Ripple Artifact Reduction Using Slice Overlap in Slice Encoding for Metal Artifact Correction

Publication date

2015-01

Authors

den Harder, J. Chiel
van Yperen, Gert H.
Blume, Ulrike A.
Bos, CORCID 0000-0002-9246-3242ISNI 0000000388845122

Editors

Advisors

Supervisors

Document Type

Article

Collections

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License

taverne

Abstract

PurposeMultispectral imaging (MSI) significantly reduces metal artifacts. Yet, especially in techniques that use gradient selection, such as slice encoding for metal artifact correction (SEMAC), a residual ripple artifact may be prominent. Here, an analysis is presented of the ripple artifact and of slice overlap as an approach to reduce the artifact. MethodsThe ripple artifact was analyzed theoretically to clarify its cause. Slice overlap, conceptually similar to spectral bin overlap in multi-acquisition with variable resonances image combination (MAVRIC), was achieved by reducing the selection gradient and, thus, increasing the slice profile width. Time domain simulations and phantom experiments were performed to validate the analyses and proposed solution. ResultsDiscontinuities between slices are aggravated by signal displacement in the frequency encoding direction in areas with deviating B-0. Specifically, it was demonstrated that ripple artifacts appear only where B-0 varies both in-plane and through-plane. Simulations and phantom studies of metal implants confirmed the efficacy of slice overlap to reduce the artifact. ConclusionThe ripple artifact is an important limitation of gradient selection based MSI techniques, and can be understood using the presented simulations. At a scan-time penalty, slice overlap effectively addressed the artifact, thereby improving image quality near metal implants. Magn Reson Med 73:318-324, 2015. (c) 2014 Wiley Periodicals, Inc.

Keywords

MRI, SEMAC, ripple artifact, pile-up artifact, metal, implant, MAGNETIC-SUSCEPTIBILITY, SHIFTS, Taverne, Journal Article

Citation

den Harder, J C, van Yperen, G H, Blume, U A & Bos, C 2015, 'Ripple Artifact Reduction Using Slice Overlap in Slice Encoding for Metal Artifact Correction', Magnetic Resonance in Medicine, vol. 73, no. 1, pp. 318-324. https://doi.org/10.1002/mrm.25127