AimsNovel fully automated left chamber quantification software for three-dimensional echocardiography (3DE) has a potential for reliable measurement of left ventricular (LV) volumes and ejection fraction (LVEF). However, the optimal setting of global LV endocardial border threshold has not been settled.Methods and resultsWe performed LV volumes and LVEF analysis using fully automated left chamber quantification software (Dynamic HeartModelA.I., Philips Medical Systems) in 65 patients who had undergone both 3DE and cardiac magnetic resonance (CMR) examinations on the same day. We recorded LV end-diastolic volume (LVEDV) and LV end-systolic volume (LVESV) according to the change in LV global border threshold settings from 0-point to 100-point...
Left ventricular systolic function evaluation is an essential part of all transthoracic echocardiogr...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
AIMS:Novel fully automated left chamber quantification software for three-dimensional echocardiograp...
AbstractBackgroundTraditional 3-dimensional echocardiography (3DE) with volumetric scanning techniqu...
Background Recently, a new automated software package (HeartModel) was developed to obtain three-dim...
Abstract Background Study on automated three-dimensional (3D) quantification of left heart parameter...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
Abstract Background Left ventricular size and function are important prognostic factors in heart dis...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Left ventricular systolic function evaluation is an essential part of all transthoracic echocardiogr...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
AIMS:Novel fully automated left chamber quantification software for three-dimensional echocardiograp...
AbstractBackgroundTraditional 3-dimensional echocardiography (3DE) with volumetric scanning techniqu...
Background Recently, a new automated software package (HeartModel) was developed to obtain three-dim...
Abstract Background Study on automated three-dimensional (3D) quantification of left heart parameter...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
The aim of this study was to investigate the accuracy and reproducibility of the quantification of l...
Abstract Background Left ventricular size and function are important prognostic factors in heart dis...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
Background: Although left ventricular (LV) quantification software for transthoracic three-dimension...
Left ventricular systolic function evaluation is an essential part of all transthoracic echocardiogr...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...
Our goals were to: (1) develop a technique for 3-dimensional (3D) direct, model-independent quantita...