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2004

Journal Article

A distributed equivalent magnetic current based FDTD method for the calculation of E-fields induced by gradient coils

Liu, F. and Crozier, S. (2004). A distributed equivalent magnetic current based FDTD method for the calculation of E-fields induced by gradient coils. Journal of Magnetic Resonance, 169 (2), 323-327. doi: 10.1016/j.jmr.2004.05.011

A distributed equivalent magnetic current based FDTD method for the calculation of E-fields induced by gradient coils

2003

Journal Article

On the induced electric field gradients in the human body for magnetic stimulation by gradient coils in MRI

Liu, Feng, Zhao, Huawei and Crozier, S. (2003). On the induced electric field gradients in the human body for magnetic stimulation by gradient coils in MRI. IEEE Transactions On Biomedical Engineering, 50 (7), 804-815. doi: 10.1109/TBME.2003.813538

On the induced electric field gradients in the human body for magnetic stimulation by gradient coils in MRI

2003

Journal Article

A high definition, finite difference time domain method

Zhao, Huawei W., Crozier, Stuart and Liu, Feng (2003). A high definition, finite difference time domain method. Applied Mathematical Modelling, 27 (5), 409-419. doi: 10.1016/S0307-904X(03)00049-0

A high definition, finite difference time domain method

2003

Journal Article

Calculation of electric fields induced by body and head motion in high-field MRI

Liu, Feng, Zhao, Huawei and Crozier, Stuart (2003). Calculation of electric fields induced by body and head motion in high-field MRI. Journal of Magnetic Resonance, 161 (1), 99-107. doi: 10.1016/S1090-7807(02)00180-5

Calculation of electric fields induced by body and head motion in high-field MRI

2003

Journal Article

Analysis of the influence of the electrical asynchrony on regional mechanics of the infarcted left ventricle using electromechanical heart models

Liu, Feng, Xia, Ling and Zhang, Xin (2003). Analysis of the influence of the electrical asynchrony on regional mechanics of the infarcted left ventricle using electromechanical heart models. JSME International Journal, Series A: Solid Mechanics and Material Engineering, 46 (1), 1-9. doi: 10.1299/jsmea.46.1

Analysis of the influence of the electrical asynchrony on regional mechanics of the infarcted left ventricle using electromechanical heart models

2003

Journal Article

A new approach to the solution of Maxwell's equations for low frequency and high-resolution biomedical problems

Zhao, Huawei, Crozier, Stuart and Liu, Feng (2003). A new approach to the solution of Maxwell's equations for low frequency and high-resolution biomedical problems. ANZIAM Journal, 44 (E), C851-C867.

A new approach to the solution of Maxwell's equations for low frequency and high-resolution biomedical problems

2003

Journal Article

Influence of magnetically-induced E-fields on cardiac electric activity during MRI: A modeling study

Liu, F., Xia, L. and Crozier, S. (2003). Influence of magnetically-induced E-fields on cardiac electric activity during MRI: A modeling study. Magnetic Resonance In Medicine, 50 (6), 1180-1188. doi: 10.1002/mrm.10639

Influence of magnetically-induced E-fields on cardiac electric activity during MRI: A modeling study

2002

Journal Article

Construction of three dimensional composite finite element mechanical model of human left ventricle

Wu, Guo-hua, Liu, Feng, Xia, Ling and Lu, Wei-xue (2002). Construction of three dimensional composite finite element mechanical model of human left ventricle. Chinese Journal of Biomedical Engineering, 21 (5), 404-410.

Construction of three dimensional composite finite element mechanical model of human left ventricle

2002

Journal Article

Finite-difference time-domain-based studies of MRI pulsed field gradient-induced eddy currents inside the human body

Liu, Feng, Crozier, Stuart, Zhao, Huawei and Lawrence, Ben (2002). Finite-difference time-domain-based studies of MRI pulsed field gradient-induced eddy currents inside the human body. Concepts in magnetic resonance. Part B, Magnetic resonance engineering [electronic resource], 15 (1), 26-36. doi: 10.1002/cmr.10011

Finite-difference time-domain-based studies of MRI pulsed field gradient-induced eddy currents inside the human body

2002

Journal Article

Finite difference time domain (FDTD) method for modeling the effect of switched gradients on the human body in MRI

Zhao, H. W., Crozier, S. and Liu, F. (2002). Finite difference time domain (FDTD) method for modeling the effect of switched gradients on the human body in MRI. Magnetic Resonance In Medicine, 48 (6), 1037-1042. doi: 10.1002/mrm.10313

Finite difference time domain (FDTD) method for modeling the effect of switched gradients on the human body in MRI