In this paper we are presenting a method for achieving strain analysis of cardiac tissues from 3D ultrasound images. First of all, the left ventricle was segmented by an iterative snake algorithm which exploits the gradient vector flow field estimated from the 3D images. Once the ventricle was segmented, a set of points located on the external surface of the ventricle was selected. The movement of all these points along the entire cardiac cycle was calculated by using speckle tracking techniques based on the minimization of a Sum of Absolute Differences. The strain of all the segments connecting two of the considered points was computed, together with the rotation of the points along the long axis of the ventricle. The method was tested on ...
International audienceA plethora of techniques for cardiac deformation imaging with 3D ultrasound, t...
Ultrasound-based 2D speckle-tracking echocardiography (US-2D-STE) is increasingly used to assess the...
Natural myocardial markers, or speckles, originated from constructive and destructive interference o...
In this paper we are presenting a method for achieving strain analysis of cardiac tissues from 3D ul...
In this paper, we are presenting a method for achieving strain analysis of cardiac tissues from 3D u...
textabstractThe strain and strain-rate measures are commonly used for the analysis and assessment of...
Ischemic heart disease typically produces regional abnormalities of myocardial (mechanical) function...
A mechanics-based analysis of data from three-dimensional speckle tracking echocardiography is propo...
A mechanics–based analysis of data from three–dimensional speckle tracking echocardiography is propo...
A plethora of techniques for cardiac deformation imaging with 3D ultrasound, typically referred to a...
In this paper, the authors attempt to concisely present the anatomical and pathophysiological bases ...
Speckle tracking echocardiography (STE) has recently emerged as a quantitative technique to accurate...
Abstract Speckle-tracking echocardiography has recently emerged as a quantitative ultrasound techni...
International audienceA plethora of techniques for cardiac deformation imaging with 3D ultrasound, t...
Ultrasound-based 2D speckle-tracking echocardiography (US-2D-STE) is increasingly used to assess the...
Natural myocardial markers, or speckles, originated from constructive and destructive interference o...
In this paper we are presenting a method for achieving strain analysis of cardiac tissues from 3D ul...
In this paper, we are presenting a method for achieving strain analysis of cardiac tissues from 3D u...
textabstractThe strain and strain-rate measures are commonly used for the analysis and assessment of...
Ischemic heart disease typically produces regional abnormalities of myocardial (mechanical) function...
A mechanics-based analysis of data from three-dimensional speckle tracking echocardiography is propo...
A mechanics–based analysis of data from three–dimensional speckle tracking echocardiography is propo...
A plethora of techniques for cardiac deformation imaging with 3D ultrasound, typically referred to a...
In this paper, the authors attempt to concisely present the anatomical and pathophysiological bases ...
Speckle tracking echocardiography (STE) has recently emerged as a quantitative technique to accurate...
Abstract Speckle-tracking echocardiography has recently emerged as a quantitative ultrasound techni...
International audienceA plethora of techniques for cardiac deformation imaging with 3D ultrasound, t...
Ultrasound-based 2D speckle-tracking echocardiography (US-2D-STE) is increasingly used to assess the...
Natural myocardial markers, or speckles, originated from constructive and destructive interference o...