Magnetic Resonance in Medicine · 2001 · 151 citations · 22 references
Computed TomographyImage ReconstructionEngineeringAdvanced ImagingBiomedical EngineeringBlood FlowLocal Inversion TechniqueCardiologyBlood Flow MeasurementRadiologyHealth SciencesCardiovascular ImagingVascular ImageReconstruction TechniqueMedical ImagingInverse ProblemsMedical Image ComputingDigital Subtraction AngiographyChest Wall TissueSpiral Image AcquisitionBiomedical ImagingCoronary Vessel WallCurrent 2DChest Wall3D Imaging
Current 2D black blood coronary vessel wall imaging suffers from a relatively limited coverage of the coronary artery tree. Hence, a 3D approach facilitating more extensive coverage would be desirable. The straightforward combination of a 3D-acquisition technique together with a dual inversion prepulse can decrease the effectiveness of the black blood preparation. To minimize artifacts from insufficiently suppressed blood signal of the nearby blood pools, and to reduce residual respiratory motion artifacts from the chest wall, a novel local inversion technique was implemented. The combination of a nonselective inversion prepulse with a 2D selective local inversion prepulse allowed for suppression of unwanted signal outside a user-defined region of interest. Among 10 subjects evaluated using a 3D-spiral readout, the local inversion pulse effectively suppressed signal from ventricular blood, myocardium, and chest wall tissue in all cases. The coronary vessel wall could be visualized within the entire imaging volume.
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William C. Little, M Constantinescu, Robert J. Applegate et al. · Circulation · 1988 · 1.5K citations
Subsequent Myocardial Infarction, Coronary Artery Disease, Acute Myocardial Infarction +16
Fast Spiral Coronary Artery Imaging
Craig H. Meyer, Bob S. Hu, Dwight G. Nishimura et al. · Magnetic Resonance in Medicine · 1992 · 883 citations