Purpose To validate three widely‐used acceleration methods in four‐dimensional (4D) flow cardiac MR; segmented 4D‐spoiled‐gradient‐echo (4D‐SPGR), 4D‐echo‐planar‐imaging (4D‐EPI), and 4D‐k‐t Broad‐use Linear Acquisition Speed‐up Technique (4D‐k‐t BLAST). Materials and Methods Acceleration methods were investigated in static/pulsatile phantoms and 25 volunteers on 1.5 Tesla MR systems. In phantoms, flow was quantified by 2D phase‐contrast (PC), the three 4D flow methods and the time‐beaker flow measurements. The later was used as the reference method. Peak velocity and flow assessment was done by means of all sequences. For peak velocity assessment 2D PC was used as the reference method. For flow assessment, consistency between mitral i...
Background Accurate evaluation of valvular pathology is crucial in the timing of surgical intervent...
Background: Implementation of four-dimensional flow magnetic resonance (4D Flow MR) in clinical rout...
Background: Respiratory gating is often used in 4D-flow acquisition to reduce motion artifacts. Howe...
Purpose: To validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR...
Purpose: To validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR...
PurposeTo validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR; ...
Time-resolved 3D velocity-encoded MR imaging with velocity encoding in three directions (4D Flow) ha...
Four-dimensional phase-contrast (PC) velocity-encoded flow magnetic resonance imaging (4D flow MRI) ...
Four-dimensional (4D) flow sequences are an innovative type of MR sequences based upon phase contras...
BACKGROUND Four-dimensional (4D) flow magnetic resonance imaging (MRI) sequences with advanced pa...
PURPOSE Four-dimensional time-resolved phase-contrast cardiovascular magnetic resonance imaging (4D...
Background: Three-dimensional time-resolved (4D) phase-contrast (PC) CMR can visualize and quantify ...
Background: 4D-flow magnetic resonance imaging (MRI) is increasingly used. Purpose: To validate 4D-f...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
BACKGROUND: Implementation of four-dimensional flow magnetic resonance (4D Flow MR) in clinical rout...
Background Accurate evaluation of valvular pathology is crucial in the timing of surgical intervent...
Background: Implementation of four-dimensional flow magnetic resonance (4D Flow MR) in clinical rout...
Background: Respiratory gating is often used in 4D-flow acquisition to reduce motion artifacts. Howe...
Purpose: To validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR...
Purpose: To validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR...
PurposeTo validate three widely-used acceleration methods in four-dimensional (4D) flow cardiac MR; ...
Time-resolved 3D velocity-encoded MR imaging with velocity encoding in three directions (4D Flow) ha...
Four-dimensional phase-contrast (PC) velocity-encoded flow magnetic resonance imaging (4D flow MRI) ...
Four-dimensional (4D) flow sequences are an innovative type of MR sequences based upon phase contras...
BACKGROUND Four-dimensional (4D) flow magnetic resonance imaging (MRI) sequences with advanced pa...
PURPOSE Four-dimensional time-resolved phase-contrast cardiovascular magnetic resonance imaging (4D...
Background: Three-dimensional time-resolved (4D) phase-contrast (PC) CMR can visualize and quantify ...
Background: 4D-flow magnetic resonance imaging (MRI) is increasingly used. Purpose: To validate 4D-f...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
BACKGROUND: Implementation of four-dimensional flow magnetic resonance (4D Flow MR) in clinical rout...
Background Accurate evaluation of valvular pathology is crucial in the timing of surgical intervent...
Background: Implementation of four-dimensional flow magnetic resonance (4D Flow MR) in clinical rout...
Background: Respiratory gating is often used in 4D-flow acquisition to reduce motion artifacts. Howe...