PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) sequence variants for rapid non-contrast carotid artery imaging.METHODS: Nine different 3D TOF MRA sequences were acquired in nine healthy volunteers on a standard clinical 1.5 T scanner. Three cartesian sequences (fully sampled (10:15 min), accelerated with SENSE (05:08 min), accelerated with Compressed SENSE (03:32 min)) and six different spiral sequences were acquired (spiral acquisition windows ranging from 10 to 5 ms (01:32 min-03:05 min)). Three readers graded the images qualitatively in terms of overall image quality, vessel sharpness, inhomogeneous intraluminal signal, background noise, visualization of large and small vessels and over...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
OBJECTIVES:Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiography...
PURPOSE: To optimize and preliminarily evaluate a three-dimensional (3D) radial balanced steady-stat...
PURPOSE: To quantify the accuracy of three-dimensional (3D) radial arterial spin labeled (ASL) magne...
PURPOSE: To quantify the accuracy of three-dimensional (3D) radial arterial spin labeled (ASL) magne...
OBJECTIVES Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiogra...
OBJECTIVES Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiogra...
Purpose: To implement a fast (similar to 15 min) MRI protocol for carotid plaque screening using 3D ...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
PURPOSE: To assess the clinical feasibility of spiral 3D Time-Of-Flight (TOF) MR Angiography (MRA) s...
OBJECTIVES:Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiography...
PURPOSE: To optimize and preliminarily evaluate a three-dimensional (3D) radial balanced steady-stat...
PURPOSE: To quantify the accuracy of three-dimensional (3D) radial arterial spin labeled (ASL) magne...
PURPOSE: To quantify the accuracy of three-dimensional (3D) radial arterial spin labeled (ASL) magne...
OBJECTIVES Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiogra...
OBJECTIVES Non-Cartesian Spiral readout can be implemented in 3D Time-of-flight (TOF) MR angiogra...
Purpose: To implement a fast (similar to 15 min) MRI protocol for carotid plaque screening using 3D ...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...
International audienceOBJECTIVES: To optimise and assess the clinical feasibility of a carotid non-E...