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1999

Journal Article

Designs for an asymmetric gradient set and a compact superconducting magnet for neural magnetic resonance imaging

Crozier, S., Luescher, K., Hinds, G. W., Roffmann, W. U. and Doddrell, D. M. (1999). Designs for an asymmetric gradient set and a compact superconducting magnet for neural magnetic resonance imaging. Review of Scientific Instruments, 70 (10), 4062-4066. doi: 10.1063/1.1150037

Designs for an asymmetric gradient set and a compact superconducting magnet for neural magnetic resonance imaging

1999

Conference Publication

Multi-layer transverse gradient coils

Bowtell, R., Crozier, S., Beck, B. and Blackband, S. (1999). Multi-layer transverse gradient coils. 7th ISMRM, Philadelphia, 22-26 May 1999. California: ISMRM.

Multi-layer transverse gradient coils

1999

Conference Publication

Hardware developments for in-vivo MR microscopy at fields up to 17.6T

Roffmann, W. U., Gross, D., Crozier, S., Wilson, S. J., Luescher, K. and Doddrell, D. M. (1999). Hardware developments for in-vivo MR microscopy at fields up to 17.6T. 5th International Conference on Magnetic Resonance Microscopy, Heidelberg, Germany, 5-9 September 1999. Heidelberg: Groupement Ampere.

Hardware developments for in-vivo MR microscopy at fields up to 17.6T

1999

Conference Publication

New RF resonators for MR microscopy

Crozier, S., Roffmann, W. U., Luescher, K. and Doddrell, D. M. (1999). New RF resonators for MR microscopy. ESMRMB 1999 16th Scientific Meeting, Seville, Spain, 16-19 September 1999. London: Elsevier Science.

New RF resonators for MR microscopy

1999

Journal Article

Asymmetric MRI magnet design using a hybrid numerical method

Zhao, H., Crozier, S. and Doddrell, D. M. (1999). Asymmetric MRI magnet design using a hybrid numerical method. Journal of Magnetic Resonance, 141 (2), 340-346. doi: 10.1006/jmre.1999.1924

Asymmetric MRI magnet design using a hybrid numerical method

1999

Conference Publication

Compact, High-Field MRI Magnets - what is possible?

Crozier, S., Zhao, H. and Doddrell, D. M. (1999). Compact, High-Field MRI Magnets - what is possible?. Minneapolis, 14-15 October 1999. California: ISMRM.

Compact, High-Field MRI Magnets - what is possible?

1998

Journal Article

A simple design methodology for elliptical cross-section, transverse, asymmetric, head gradient coils for MRI

Crozier, S and Doddrell, DM (1998). A simple design methodology for elliptical cross-section, transverse, asymmetric, head gradient coils for MRI. Ieee Transactions On Biomedical Engineering, 45 (7), 945-948. doi: 10.1109/10.686804

A simple design methodology for elliptical cross-section, transverse, asymmetric, head gradient coils for MRI

1998

Journal Article

A novel, open access, elliptical cross-section magnet for paediatric MRI

Crozier, S, Forbes, LK and Doddrell, DM (1998). A novel, open access, elliptical cross-section magnet for paediatric MRI. Measurement Science & Technology, 9 (1), 113-119. doi: 10.1088/0957-0233/9/1/015

A novel, open access, elliptical cross-section magnet for paediatric MRI

1998

Book Chapter

Volume localised 1H MRS of renal osmolytes

Cowin, G. J., Leditschke, I. A., Crozier, S. and Endre, Z. H. (1998). Volume localised 1H MRS of renal osmolytes. Spatially resolved magnetic resonance: methods, materials, medicine, biology, rheology, geology, ecology, hardware. (pp. 431-438) edited by P. Blumler, B. Blumich, R. Botto and E. Fukishima. New York, NY, United States: Wiley.

Volume localised 1H MRS of renal osmolytes

1998

Journal Article

Calculating current densities and fields due to shielded bi-planar radio-frequency coils

Forbes, LK, Crozier, S and Doddrell, DM (1998). Calculating current densities and fields due to shielded bi-planar radio-frequency coils. Measurement Science & Technology, 9 (9), 1609-1619. doi: 10.1088/0957-0233/9/9/034

Calculating current densities and fields due to shielded bi-planar radio-frequency coils

1998

Journal Article

A compact superconducting magnet for magnetic resonance microscopy

Crozier, S and Doddrell, DM (1998). A compact superconducting magnet for magnetic resonance microscopy. Review of Scientific Instruments, 69 (2), 448-451. doi: 10.1063/1.1148680

A compact superconducting magnet for magnetic resonance microscopy

1998

Book Chapter

Volume localised 1H MRS of renal osmolytes

Cowin, Gary J., Leditschke, I. Anne, Crozier, Stuart and Endre, Zoltan H. (1998). Volume localised 1H MRS of renal osmolytes. Spatially resolved Magnetic Resonance. (pp. 431-437) edited by P. Blümler, B. Blümich, R. Botto and E. Fukushima. Weinheim, Germany: Wiley-VCH Verlag. doi: 10.1002/9783527611843.ch40

Volume localised 1H MRS of renal osmolytes

1997

Journal Article

Regional proton nuclear magnetic resonance spectroscopy differentiates cortex and medulla in the isolated perfused rat kidney

Cowin, G. J., Leditschke, I. A., Crozier, S., Brereton, I. M. and Endre, Z. H. (1997). Regional proton nuclear magnetic resonance spectroscopy differentiates cortex and medulla in the isolated perfused rat kidney. Magnetic Resonance Materials in Physics, Biology and Medicine, 5 (2), 151-158. doi: 10.1007/BF02592246

Regional proton nuclear magnetic resonance spectroscopy differentiates cortex and medulla in the isolated perfused rat kidney

1997

Conference Publication

GPU accelerated high-dimensional compressed sensing MRI

Feng Z., Guo H., Wang Y., Yu Y., Yang Y., Liu F. and Crozier S. (1997). GPU accelerated high-dimensional compressed sensing MRI. 2014 13th International Conference on Control Automation Robotics and Vision, ICARCV 2014, Singapore, , December 10, 2014-December 12, 2014. Institute of Electrical and Electronics Engineers Inc.. doi: 10.1109/ICARCV.2014.7064380

GPU accelerated high-dimensional compressed sensing MRI

1997

Journal Article

Direct visualisation of B-1 inhomogeneity by flip angle dependency

Zelaya, FO, Roffmann, WU, Crozier, S, Teed, S, Gross, D and Doddrell, DM (1997). Direct visualisation of B-1 inhomogeneity by flip angle dependency. Magnetic Resonance Imaging, 15 (4), 497-504. doi: 10.1016/S0730-725X(96)00396-7

Direct visualisation of B-1 inhomogeneity by flip angle dependency

1997

Journal Article

Sample-induced RF perturbations in high-field, high-resolution NMR spectroscopy

Crozier, S, Brereton, IM, Zelaya, FO, Roffmann, WU and Doddrell, DM (1997). Sample-induced RF perturbations in high-field, high-resolution NMR spectroscopy. Journal of Magnetic Resonance, 126 (1), 39-47. doi: 10.1006/jmre.1997.1119

Sample-induced RF perturbations in high-field, high-resolution NMR spectroscopy

1997

Journal Article

Rapid computation of static fields produced by thick circular solenoids

Forbes, LK, Crozier, S and Doddrell, DM (1997). Rapid computation of static fields produced by thick circular solenoids. Ieee Transactions On Magnetics, 33 (5), 4405-4410. doi: 10.1109/20.620453

Rapid computation of static fields produced by thick circular solenoids

1997

Journal Article

Nuclear magnetic resonance imaging of superficial scald in 'Granny Smith' apples

Golding, J. B., Sarafis, V., Crozier, S. and Rose, S. E. (1997). Nuclear magnetic resonance imaging of superficial scald in 'Granny Smith' apples. Hortscience, 32 (1), 112-113. doi: 10.21273/HORTSCI.32.1.112

Nuclear magnetic resonance imaging of superficial scald in 'Granny Smith' apples

1997

Journal Article

A methodology for current density calculations in high-frequency RF resonators

Crozier, S, Forbes, LK, Roffmann, WU, Luescher, K and Doddrell, DM (1997). A methodology for current density calculations in high-frequency RF resonators. Concepts In Magnetic Resonance, 9 (4), 195-210. doi: 10.1002/(SICI)1099-0534(1997)9:43.0.CO;2-U

A methodology for current density calculations in high-frequency RF resonators

1997

Journal Article

Calculating current densities and fields produced by shielded magnetic resonance imaging probes

Forbes, Lawrence K., Crozier, Stuart and Doddrell, David M. (1997). Calculating current densities and fields produced by shielded magnetic resonance imaging probes. Siam Journal On Applied Mathematics, 57 (2), 401-425. doi: 10.1137/S0036139995283110

Calculating current densities and fields produced by shielded magnetic resonance imaging probes