Magnetic Resonance Microscopy. Группа авторов
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Название: Magnetic Resonance Microscopy

Автор: Группа авторов

Издательство: John Wiley & Sons Limited

Жанр: Химия

Серия:

isbn: 9783527827251

isbn:

СКАЧАТЬ Design of arbitrarily homogeneous permanent magnet systems for NMR and MRI: Theory and experimental developments of a simple portable magnet. Journal of Magnetic Resonance 205 (1): 75–85.

      120 120 Aubert, G. (1991). Cylindrical permanent magnet with longitudinal induced field. USA patent 5014032.

      121 121 Ren, Z.H., Mu, W.C., and Huang, S.Y. (2019). Design and optimization of a ring-pair permanent magnet array for head imaging in a low-field portable MRI system. IEEE Transactions on Magnetics 55 (1): 1–8.

      122 122 Ren, Z.H., Gong, S., and Huang, S.Y. (2019). An irregular-shaped inward-outward ring-pair magnet array with a monotonic field gradient for 2D head imaging in low-field portable MRI. IEEE Access 7: 48715–4872.

      123 123 Kuang, I., Arango, N., Stockmann, J.P.et al. (2019). Equivalent-charge-based optimization of spokes and hub magnets for hand-held and classroom MR imaging. Proceedings of the ISMRM, Montreal, Canada.

      124 124 Mullen, M.and Garwood, M. (2020). Contemporary approaches to high-field magnetic resonance imaging with large field inhomogeneity. Progress in Nuclear Magnetic Resonance Spectroscopy 120–121: 95–108.

      125 125 Lange, K.and Carson, R. (1984). EM reconstruction algorithms for emission and transmission tomography. Journal of Computer Assisted Tomography 8 (2): 306–316.

      126 126 Harshbarger, T.B.and Twieg, D.B. (1999). Iterative reconstruction of single-shot spiral MRI with off resonance. IEEE Transactions on Medical Imaging 18 (3): 196–205.

      127 127 Fessler, J. (2010). Model-based image reconstruction for MRI. IEE Signal Processing Magazine 27 (4): 81–89.

      128 128 Sutton, B.P., Noll, D.C., and Fessler, J.A. (2003). Fast, iterative image reconstruction for MRI in the presence of field inhomogeneities. IEEE Transactions on Medical Imaging 22 (2): 178–188.

      129 129 Hurlimann, M.D.and Griffin, D.D. (2000). Spin dynamics of Carr-Purcell-Meiboom-Gill-like sequences in grossly inhomogeneous B(0) and B(1) fields and application to NMR well logging. Journal of Magnetic Resonance 143 (1): 120–135.

      130 130 McDaniel, P.C., Cooley, C.Z., Stockmann, J.P.et al. (2019). The MR Cap: A single-sided MRI system designed for potential point-of-care limited field-of-view brain imaging. Magnetic Resonance in Medicine 82 (5): 1946–1960.

      131 131 Ben-Eliezer, N., Shrot, Y., and Frydman, L. (2010). High-definition, single-scan 2D MRI in inhomogeneous fields using spatial encoding methods. Magnetic Resonance Imaging 28 (1): 77–86.

      132 132 Snyder, A.L., Corum, C.A., Moeller, S.et al. (2014). MRI by steering resonance through space. Magnetic Resonance in Medicine 72 (1): 49–58.

      133 133 Kobayashi, N., Parkinson, B., Idiyatullin, D.et al. (2021). Development and validation of 3D MP-SSFP to enable MRI in inhomogeneous magnetic fields. Magnetic Resonance in Medicine 85 (2): 831–844.

      134 134 Zhen, J.Z., O’Neill, K.T., Fridjonsson E.O.et al. (2018). A resistive Q-switch for low-field NMR systems. Journal of Magnetic Resonance 287: 33–40.

      135 135 Scott, G.C., Conolly, S., and Macovski, A. (1996). Low field preamp matching design for high-Q receiver coils. Proceeding of the ISMRM, New York.

      136 136 Darrasse, L.and Ginefri, J.C. (2003). Perspectives with cryogenic RF probes in biomedical MRI. Biochimie 85 (9): 915–937.

      137 137 Roemer, P.B., Edelstein, W.A., Hayes, C.E.et al. (1990). The NMR phased array. Magnetic Resonance in Medicine 16 (2): 192–225.

      138 138 Muller-Petke, M. (2020). Non-remote reference noise cancellation-using reference data in the presence of surface-NMR signal. Journal of Applied Geophysics 177: 104040.

      139 139 Rearick, T., Charvat, G., Rosen, M.S.et al. (2016). Noise suppression methods and apparatus patent 9,797,971. 10 March 2016.

      140 140 Srinivas, S.A., Cauley, S.F., Stockmann, J.P.et al. (2021). External dynamic interference estimation and removal (EDITER) for low field MRI. Magnetic Resonance in Medicine. https://onlinelibrary.wiley.com/doi/10.1002/mrm.28992.

      141 141 Dyvorne, H., Rearick, T., Poole, M.et al.(2021). Freeing MRI from its Faraday cape with interference rejection. Proceedings of the 29th Annual Meeting of ISMRM, 0749, Virtual.

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