±1.11. Maximum area was observed in S1, corresponding to the closed position of the anterior leaflet of the mitral valve (AL) and reduced motion of the interventricular septum (IVS) towards LVOT; minimum area was obtained in D1 consistent with a certain persistence of IVS in the LVOT and maximal AL opening occupying part of the LVOT. Total area reduction was 15±11% (p<0.0001), changing the LVOT from a partially elliptical or circular shape (systole) to a markedly elliptical or semilunar one (diastole). Conclusion The LVOT changes its area and shape during the cardiac cycle, depending basically on the movement of the IVS (during systole) and mitral valve opening (during diastole). Rev Argent Cardiol 2012;80.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Background Anatomical and anatomo-functional disorders of the left ventricular outflow tract (LVOT) are subject of numerous studies. However, LVOT normal dynamic behavior, especially in procedures involving this area is also relevant, and may be evaluated with new three-dimensional imaging methods. Objective The aim of this study was to assess LVOT dynamics during the cardiac cycle with three-dimensional transesophageal echocardiography (TEE). Material and methods Forty two patients referred for transesophageal echocardiography (TEE) were prospectively included. All TEE studies were performed with a three-dimensional transesophageal probe. For complete volume images, 4 gated beats were acquired for off-line analysis. The cardiac cycle was divided in proto-systole (S1), mid-systole (S2) and tele-systole (S3) and proto-diastole (D1), mid-diastole (D2) and tele-diastole (D3). The LVOT area was measured by planimetry of the short axis, through orthogonal sections to the long axis of the LVOT in each phase. Results Mean age was 67±10 years, and 63% of the patients were male. The LVOT area (cm 2 ) in the different phases of the cardiac cycle was: S1: 4.44±1.02; S2: 4.15±0.91; S3: 3.9±0.89; D1: 3.76±0.98; D2: 3.89±1.04; D3: 4.34±1.11. Maximum area was observed in S1, corresponding to the closed position of the anterior leaflet of the mitral valve (AL) and reduced motion of the interventricular septum (IVS) towards LVOT; minimum area was obtained in D1 consistent with a certain persistence of IVS in the LVOT and maximal AL opening occupying part of the LVOT. Total area reduction was 15±11% (p<0.0001), changing the LVOT from a partially elliptical or circular shape (systole) to a markedly elliptical or semilunar one (diastole). Conclusion The LVOT changes its area and shape during the cardiac cycle, depending basically on the movement of the IVS (during systole) and mitral valve opening (during diastole). Rev Argent Cardiol 2012;80.

Key concepts: Ventricular outflow tract, Cardiac cycle, Diastole, Systole, Cardiology, Internal medicine, Interventricular septum, Medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Assessment of Left Ventricular Outflow Tract Dynamics During the Cardiac Cycle by Three-Dimensional Echocardiography — Research Paper | ScholarLens