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2023

Journal Article

Short wind pulses consistently change the morphology of roots, but not of shoots, across young plants of different growth forms

Heinze, Johannes, Werger, Luise, Ogden, Michael, Heinken, Thilo, Hoefgen, Rainer and Weber, Ewald (2023). Short wind pulses consistently change the morphology of roots, but not of shoots, across young plants of different growth forms. Stress Biology, 3 (1) 43, 1-9. doi: 10.1007/s44154-023-00123-z

Short wind pulses consistently change the morphology of roots, but not of shoots, across young plants of different growth forms

2021

Journal Article

Integrated multi-modal antenna with coupled radiating structures (I-MARS) for 7T pTx body MRI

Destruel, Aurelien, Jin, Jin, Weber, Ewald, Li, Mingyan, Engstrom, Craig, Liu, Feng and Crozier, Stuart (2021). Integrated multi-modal antenna with coupled radiating structures (I-MARS) for 7T pTx body MRI. IEEE Transactions on Medical Imaging, 41 (1), 1-13. doi: 10.1109/TMI.2021.3103654

Integrated multi-modal antenna with coupled radiating structures (I-MARS) for 7T pTx body MRI

2021

Journal Article

Metamaterial-inspired radiofrequency (RF) shield with reduced specific absorption rate (SAR) and improved transmit efficiency for UHF MRI

Chen, Haiwei, Guo, Lei, Li, Mingyan, Destruel, Aurelien, Liu, Chunyi, Weber, Ewald, Liu, Feng and Crozier, Stuart (2021). Metamaterial-inspired radiofrequency (RF) shield with reduced specific absorption rate (SAR) and improved transmit efficiency for UHF MRI. IEEE Transactions on Biomedical Engineering, 68 (4) 9190053, 1178-1189. doi: 10.1109/tbme.2020.3022884

Metamaterial-inspired radiofrequency (RF) shield with reduced specific absorption rate (SAR) and improved transmit efficiency for UHF MRI

2020

Journal Article

A dedicated eight‐channel receive RF coil array for monkey brain MRI at 9.4 T

Li, Mingyan, Li, Yu, Jin, Jin, Yang, Zhengyi, Zhang, Baogui, Liu, Yanyan, Song, Ming, Freakly, Craig, Weber, Ewald, Liu, Feng, Jiang, Tianzi and Crozier, Stuart (2020). A dedicated eight‐channel receive RF coil array for monkey brain MRI at 9.4 T. NMR in Biomedicine, 33 (10) e4369, 1-16. doi: 10.1002/nbm.4369

A dedicated eight‐channel receive RF coil array for monkey brain MRI at 9.4 T

2020

Journal Article

Magnetic resonance-electrical properties tomography by directly solving Maxwell’s Curl Equations

Chi, Jieru, Guo, Lei, Destruel, Aurelien, Wang, Yaohui, Liu, Chunyi, Li, Mingyan, Weber, Ewald, Liu, Qinghuo, Yang, Jie, Xin, Xuegang and Liu, Feng (2020). Magnetic resonance-electrical properties tomography by directly solving Maxwell’s Curl Equations. Applied Sciences, 10 (9) 3318, 1-13. doi: 10.3390/app10093318

Magnetic resonance-electrical properties tomography by directly solving Maxwell’s Curl Equations

2020

Journal Article

Geometric distortion characterization and correction for the 1.0 T Australian MRI-linac system using an inverse electromagnetic method

Shan, Shanshan, Liney, Gary P., Tang, Fangfang, Li, Mingyan, Wang, Yaohui, Ma, Huan, Weber, Ewald, Walker, Amy, Holloway, Lois, Wang, Qiuliang, Wang, Deming, Liu, Feng and Crozier, Stuart (2020). Geometric distortion characterization and correction for the 1.0 T Australian MRI-linac system using an inverse electromagnetic method. Medical Physics, 47 (3) mp.13979, 1126-1138. doi: 10.1002/mp.13979

Geometric distortion characterization and correction for the 1.0 T Australian MRI-linac system using an inverse electromagnetic method

2019

Journal Article

A numerical and experimental study of RF shimming in the presence of hip prostheses using adaptive SAR at 3 T

Destruel, Aurelien, Fuentes, Miguel, Weber, Ewald, O'Brien, Kieran, Jin, Jin, Liu, Feng, Barth, Markus and Crozier, Stuart (2019). A numerical and experimental study of RF shimming in the presence of hip prostheses using adaptive SAR at 3 T. Magnetic Resonance in Medicine, 81 (6), 3826-3839. doi: 10.1002/mrm.27688

A numerical and experimental study of RF shimming in the presence of hip prostheses using adaptive SAR at 3 T

2019

Journal Article

Monopole antenna array design for 3 T and 7 T magnetic resonance imaging

Kausar, A. S. M. Zahid, Reutens, David C., Weber, Ewald and Vegh, Viktor (2019). Monopole antenna array design for 3 T and 7 T magnetic resonance imaging. PLoS ONE, 14 (4) e0214637, e0214637. doi: 10.1371/journal.pone.0214637

Monopole antenna array design for 3 T and 7 T magnetic resonance imaging

2018

Journal Article

Imaging performance of a dedicated radiation transparent RF coil on a 1.0 Tesla inline MRI-linac

Liney, Gary P., Dong, Bin, Weber, Ewald, Rai, Robba, Destruel, Aurelien, Garcia-Alvarez, Roberto, Manton, David, Jelen, Urszula, Zhang, Kevin, Barton, Michael, Keall, Paul J. and Crozier, Stuart (2018). Imaging performance of a dedicated radiation transparent RF coil on a 1.0 Tesla inline MRI-linac. Physics in Medicine and Biology, 63 (13) 135005, 135005. doi: 10.1088/1361-6560/aac813

Imaging performance of a dedicated radiation transparent RF coil on a 1.0 Tesla inline MRI-linac

2018

Journal Article

Radial magnetic resonance imaging (MRI) using a rotating radiofrequency (RF) coil at 9.4 T

Li, Mingyan, Weber, Ewald, Jin, Jin, Hugger, Thimo, Tesiram, Yasvir, Ullmann, Peter, Stark, Simon, Fuentes, Miguel, Junge, Sven, Liu, Feng and Crozier, Stuart (2018). Radial magnetic resonance imaging (MRI) using a rotating radiofrequency (RF) coil at 9.4 T. NMR in Biomedicine, 31 (2) e3860, e3860. doi: 10.1002/nbm.3860

Radial magnetic resonance imaging (MRI) using a rotating radiofrequency (RF) coil at 9.4 T

2017

Journal Article

An open 8-channel parallel transmission coil for static and dynamic 7T MRI of the knee and ankle joints at multiple postures

Jin, Jin, Weber, Ewald, Destruel, Aurelien, O’Brien, Kieran, Henin, Bassem, Engstrom, Craig and Crozier, Stuart (2017). An open 8-channel parallel transmission coil for static and dynamic 7T MRI of the knee and ankle joints at multiple postures. Magnetic Resonance in Medicine, 79 (3), 1804-1816. doi: 10.1002/mrm.26804

An open 8-channel parallel transmission coil for static and dynamic 7T MRI of the knee and ankle joints at multiple postures

2017

Journal Article

Image reconstruction for a rotating radiofrequency coil (RRFC) using self-calibrated sensitivity from radial sampling

Jin, Jin, Weber, Ewald, Tesiram, Yasvir, Hugger, Thimo, Li, Mingyan, Fuentes, Miguel, Ullmann, Peter, Stark, Simon, Junge, Sven, Liu, Feng and Crozier, Stuart (2017). Image reconstruction for a rotating radiofrequency coil (RRFC) using self-calibrated sensitivity from radial sampling. IEEE Transactions On Biomedical Engineering, 64 (2) 7452563, 274-283. doi: 10.1109/TBME.2016.2552489

Image reconstruction for a rotating radiofrequency coil (RRFC) using self-calibrated sensitivity from radial sampling

2016

Journal Article

Pseudo-Polar Fourier Transform based Compressed Sensing MRI

Yang, Yang, Liu, Feng, Li, Mingyan, Jin, Jin, Weber, Ewald, Liu, Qinghuo and Crozier, Stuart (2016). Pseudo-Polar Fourier Transform based Compressed Sensing MRI. IEEE Transactions on Biomedical Engineering, 99 (4) 7488260, 816-825. doi: 10.1109/TBME.2016.2578930

Pseudo-Polar Fourier Transform based Compressed Sensing MRI

2015

Journal Article

Acoustic analysis for a split MRI system using FE method

Wang, Yaohui, Liu, Feng, Weber, Ewald, Tang, Fangfang, Jin, Jin, Tesiram, Yas and Crozier, Stuart (2015). Acoustic analysis for a split MRI system using FE method. Concepts in Magnetic Resonance Part B: Magnetic Resonance Engineering, 45 (2), 85-96. doi: 10.1002/cmr.b.21283

Acoustic analysis for a split MRI system using FE method

2015

Journal Article

In vivo sensitivity estimation and imaging acceleration with rotating RF coil arrays at 7 Tesla

Li, Mingyan, Jin, Jin, Zuo, Zhentao, Liu, Feng, Trakic, Adnan, Weber, Ewald, Zhuo, Yan, Xue, Rong and Crozier, Stuart (2015). In vivo sensitivity estimation and imaging acceleration with rotating RF coil arrays at 7 Tesla. Journal of Magnetic Resonance, 252, 29-40. doi: 10.1016/j.jmr.2014.12.004

In vivo sensitivity estimation and imaging acceleration with rotating RF coil arrays at 7 Tesla

2014

Journal Article

Model for B-1 imaging in MRI using the rotating RF field

Trakic, Adnan, Jin, Jin, Weber, Ewald and Crozier, Stuart (2014). Model for B-1 imaging in MRI using the rotating RF field. Computational and Mathematical Methods in Medicine, 2014 (461647) 461647, 1-12. doi: 10.1155/2014/461647

Model for B-1 imaging in MRI using the rotating RF field

2014

Journal Article

Highly Accelerated Acquisition and Homogeneous Image Reconstruction with Rotating RF Coil Array at 7 T—A Phantom Based Study

Li, Mingyan, Zuo, Zhentao, Jin, Jin, Xue, Rong, Trakic, Adnan, Weber, Ewald, Liu, Feng and Crozier, Stuart (2014). Highly Accelerated Acquisition and Homogeneous Image Reconstruction with Rotating RF Coil Array at 7 T—A Phantom Based Study. Journal of Magnetic Resonance, 240, 102-112. doi: 10.1016/j.jmr.2013.11.002

Highly Accelerated Acquisition and Homogeneous Image Reconstruction with Rotating RF Coil Array at 7 T—A Phantom Based Study

2013

Journal Article

A comparative numerical study of rotating and stationary RF coils in terms of flip angle and specific absorption rate for 7 T MRI

Trakic, A., Jin, J., Li, M., McClymont, D., Weber, E., Liu, F. and Crozier, S. (2013). A comparative numerical study of rotating and stationary RF coils in terms of flip angle and specific absorption rate for 7 T MRI. Journal of Magnetic Resonance, 236, 70-82. doi: 10.1016/j.jmr.2013.08.016

A comparative numerical study of rotating and stationary RF coils in terms of flip angle and specific absorption rate for 7 T MRI

2013

Journal Article

A MRI rotary phased array head coil

Li, Bing Keong, Weber, Ewald and Crozier, Stuart (2013). A MRI rotary phased array head coil. IEEE Transactions on Biomedical Circuits and Systems, 7 (4) 2230173, 548-556. doi: 10.1109/TBCAS.2012.2230173

A MRI rotary phased array head coil

2012

Journal Article

Improving SAR estimations in MRI using subject-specific models

Jin, Jin, Liu, Feng, Weber, Ewald and Crozier, Stuart (2012). Improving SAR estimations in MRI using subject-specific models. Physics in Medicine and Biology, 57 (24), 8153-8171. doi: 10.1088/0031-9155/57/24/8153

Improving SAR estimations in MRI using subject-specific models