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2012

Journal Article

An orthogonal-based decoupling method for MRI phased array coil design

Li, Bing Keong, Wang, Hua, Trakic, Adnan, Engstrom, Craig, Weber, Ewald and Crozier, Stuart (2012). An orthogonal-based decoupling method for MRI phased array coil design. NMR in Biomedicine, 25 (6), 835-842. doi: 10.1002/nbm.1799

An orthogonal-based decoupling method for MRI phased array coil design

2012

Journal Article

Inverse field-based approach for simultaneous B-1 mapping at high fields: A phantom based study

Jin, Jin, Liu, Feng, Zuo, Zhentao, Xue, Rong, Li, Mingyan, Li, Yu, Weber, Ewald and Crozier, Stuart (2012). Inverse field-based approach for simultaneous B-1 mapping at high fields: A phantom based study. Journal of Magnetic Resonance, 217, 27-35. doi: 10.1016/j.jmr.2012.02.004

Inverse field-based approach for simultaneous B-1 mapping at high fields: A phantom based study

2012

Journal Article

Electromechanical design and construction of a rotating radio-frequency coil system for applications in magnetic resonance

Trakic, Adnan, Weber, Ewald, Li, Bing Keong, Wang, Hua, Liu, Feng, Engstrom, Craig and Crozier, Stuart (2012). Electromechanical design and construction of a rotating radio-frequency coil system for applications in magnetic resonance. IEEE Transactions on Biomedical Engineering, 59 (4), 1068-1075. doi: 10.1109/TBME.2012.2182993

Electromechanical design and construction of a rotating radio-frequency coil system for applications in magnetic resonance

2012

Journal Article

Rotational magnetic induction tomography

Trakic, Adnan, Eskandarnia, Neda, Li, Bing Keong, Weber, Ewald, Wang, Hua and Crozier, Stuart (2012). Rotational magnetic induction tomography. Measurement Science and Technology, 23 (2) 025402, 025402.1-025402.12. doi: 10.1088/0957-0233/23/2/025402

Rotational magnetic induction tomography

2011

Journal Article

GPU-accelerated FDTD modeling of radio-frequency field-tissue interactions in high-field MRI

Chi, Jieru, Liu, Feng, Weber, Ewald, Li, Yu and Crozier, Stuart (2011). GPU-accelerated FDTD modeling of radio-frequency field-tissue interactions in high-field MRI. IEEE Transactions on Biomedical Engineering, 58 (6) 5714720, 1789-1796. doi: 10.1109/TBME.2011.2116020

GPU-accelerated FDTD modeling of radio-frequency field-tissue interactions in high-field MRI

2010

Journal Article

An electromagnetic reverse method of coil sensitivity mapping for parallel MRI - Theoretical framework

Jin, Jin, Liu, Feng, Weber, Ewald, Li, Yu and Crozier, Stuart (2010). An electromagnetic reverse method of coil sensitivity mapping for parallel MRI - Theoretical framework. Journal of Magnetic Resonance, 207 (1), 59-68. doi: 10.1016/j.jmr.2010.08.009

An electromagnetic reverse method of coil sensitivity mapping for parallel MRI - Theoretical framework

2009

Journal Article

Image reconstructions with the rotating RF coil

Trakic, A., Wang, H., Weber, E., Li, B. K., Poole, M., Liu, F. and Crozier, S. (2009). Image reconstructions with the rotating RF coil. Journal of Magnetic Resonance, 201 (2), 186-198. doi: 10.1016/j.jmr.2009.09.009

Image reconstructions with the rotating RF coil

2009

Journal Article

Hybrid numerical techniques for the modelling of radiofrequency coils in MRI

Li, Bing Keong, Liu, Feng, Weber, Ewald and Crozier, Stuart (2009). Hybrid numerical techniques for the modelling of radiofrequency coils in MRI. NMR in Biomedicine, 22 (9), 937-951. doi: 10.1002/nbm.1344

Hybrid numerical techniques for the modelling of radiofrequency coils in MRI

2009

Journal Article

Inverse design of a phased-array coil for breast magnetic resonance imaging

Li, Yu, Liu, Feng, Weber, Ewald, Li, Bing Keong and Crozier, Stuart (2009). Inverse design of a phased-array coil for breast magnetic resonance imaging. Concepts in Magnetic Resonance Part B- Magnetic Resonance Engineering, 35B (4), 221-231. doi: 10.1002/cmr.b.20145

Inverse design of a phased-array coil for breast magnetic resonance imaging

2009

Journal Article

A rapidly rotating RF coil for MRI

Trakic, Adnan, Li, Bing Keong, Weber, Ewald, Wang, Hua, Wilson, Stephen and Crozier, Stuart (2009). A rapidly rotating RF coil for MRI. Concepts in Magnetic Resonance Part B: Magnetic Resonance Engineering, 35B (2), 59-66. doi: 10.1002/cmr.b.20136

A rapidly rotating RF coil for MRI

2009

Journal Article

Reverse-engineering of gradient coil designs based on experimentally measured magnetic fields and approximate knowledge of coil geometry-application in exposure evaluations

Liu, Feng, Trakic, Adnan, Sanchez Lopez, Hector, Wei, Qing, Fuentes, Miguel, Weber, Ewald and Crozier, Stuart (2009). Reverse-engineering of gradient coil designs based on experimentally measured magnetic fields and approximate knowledge of coil geometry-application in exposure evaluations. Concepts in Magnetic Resonance Part B- Magnetic Resonance Engineering, 35B (1), 32-43. doi: 10.1002/cmr.b.20129

Reverse-engineering of gradient coil designs based on experimentally measured magnetic fields and approximate knowledge of coil geometry-application in exposure evaluations

2008

Journal Article

Passive Shim Design and a Shimming Approach for Biplanar Permanent Magnetic Resonance Imaging Magnets

Sanchez Lopez, H., Liu, F., Weber, E. and Crozier, S. (2008). Passive Shim Design and a Shimming Approach for Biplanar Permanent Magnetic Resonance Imaging Magnets. IEEE Transactions On Magnetics, 44 (3) 4455704, 394-402. doi: 10.1109/TMAG.2007.914770

Passive Shim Design and a Shimming Approach for Biplanar Permanent Magnetic Resonance Imaging Magnets

2008

Journal Article

Minimizing the induced fields in MRI Occupational Workers by Lowering the Imager

Trakic, A., Wang, H., Liu, F., Sanchez Lopez, H., Weber, E. and Crozier, S. (2008). Minimizing the induced fields in MRI Occupational Workers by Lowering the Imager. Concepts in Magnetic Resonance Part B: Magnetic Resonance Engineering, 33B (1), 39-54. doi: 10.1002/cmr.b.20102

Minimizing the induced fields in MRI Occupational Workers by Lowering the Imager

2008

Journal Article

Parallel Solvers for Finite-Difference Modeling of Large-Scale, High-Resolution Electromagnetic Problems in MRI

Wang, H., Trakic, A., Liu, F., Li, B.K., Weber, E. and Crozier, S. (2008). Parallel Solvers for Finite-Difference Modeling of Large-Scale, High-Resolution Electromagnetic Problems in MRI. International Journal of Antennas and Propagation, 2008 (Article ID 259703), 1-12. doi: 10.1155/2008/259703

Parallel Solvers for Finite-Difference Modeling of Large-Scale, High-Resolution Electromagnetic Problems in MRI