1Electrical Engineering, Stanford University, Stanford, United States of America
2Department of Radiology, Stanford University, Stanford, United States of America
3Bioengineering, Stanford University, Stanford, United States of America
Presenting Author: Brian A Hargreaves
Synopsis
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1. Haskell MW, Nielsen JF, Noll DC. Off-resonance artifact correction for MRI: A review. NMR in Biomedicine. 2023;36(5):e4867. doi:10.1002/nbm.4867 [doi]
2. Cho ZH, Kim DJ, Kim YK. Total inhomogeneity correction including chemical shifts and susceptibility by view angle tilting. Medical Physics. 1988;15(1):7-11. doi:10.1118/1.596162 [doi]
3. Lu W, Pauly KB, Gold GE, Pauly JM, Hargreaves BA. SEMAC: Slice encoding for metal artifact correction in MRI. Magnetic Resonance in Medicine. 2009;62(1):66-76. doi:10.1002/mrm.21967 [doi]
4. Butts K, Pauly JM, Gold GE. Reduction of blurring in view angle tilting MRI. Magnetic Resonance in Medicine. 2005;53(2):418-424. doi:10.1002/mrm.20375 [doi]
5. Koch KM, Brau AC, Chen W, et al. Imaging near metal with a MAVRIC-SEMAC hybrid. Magnetic Resonance in Medicine. 2011;65(1):71-82. doi:10.1002/mrm.22523 [doi]
6. Jung KJ, Moon CH. Effect of slice angle on inhomogeneity artifact and its correction in slice-selective MR imaging. Concepts in Magnetic Resonance Part A. 2009;34A(4):238-248. doi:10.1002/cmr.a.20143 [doi]
7. Worters PW, Butts Pauly K, Hargreaves BA. Metal Artifact Reduction using Slice Encoding with Shear Correction. In: Proc. Intl. Soc. Mag. Reson. Med. 19. 2011. https://archive.ismrm.org/2011/0292.html
8. Toews AR, Lee PK, Yoon D, Hargreaves BA. Mitigation of blurring due to view-angle tilting in multispectral imaging. In: Proc. Intl. Soc. Mag. Reson. Med. 28. 2020. https://archive.ismrm.org/2020/3406.html
9. Bracewell RN, Chang KY, Jha AK, Wang YH. Affine theorem for two-dimensional Fourier transform. Electronics Letters. 1993;29(3):304-. doi:10.1049/el:19930207 [doi]
10. Toews AR, Lee PK, Nayak KS, Hargreaves BA. Comprehensive assessment of nonuniform image quality: Application to imaging near metal. Magnetic Resonance in Medicine. 2024;92(6):2358-2372. doi:10.1002/mrm.30222 [doi]
11. Tamir JI, Ong F, Cheng JY, Uecker M, Lustig M. Generalized Magnetic Resonance Image Reconstruction using The Berkeley Advanced Reconstruction Toolbox. In: 2016.
12. Ong F, Lustig M. SigPy: A Python Package for High Performance Iterative Reconstruction. In: Proc. Intl. Soc. Mag. Reson. Med. 27; 2019. https://cds.ismrm.org/protected/19MProceedings/PDFfiles/4819.html
13. Ahn S, Hu XP. View angle tilting echo planar imaging for distortion correction. Magnetic Resonance in Medicine. 2012;68(4):1211-1219. doi:10.1002/mrm.23320 [doi]
14. Liu W, Zhou K, Dong F. Distortion Correction in Readout-Segmented EPI using View Angle Tilting Combined with Phase Modulated RF Pulse. In: 2017.
15. Tung YH, In MH, Ahn S, Speck O. Rapid Geometry-Corrected Echo-Planar Diffusion Imaging at Ultrahigh Field: Fusing View Angle Tilting and Point-Spread Function Mapping. Magnetic Resonance in Medicine. 2022;88(5):2074-2087. doi:10.1002/mrm.29360 [doi]
16. Yan L, Weng D, Xue R, Wang J, Zhuo Y. Phase Angle Tilting (PAT) for Distortion Correction Caused by Susceptibility in EPI. In: Proc. Intl. Soc. Mag. Reson. Med. 17; 2009. https://archive.ismrm.org/2009/2782.html
17. Zho SY, Kim DH. Time-varying view angle tilting with spiral readout gradients. Magnetic Resonance in Medicine. 2012;68(4):1220-1227. doi:10.1002/mrm.24125 [doi]