Purpose To investigate the accuracy, reproducibility and sensitivity to respiratory gating, field strength and ventricle segmentation of hemodynamic force quantification in the left and right ventricles of the heart (LV and RV) using 4D-flow magnetic resonance imaging (MRI), and to provide free hemodynamic force analysis software. Materials and methods A pulsatile flow phantom was imaged using 4D flow MRI and laser-based particle image velocimetry (PIV). Cardiac 4D flow MRI was performed in healthy volunteers at 1.5T (n = 23). Reproducibility was investigated using MR scanners from two different vendors on the same day (n = 8). Subsets of volunteers were also imaged without respiratory gating (n = 17), at 3T on the same day (n = 6), and 1–1...
Purpose: Hemodynamic atlases can add to the pathophysiological understanding of cardiac diseases. Th...
Current diagnostic tools for assessing cardiovascular disease mostly focus on measuring a given biom...
Carlsson M, Heiberg E, Toger J, Arheden H. Quantification of left and right ventricular kinetic ener...
To investigate the accuracy, reproducibility and sensitivity to respiratory gating, field strength a...
Purpose To investigate the accuracy, reproducibility and sensitivity to respiratory gating, field st...
Intracardiac blood flow is driven by hemodynamic forces that are exchanged between the blood and myo...
7siPatients with heart failure with left ventricular (LV) dyssynchrony often do not respond to cardi...
Patients with heart failure with left ventricular (LV) dyssynchrony often do not respond to cardiac ...
Background: 4D-flow magnetic resonance imaging (MRI) is increasingly used. Purpose: To validate 4D-f...
Intraventricular pressure gradients or hemodynamic forces, which are their global measure integrated...
The main function of the heart is to pump blood throughout the cardiovascular system by generating p...
Intraventricular pressure gradients or hemodynamic forces, which are their global measure integrated...
PURPOSE: To investigate whether 4D flow magnetic resonance imaging (MRI) can detect subtle right ven...
International audienceAim: to 1) evaluate the ability of 4D flow MRI to assess left ventricular (LV)...
The aim of the current study was to assess the scan-rescan reproducibility of left ventricular (LV) ...
Purpose: Hemodynamic atlases can add to the pathophysiological understanding of cardiac diseases. Th...
Current diagnostic tools for assessing cardiovascular disease mostly focus on measuring a given biom...
Carlsson M, Heiberg E, Toger J, Arheden H. Quantification of left and right ventricular kinetic ener...
To investigate the accuracy, reproducibility and sensitivity to respiratory gating, field strength a...
Purpose To investigate the accuracy, reproducibility and sensitivity to respiratory gating, field st...
Intracardiac blood flow is driven by hemodynamic forces that are exchanged between the blood and myo...
7siPatients with heart failure with left ventricular (LV) dyssynchrony often do not respond to cardi...
Patients with heart failure with left ventricular (LV) dyssynchrony often do not respond to cardiac ...
Background: 4D-flow magnetic resonance imaging (MRI) is increasingly used. Purpose: To validate 4D-f...
Intraventricular pressure gradients or hemodynamic forces, which are their global measure integrated...
The main function of the heart is to pump blood throughout the cardiovascular system by generating p...
Intraventricular pressure gradients or hemodynamic forces, which are their global measure integrated...
PURPOSE: To investigate whether 4D flow magnetic resonance imaging (MRI) can detect subtle right ven...
International audienceAim: to 1) evaluate the ability of 4D flow MRI to assess left ventricular (LV)...
The aim of the current study was to assess the scan-rescan reproducibility of left ventricular (LV) ...
Purpose: Hemodynamic atlases can add to the pathophysiological understanding of cardiac diseases. Th...
Current diagnostic tools for assessing cardiovascular disease mostly focus on measuring a given biom...
Carlsson M, Heiberg E, Toger J, Arheden H. Quantification of left and right ventricular kinetic ener...