The assessment of disrupted myocardial fiber arrangement may help to understand and diagnose hypertrophic or ischemic cardiomyopathy. We hereby proposed and developed shear wave imaging (SWI), which is an echocardiography-based, noninvasive, real-time, and easy-to-use technique, to map myofiber orientation. Five in vitro porcine and three in vivo open-chest ovine hearts were studied. Known in physics, shear wave propagates faster along than across the fiber direction. SWI is a technique that can generate shear waves travelling in different directions with respect to each myocardial layer. SWI further analyzed the shear wave velocity across the entire left-ventricular (LV) myocardial thickness, ranging between 10 (diastole) and 25 mm (systol...
Systemic hypertension is a causative factor in left ventricular hypertrophy which has a range of co-...
This paper discussed the left ventricular myocardium structure in both normal and pathological state...
Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maint...
We have previously proven the feasibility of ultrasound-based shear wave imaging (SWI) to non-invasi...
International audienceCardiac pathologies are often characterized by a significant change of myocard...
Shear Wave Elastography (SWE) is a potential tool for non-invasively assessing myocardial stiffness ...
Abnormal changes in orientation of myofibers are associated with various cardiac diseases such as ar...
As a step toward the goal of relating changes in underlying myocardial structure to observed altered...
ObjectivesThe goal of this study was to assess whether myocardial stiffness could be measured by she...
We therefore hypothesize that fiber reorientation could be a local adaptive mechanism by which the s...
Shear wave elastography (SWE) is a potential tool to non-invasively assess cardiac muscle stiffness....
Abstract of: ESC Congress 2008, Munich, Germany, 30 August - 3 September 2008The three-dimensional (...
We apply a high frame rate (over 500 Hz) tissue Doppler method to measure the propagation velocity o...
The human heart is composed of a helical network of musclefibers. Anisotropic least squares filterin...
Cardiac myofiber orientation is a crucial determinant of the distribution of myocardial wall stress....
Systemic hypertension is a causative factor in left ventricular hypertrophy which has a range of co-...
This paper discussed the left ventricular myocardium structure in both normal and pathological state...
Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maint...
We have previously proven the feasibility of ultrasound-based shear wave imaging (SWI) to non-invasi...
International audienceCardiac pathologies are often characterized by a significant change of myocard...
Shear Wave Elastography (SWE) is a potential tool for non-invasively assessing myocardial stiffness ...
Abnormal changes in orientation of myofibers are associated with various cardiac diseases such as ar...
As a step toward the goal of relating changes in underlying myocardial structure to observed altered...
ObjectivesThe goal of this study was to assess whether myocardial stiffness could be measured by she...
We therefore hypothesize that fiber reorientation could be a local adaptive mechanism by which the s...
Shear wave elastography (SWE) is a potential tool to non-invasively assess cardiac muscle stiffness....
Abstract of: ESC Congress 2008, Munich, Germany, 30 August - 3 September 2008The three-dimensional (...
We apply a high frame rate (over 500 Hz) tissue Doppler method to measure the propagation velocity o...
The human heart is composed of a helical network of musclefibers. Anisotropic least squares filterin...
Cardiac myofiber orientation is a crucial determinant of the distribution of myocardial wall stress....
Systemic hypertension is a causative factor in left ventricular hypertrophy which has a range of co-...
This paper discussed the left ventricular myocardium structure in both normal and pathological state...
Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maint...