4D flow MRI is an emerging technique that allows quantification of 3D blood flow in vivo. However, comparisons with methods of blood velocity quantification used in clinical routine are sparse. Therefore, we compared velocity quantification using 4D flow MRI with transthoracic and transesophageal echocardiography at the mitral and aortic valves and the aorta. Forty-eight stroke patients (age 67.3 ± 15.0 years) were examined by 4D flow MRI. Blood flow velocities were assessed using standardized 2D analysis planes positioned in the mitral valve (MV), aortic valve (AV), ascending aorta (AAo), and descending aorta (DAo) and were compared with echocardiography. MRI showed moderate-high correlations of systolic velocity values for the MV (r = 0.6...
Increased understanding of the pumping mechanics of the heart are of great importance to develop dia...
Purpose: To compare the accuracy of semiautomated flow tracking with that of semiautomated valve tra...
Objective We aim to validate four-dimensional flow cardiovascular magnetic resonance (4D flow CMR...
To quantify stiffness of the descending aorta (DAo) in stroke patients using 4D flow MRI and compare...
Background Aortic valve stenosis (AS) is the most prevalent valvular disease in the developed countr...
Aim: To compare 4D flow magnetic resonance imaging (MRI) and 2D phase contrast (PC) MRI when evaluat...
Abstract Background Aortic valve stenosis (AS) is the most prevalent valvular disease in the develop...
Four-dimensional (4D) flow magnetic resonance imaging (MRI) allows three-dimensional velocity encodi...
International audienceAim: to 1) evaluate the ability of 4D flow MRI to assess left ventricular (LV)...
A new method for quantifying the transvalvular flow through the mitral valve (MV) based on three-dir...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
Background: To evaluate the feasibility of a k?t accelerated multi-VENC 4D phase contrast flow MRI a...
Background: Doppler transthoracic echocardiography is routinely performed to measure peak mitral inf...
Purpose: To compare four-dimensional flow MRI with automated valve tracking to manual valve tracking...
Abstract Background Phase contrast cardiovascular magnetic resonance (CMR) is able to measure all th...
Increased understanding of the pumping mechanics of the heart are of great importance to develop dia...
Purpose: To compare the accuracy of semiautomated flow tracking with that of semiautomated valve tra...
Objective We aim to validate four-dimensional flow cardiovascular magnetic resonance (4D flow CMR...
To quantify stiffness of the descending aorta (DAo) in stroke patients using 4D flow MRI and compare...
Background Aortic valve stenosis (AS) is the most prevalent valvular disease in the developed countr...
Aim: To compare 4D flow magnetic resonance imaging (MRI) and 2D phase contrast (PC) MRI when evaluat...
Abstract Background Aortic valve stenosis (AS) is the most prevalent valvular disease in the develop...
Four-dimensional (4D) flow magnetic resonance imaging (MRI) allows three-dimensional velocity encodi...
International audienceAim: to 1) evaluate the ability of 4D flow MRI to assess left ventricular (LV)...
A new method for quantifying the transvalvular flow through the mitral valve (MV) based on three-dir...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
Background: To evaluate the feasibility of a k?t accelerated multi-VENC 4D phase contrast flow MRI a...
Background: Doppler transthoracic echocardiography is routinely performed to measure peak mitral inf...
Purpose: To compare four-dimensional flow MRI with automated valve tracking to manual valve tracking...
Abstract Background Phase contrast cardiovascular magnetic resonance (CMR) is able to measure all th...
Increased understanding of the pumping mechanics of the heart are of great importance to develop dia...
Purpose: To compare the accuracy of semiautomated flow tracking with that of semiautomated valve tra...
Objective We aim to validate four-dimensional flow cardiovascular magnetic resonance (4D flow CMR...