The pattern of action potential propagation during various tachyarrhythmias is strongly suspected to be composed of multiple re-entrant waves, but has never been imaged in detail deep within myocardial tissue. An understanding of the nature and dynamics of these waves is important in the development of appropriate electrical or pharmacological treatments for these pathological conditions. We propose a new imaging modality that uses ultrasound to visualize the patterns of propagation of these waves through the mechanical deformations they induce. The new method would have the distinct advantage of being able to visualize these waves deep within cardiac tissue. In this article, we describe one step that would be necessary in this imaging proc...
Electromechanical wave imaging (EWI) has recently been introduced as a noninvasive, ultrasound-based...
International audienceIntroduction: Assessing the mechanical properties of soft tissues can be extre...
Myocardial motion exhibits frequency components of up to 100 Hz as found by a phased tracking method...
The pattern of action potential propagation during various tachyarrhythmias is strongly suspected to...
Presently, the nature of action potential propagation deep within myocardial tissue is unclear. As a...
Cardiac conduction abnormalities remain a major cause of death and disability worldwide. However, as...
Echocardiography is a key imaging modality to assess cardiac anatomy and function. In the past decad...
Abstract—We have already shown that the pulsive vibration is excited on the myocardium 15 ms after t...
With ultrasound imaging, the motion and deformation of tissue can be measured. Tissue can be deforme...
Ultrasound imaging can be used to estimate the morphology as well as the motion and deformation of t...
The heart is an elastic excitable medium, in which mechanical contraction is triggered by nonlinear ...
With ultrasound imaging, the motion and deformation of tissue can be measured. Tissue can be deforme...
INTRODUCTION: The implications of mechanical deformation on calculated body surface potentials are i...
Diastolic heart failure is one of the principal causes of death in Western countries, and there is c...
Electromechanical wave imaging (EWI) has recently been introduced as a noninvasive, ultrasound-based...
International audienceIntroduction: Assessing the mechanical properties of soft tissues can be extre...
Myocardial motion exhibits frequency components of up to 100 Hz as found by a phased tracking method...
The pattern of action potential propagation during various tachyarrhythmias is strongly suspected to...
Presently, the nature of action potential propagation deep within myocardial tissue is unclear. As a...
Cardiac conduction abnormalities remain a major cause of death and disability worldwide. However, as...
Echocardiography is a key imaging modality to assess cardiac anatomy and function. In the past decad...
Abstract—We have already shown that the pulsive vibration is excited on the myocardium 15 ms after t...
With ultrasound imaging, the motion and deformation of tissue can be measured. Tissue can be deforme...
Ultrasound imaging can be used to estimate the morphology as well as the motion and deformation of t...
The heart is an elastic excitable medium, in which mechanical contraction is triggered by nonlinear ...
With ultrasound imaging, the motion and deformation of tissue can be measured. Tissue can be deforme...
INTRODUCTION: The implications of mechanical deformation on calculated body surface potentials are i...
Diastolic heart failure is one of the principal causes of death in Western countries, and there is c...
Electromechanical wave imaging (EWI) has recently been introduced as a noninvasive, ultrasound-based...
International audienceIntroduction: Assessing the mechanical properties of soft tissues can be extre...
Myocardial motion exhibits frequency components of up to 100 Hz as found by a phased tracking method...