SEMAC: Slice encoding for metal artifact correction in MRI
SEMAC: кодирование срезов для коррекции артефактов от металлических объектов в МРТ
2009-03-06
SCID: 54.1/n8cxag3p
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MRI near metallic implantsSEMACmetal artifact correctionthrough-plane distortionsview-angle tilting
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Abstract (AI)
Magnetic resonance imaging (MRI) near metallic implants remains an unmet need because of severe artifacts, which mainly stem from large metal-induced field inhomogeneities. This work addresses MRI near metallic implants with an innovative imaging technique called "Slice Encoding for Metal Artifact Correction" (SEMAC). The SEMAC technique corrects metal artifacts via robust encoding of each excited slice against metal-induced field inhomogeneities. The robust slice encoding is achieved by extending a view-angle-tilting (VAT) spin-echo sequence with additional z-phase encoding. Although the VAT compensation gradient suppresses most in-plane distortions, the z-phase encoding fully resolves distorted excitation profiles that cause through-plane distortions. By positioning all spins in a region-of-interest to their actual spatial locations, the through-plane distortions can be corrected by summing up the resolved spins in each voxel. The SEMAC technique does not require additional hardware and can be deployed to the large installed base of whole-body MRI systems. The efficacy of the SEMAC technique in eliminating metal-induced distortions with feasible scan times is validated in phantom and in vivo spine and knee studies.
Key Findings
1
Phantom and in vivo spine and knee studies validated effective metal-induced distortion reduction with feasible scan times.
2
SEMAC corrects MRI metal artifacts by robustly encoding each excited slice against metal-induced magnetic-field inhomogeneities.
3
SEMAC requires no additional hardware and can be implemented on existing whole-body MRI systems.
4
The method extends a view-angle-tilting spin-echo sequence with additional z-phase encoding to resolve distorted excitation profiles.
5
VAT suppresses most in-plane distortions, while SEMAC’s z-phase encoding corrects through-plane distortions by locating spins at their actual spatial positions.
Research Object
Magnetic resonance imaging (MRI) near metallic implants using the SEMAC acquisition technique
Research Subject
Correction of metal-induced in-plane and through-plane image distortions caused by field inhomogeneities
Publication Details
Publication Date
2009-03-06
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