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2001

Conference Publication

Asymmetric MRI systems

Crozier, S., Zhao, H., Forbes, L. K., Lawrence, B. and Yau, D. (2001). Asymmetric MRI systems. 7th Australian and New Zealand Intelligent Information Systems Conference, ANZIIS 2001, Perth, WA, November 18, 2001-November 21, 2001. Institute of Electrical and Electronics Engineers Inc.. doi: 10.1109/ANZIIS.2001.974040

Asymmetric MRI systems

2001

Journal Article

A flexible method for rapid force computation in elliptical magnets

Snape-Jenkinson, C. J., Crozier, S. and Forbes, L. K. (2001). A flexible method for rapid force computation in elliptical magnets. Measurement Science & Technology, 12 (6), 716-722. doi: 10.1088/0957-0233/12/6/310

A flexible method for rapid force computation in elliptical magnets

2001

Conference Publication

A new FDTD method for the study of MRI pulsed field gradient - induced fields in the human body

Crozier, S., Feng, L. and Zhao, H. (2001). A new FDTD method for the study of MRI pulsed field gradient - induced fields in the human body. 7th Australian & NZ Intelligent Systems Conference, University of Western Australia, Perth, WA, 1821 November 2001. Perth, Western Australia: ARCME. doi: 10.1109/ANZIIS.2001.974039

A new FDTD method for the study of MRI pulsed field gradient - induced fields in the human body

2001

Conference Publication

Asymmetric MRI systems: Shim and RF coil designs

Crozier S., Zhao H., Forbes L.K., Lawrence B., Yau D., Luescher K., Roffmann W. and Doddrell D. (2001). Asymmetric MRI systems: Shim and RF coil designs. 23rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Istanbul, October 25, 2001-October 28, 2001. doi: 10.1109/iembs.2001.1017241

Asymmetric MRI systems: Shim and RF coil designs

2001

Journal Article

An inverse design method for elliptical MRI magnets

Zhao, H. and Crozier, S. (2001). An inverse design method for elliptical MRI magnets. Measurement Science & Technology, 12 (5), 566-574. doi: 10.1088/0957-0233/12/5/303

An inverse design method for elliptical MRI magnets

2001

Conference Publication

Asymmetric MRI systems

Crozier, S., Zhao, H., Forbes, L K, Lawrence, B. and Yau, D. (2001). Asymmetric MRI systems. 7th Australian & NZ Intelligent Information Systems, University of Western Australia, Perth, WA, 18-21 November 2001. Perth, Western Australia: ARCME.

Asymmetric MRI systems

2001

Journal Article

Compact clinical MRI magnet design using a multilayer current density approach

Zhao, H. W., Crozier, S. and Doddrell, D. M. (2001). Compact clinical MRI magnet design using a multilayer current density approach. Magnetic Resonance In Medicine, 45 (2), 331-340. doi: 10.1002/1522-2594(200102)45:23.0.CO;2-W

Compact clinical MRI magnet design using a multilayer current density approach

2000

Journal Article

A hybrid, inverse approach to the design of magnetic resonance imaging magnets

Zhao, Huawei, Crozier, Stuart and Doddrell, David M. (2000). A hybrid, inverse approach to the design of magnetic resonance imaging magnets. Medical Physics, 27 (3), 599-607. doi: 10.1118/1.598899

A hybrid, inverse approach to the design of magnetic resonance imaging magnets

2000

Journal Article

Incorporating phase retardation effects into radiofrequency resonator models: application to magnetic resonance microscopy

Crozier, S., Forbes, L. K., Roffmann, W. U., Doddrell, D. M. and Luescher, K. (2000). Incorporating phase retardation effects into radiofrequency resonator models: application to magnetic resonance microscopy. Measurement Science & Technology, 11 (3), 221-226. doi: 10.1088/0957-0233/11/3/308

Incorporating phase retardation effects into radiofrequency resonator models: application to magnetic resonance microscopy

2000

Conference Publication

A current density mapping approach for the design of clinical MRI magnets

Zhao, H. and Crozier, S. (2000). A current density mapping approach for the design of clinical MRI magnets. IEEE-EMBS Asia-Pacific Conference on Biomedical Engineering, Hangzhou, China, 26-28 September 2000. Beijing, China: World Publishing Corporation.

A current density mapping approach for the design of clinical MRI magnets

2000

Conference Publication

The Tilt Coil, a tool to study structural anisotropy in cartilage

Crozier, S., Doddrell, D. M., Roffmann, W. U., Brereton, I. M., Luescher, K. and Hinds, G. W. (2000). The Tilt Coil, a tool to study structural anisotropy in cartilage. ANZMAG 2000, Mt Buller, Vic, 13-17 February 2000. ANZMAG.

The Tilt Coil, a tool to study structural anisotropy in cartilage

2000

Conference Publication

Magnetic resonance microscopy and angiography of the isolated perused rat kidney

Cowin, G. J., Guan, Z., Crozier, S. and Endre, Z. H. (2000). Magnetic resonance microscopy and angiography of the isolated perused rat kidney. Australian and New Zealand Society of Nephrology 35th Annual Scientific Meeting, Brisbane Convention Centre, 3-5 March, 1999. Carlton, Vic.: Blackwell Science. doi: 10.1046/j.1440-1797.2000.00051-20A1.x

Magnetic resonance microscopy and angiography of the isolated perused rat kidney

2000

Conference Publication

Compact, high-field symmetric and asymmetric MRI magnet designs

Crozier, S., Doddrell, D. M. and Zhao, H. (2000). Compact, high-field symmetric and asymmetric MRI magnet designs. ISMRM Eighth Meeting, Denver, 1-7 April 2000.

Compact, high-field symmetric and asymmetric MRI magnet designs

2000

Conference Publication

Compact, high-field MRI magnets - what is possible?

Crozier, S., Doddrell, D. M. and Zhao, H. (2000). Compact, high-field MRI magnets - what is possible?. The Ausralian and New Zealand Society for Magnetic Resonance, Mt Buller, Vic, 13th - 17th February, 2000. ANZMAG.

Compact, high-field MRI magnets - what is possible?

2000

Journal Article

Study of the gas flow in porous media submerged in liqiud layer

Agranovski I.E., Braddock R.D., Kristensen N., Crozier S. and Myojo T. (2000). Study of the gas flow in porous media submerged in liqiud layer. Journal of Aerosol Science, 31 (SUPPL.1), 454-455. doi: 10.1016/s0021-8502(00)90467-1

Study of the gas flow in porous media submerged in liqiud layer

2000

Conference Publication

A method for the rapid calculation of magnetic forces in superconducting MR magnets

Crozier, S., Snape-Jenkinson, C. and Forbes, L. K. (2000). A method for the rapid calculation of magnetic forces in superconducting MR magnets. ISMRM Eighth Meeeting, Denver, 1-7 April 2000. ISMRM.

A method for the rapid calculation of magnetic forces in superconducting MR magnets

1999

Journal Article

Cortical and medullary betaine-GPC modulated by osmolality independently of oxygen in the intact kidney

Cowin, Gary J., Crozier, Stuart, Endre, Zoltan H., Leditschke, I. Anne and Brereton, Ian M. (1999). Cortical and medullary betaine-GPC modulated by osmolality independently of oxygen in the intact kidney. American Journal of Physiology - Renal Physiology, 277 (3), F338-F346. doi: 10.1152/ajprenal.1999.277.3.F338

Cortical and medullary betaine-GPC modulated by osmolality independently of oxygen in the intact kidney

1999

Journal Article

An "openable," high-strength gradient set for orthopedic MRI

Crozier, Stuart, Roffmann, Wolfgang U., Luescher, Kurt, Snape-Jenkinson, Christopher, Forbes, Lawrence K. and Doddrell, David M. (1999). An "openable," high-strength gradient set for orthopedic MRI. Journal of Magnetic Resonance, 139 (1), 81-89. doi: 10.1006/jmre.1999.1749

An "openable," high-strength gradient set for orthopedic MRI

1999

Conference Publication

The TILT-Coil, a novel RF coil with 360 degree rotation

Roffmann, W. U., Crozier, S., Luescher, K., Hinds, G. W. and Doddrell, D. M. (1999). The TILT-Coil, a novel RF coil with 360 degree rotation. 5th International Conference on Magnetic Resonance Microscopy, Heidelberg, Germany, 5-9 September 1999. Heidelberg: Groupement Ampere.

The TILT-Coil, a novel RF coil with 360 degree rotation

1999

Journal Article

Direct algorithm for the rapid calculation of magnetic field spherical harmonics

Snape-Jenkinson, C. J., Forbes, L. K. and Crozier, S. (1999). Direct algorithm for the rapid calculation of magnetic field spherical harmonics. IEEE Transactions on Magnetics, 35 (5), 4159-4165. doi: 10.1109/20.799063

Direct algorithm for the rapid calculation of magnetic field spherical harmonics