
Overview
Background
my research interests are in the design of diagnostic medical devices and new applications for those devices
Prof Crozier is the director of Biomedical Engineering at UQ. He holds a higher doctorate in engineering for his work in improving the technology of imaging equipment. Stuart was elelcted as a fellow of the institute of physics (UK) in 2004 and hold many national and international grants relating to medical imaging and medical devices.
Availability
- Emeritus Professor Stuart Crozier is:
- Available for supervision
- Media expert
Fields of research
Qualifications
- Bachelor (Honours) of Engineering, Queensland University of Technology
- Masters (Coursework) of Applied Science, Queensland University of Technology
- Doctor of Philosophy, The University of Queensland
Works
Search Professor Stuart Crozier’s works on UQ eSpace
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
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.
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
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
2001
Journal Article
Model for gas-liquid flow through wet porous medium
Agranovski, I. E., Braddock, R. D., Kristensen, N. P., Crozier, S. and Myojo, T. (2001). Model for gas-liquid flow through wet porous medium. Chemical Engineering & Technology, 24 (11), 1151-1155. doi: 10.1002/1521-4125(200111)24:113.0.CO;2-6
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
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
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.
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
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.
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.
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
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.
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.
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
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
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
1999
Conference Publication
Asymmetric, clinical MRI magnet design using a hybrid numerical method
Crozier, S., Zhao, H., Doddrell, D. M. and Webb, G. E. (1999). Asymmetric, clinical MRI magnet design using a hybrid numerical method. Seville, 16-19 September 1999. London: Elsevier Science.
1999
Conference Publication
Compact superconductiong magnet designs for magnetic resonance imaging and microscopy
Crozier, S. and Doddrell, D. M. (1999). Compact superconductiong magnet designs for magnetic resonance imaging and microscopy. Proceedings of the IEEE Engineering in Medicine & Biology Soc, Monash Univ., 22-23 February 1999. Monash Univ.: IEEE.
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
Funding
Past funding
Supervision
Availability
- Emeritus Professor Stuart Crozier is:
- Available for supervision
Before you email them, read our advice on how to contact a supervisor.
Supervision history
Current supervision
-
Doctor Philosophy
Improving Feature Extraction and Feature Interpretability for Deep Learning in Medical Image Analysis
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
Manifold Learning for Magnetic Resonance Imaging
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
The design of metamaterial RF shield to reduce specific absorption rate and improve B1 efficiency for ultra-high field MRI
Associate Advisor
Other advisors: Dr Lei Guo, Professor Feng Liu
-
Doctor Philosophy
Deep Learning Applied to Medical Image Analysis
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
Deployable and Explainable Deep Learning Architectures: Navigating Clinical Challenges in Medical Image Segmentation
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
Manifold Learning for Magnetic Resonance Imaging
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
Innovative RF Coil Designs and Metamaterial Applications for Ultra-High Field MRI
Associate Advisor
Other advisors: Dr Lei Guo, Professor Feng Liu
-
Doctor Philosophy
Medical Shape Analysis of 3D MRI Segmentation with Deep Learning
Associate Advisor
Other advisors: Dr Shakes Chandra
-
Doctor Philosophy
Innovative RF Coil Designs and Metamaterial Applications for Ultra-High Field MRI
Associate Advisor
Other advisors: Dr Lei Guo, Professor Feng Liu
-
Doctor Philosophy
Novel deep learning approaches to understanding human diseases
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
Doctor Philosophy
Foundational models for visual recognition
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
Completed supervision
-
2019
Doctor Philosophy
Radiofrequency safety and shimming near metal hip prostheses at high and ultra-high field MRI
Principal Advisor
Other advisors: Professor Feng Liu, Professor Markus Barth
-
2017
Doctor Philosophy
Advanced modelling and optimization of gradient coils and their physical behaviour in traditional and paired MRI systems.
Principal Advisor
-
2017
Doctor Philosophy
Gradient Coil Design and Acoustic Noise Control in Magnetic Resonance Imaging Systems
Principal Advisor
Other advisors: Professor Feng Liu
-
2017
Doctor Philosophy
Automated Image Analysis of High-field and Dynamic Musculoskeletal MRI
Principal Advisor
Other advisors: Associate Professor Craig Engstrom
-
2016
Doctor Philosophy
Focusing Microwave Hyperthermia in Realistic Environment for Breast Cancer Treatment
Principal Advisor
Other advisors: Professor Amin Abbosh
-
2015
Doctor Philosophy
The Development of Rotating Radiofrequency Techniques for Ultra-High Field Magnetic Resonance Imaging
Principal Advisor
Other advisors: Professor Feng Liu
-
2015
Doctor Philosophy
Automated Segmentation and Quantitative Analysis of the Hip Joint from Magnetic Resonance Images
Principal Advisor
Other advisors: Associate Professor Craig Engstrom
-
2014
Doctor Philosophy
Clinically based computerized analysis of magnetic resonance imaging of the spine
Principal Advisor
-
-
2012
Doctor Philosophy
Computer-assisted Dental Comparison for Forensic Identification of Human Remains
Principal Advisor
-
2012
Doctor Philosophy
Voxel-Based Analysis of High Angular Resolution Diffusion-Weighted Magnetic Resonance Images
Principal Advisor
-
2011
Doctor Philosophy
Transceive Phased-array Systems for Parallel MRI
Principal Advisor
Other advisors: Professor Feng Liu
-
2011
Master Philosophy
Thoracic electrical impedance model: Investigation into the contribution of ventricular blood volume to the impedance cardiogram.
Principal Advisor
Other advisors: Professor Feng Liu
-
2010
Doctor Philosophy
Exploration of Information in Recurrence Plots to Discriminate Human Heart Rate Variability
Principal Advisor
-
2008
Doctor Philosophy
Automatic Segmentation of the Kneebone and Cartliages
Principal Advisor
-
2008
Doctor Philosophy
Numerical Simulation Tools Design for Field Evaluation in Biomedical Engineering
Principal Advisor
-
2007
Doctor Philosophy
NUMERICAL MODELLING OF ELECTROMAGNETIC FIELD - MATERIAL INTERACTIONS IN MAGNETIC RESONANCE IMAGING
Principal Advisor
Other advisors: Professor Feng Liu
-
2006
Doctor Philosophy
MONITORING THE FLUID FLOW CHARACTERISTICS OF THE OVINE LUMBAR DISC USING MAGNETIC RESONANCE IMAGING AND FINITE ELEMENT ANAYLSIS
Principal Advisor
Other advisors: Professor Martin Veidt
-
2006
Doctor Philosophy
ELECTROMAGNETIC ANALYSIS AND DESIGN OF HIGH FREQUENCY COILS FOR MAGNETIC RERSONANCE
Principal Advisor
-
2006
Doctor Philosophy
THE DESIGN AND ANALYSIS OF HIGH FREQUENCY PHASED ARRAY COILS FOR MRI
Principal Advisor
-
2015
Doctor Philosophy
Computer assisted detection and characterisation of breast cancer in MRI
Joint Principal Advisor
-
2008
Doctor Philosophy
High Performance Electromagnetic Computing for Biomedical Applications
Joint Principal Advisor
-
2024
Doctor Philosophy
Innovative RF Coil Designs and Metamaterial Applications for Ultra-High Field MRI
Associate Advisor
Other advisors: Dr Lei Guo, Professor Feng Liu
-
2024
Doctor Philosophy
Deployable and Interpretable Deep Learning Architectures: Navigating Clinical Challenges in Medical Image Segmentation
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
2024
Doctor Philosophy
Key Applications in Deep Learning Based Quantitative Susceptibility Mapping
Associate Advisor
Other advisors: Dr Hongfu Sun, Professor Feng Liu
-
2022
Doctor Philosophy
Automated Assessment of Cartilage Composition and Cam Morphology using Magnetic Resonance Images of the Hip Joint
Associate Advisor
Other advisors: Associate Professor Craig Engstrom, Dr Shakes Chandra
-
2022
Doctor Philosophy
Improving deep learning-based fast MRI with pre-acquired image guidance
Associate Advisor
Other advisors: Dr Shakes Chandra, Professor Feng Liu
-
2022
Doctor Philosophy
Deep Learning-based Quantitative Susceptibility Mapping: Methods Development and Applications
Associate Advisor
Other advisors: Dr Hongfu Sun, Professor Feng Liu
-
2021
Doctor Philosophy
Correction of Magnetic Resonance Image Distortion due to Gradient Nonlinearity in the Australian MRI-Linac System
Associate Advisor
Other advisors: Professor Feng Liu
-
2020
Doctor Philosophy
Magnetic Resonance Based Electrical Properties Tomography in High/Ultra-High Field MRI
Associate Advisor
Other advisors: Professor Feng Liu
-
2020
Doctor Philosophy
Incorporating advanced imaging into the treatment of brain tumours.
Associate Advisor
-
2020
Doctor Philosophy
Computer aided lesion detection, segmentation and characterization on mammography and breast MRI
Associate Advisor
Other advisors: Dr Shakes Chandra
-
2018
Doctor Philosophy
Frequency-Based Microwave Medical Imaging Techniques
Associate Advisor
Other advisors: Professor Amin Abbosh
-
2016
Doctor Philosophy
Gradient coil design and intra-coil eddy currents in MRI systems
Associate Advisor
Other advisors: Professor Feng Liu
-
2016
Doctor Philosophy
Improving the Image Quality in Compressed Sensing MRI by the Exploitation of Data Properties
Associate Advisor
Other advisors: Professor Feng Liu
-
2015
Master Philosophy
The Design of Radiofrequency Coils for a MRI-LINAC System
Associate Advisor
Other advisors: Professor Feng Liu
-
2014
Doctor Philosophy
Exploitation of Sparsity in Compressed Sensing MRI
Associate Advisor
Other advisors: Professor Feng Liu
-
2014
Doctor Philosophy
Split-gradient coil design and analysis for hybrid MRI-involved system
Associate Advisor
Other advisors: Professor Feng Liu
-
2013
Doctor Philosophy
Computational Electromagnetics-tailored Inverse Solution to Radiofrequency Issues of High Field MRI
Associate Advisor
Other advisors: Professor Feng Liu
-
-
2010
Doctor Philosophy
Computer Aided Analysis of Dynamic Contrast Enhanced MRI of Breast Cancer
Associate Advisor
-
2010
Doctor Philosophy
Analysis of Snore Sound Pitch and Total Airway Response in Obstructive Sleep Apnoea Hypopnoea Detection
Associate Advisor
Other advisors: Dr Udantha Abeyratne
-
2008
Doctor Philosophy
Radar Target Recognition based on Ultra Wideband Transient Electromagnetic Scattering
Associate Advisor
-
2005
Master Philosophy
PROCESSING OF SNORE RELATED SOUNDS FOR THE DIAGNOSIS OF OBSTRUCTIVE SLEEP APNOEA (OSA)
Associate Advisor
Other advisors: Dr Udantha Abeyratne
Media
Enquiries
Contact Emeritus Professor Stuart Crozier directly for media enquiries about:
- Bioelectromagnetics
- Biomedical engineering
- Magnetic Resonance Imaging (MRI)
- Magnetic resonance spectroscopy
- MRI
- RF engineering
- Spectroscopy - magnetic resonance
- Superconducting magnet design
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