Accelerated Slice Encoding for Metal Artifact Correction

作者:Hargreaves Brian A*; Chen Weitian; Lu Wenmiao; Alley Marcus T; Gold Garry E; Brau Anja C S; Pauly John M; Pauly Kim Butts
来源:Journal of Magnetic Resonance Imaging, 2010, 31(4): 987-996.
DOI:10.1002/jmri.22112

摘要

Purpose: To demonstrate accelerated imaging with both artifact reduction and different contrast mechanisms near metallic implants.
Materials and Methods: Slice-encoding for metal artifact correction (SEMAC) is a modified spin echo sequence that uses view-angle tilting and slice-direction phase encoding to correct both in-plane and through-plane artifacts. Standard spin echo trains and short-TI :Inversion recovery (STIR) allow efficient PD-weighted imaging with optional fat suppression. A completely linear reconstruction allows incorporation of parallel imaging and partial Fourier imaging. The signal-to-noise ratio (SNR) effects of all reconstructions were quantified in one subject. Ten subjects with different metallic implants were scanned using SEMAC protocols, all with scan times below 11 minutes, as well as with standard spin echo methods.
Results: The SNR using standard acceleration techniques is unaffected by the linear SEMAC reconstruction. In all cases with implants. accelerated SEMAC significantly reduced artifacts compared with standard imaging techniques. with no additional artifacts from acceleration techniques. The use of different contrast mechanisms allowed differentiation of fluid from other structures in several subjects.
Conclusion: SEMAC imaging can be combined with standard echo-train imaging, parallel imaging, partial-Fourier imaging. and inversion recovery techniques to offer flexible image contrast with a dramatic reduction of metal-induced artifacts in scan times under 11 minutes.

  • 出版日期2010-4
  • 单位南阳理工学院