M4019 Graduate Certificate of Magnetic Resonance Imaging
Faculty of Medicine, Nursing and Health Sciences
Graduate Certificate of Magnetic Resonance Imaging (M4019) is a 24-credit-point, graduate certificate course from the Faculty of Medicine, Nursing and Health Sciences, taught at Clayton. Map your units semester by semester with the MonMap planner.
- Credit points
- 24
- Campus
- Clayton
- Off campus
This is the 2022 handbook entry. See the 2026 entry.
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Requisite map
The 2022 handbook lists no units for M4019 itself. Pick an area of study to see its units.
Overview
This postgraduate course is designed for practising medical radiation practitioners and other suitably qualified health practitioners to advance their technological expertise and academic understanding of magnetic resonance imaging (MRI) whilst continuing clinical work in these areas.
This course expands students' previous knowledge and professional experience and will appeal to:
- medical radiation science professionals - radiographers, radiation therapists and nuclear medicine scientists
- professionals in related disciplines (such as psychology and neuropsychology) who use MRI as a research tool
- professionals in related disciplines (such as such as medicine, veterinary science, physiotherapy and rehabilitation science and forensic medicine) who use MRI as a clinical tool
Other professionals who would benefit from this course would include:
- orthopaedic surgeons and cardiologists who rely on MRI to provide rapid answers to difficult clinical questions
- biomedical engineers wishing to undertake research and development in the field of MRI (eg. Advanced RF coil, RF and gradient amplifier design)
Internationally, professional bodies representing medical imaging scientists recognise the value of postgraduate study as a means of keeping pace with rapidly changing technology in this field, as well as enhancing the capacity of graduates to engage in MRI research.
Course structure
Part A. Instrumentation and safety6 credit points
Part B. Clinical application18 credit points
The handbook's description of this structure
The course comprises 24 credit points structured into two parts: Part A. Instrumentation and safety, and Part B. Clinical application.
Part A: Instrumentation and safety
This study will teach you the basic physics of magnetic dipoles and magnetic spin resonance along with an account of the instrumentation common to all clinical MRI machines. Patient and staff safety issues posed by magnetic and radio frequency fields together with a consideration of factors determining the contrast and spatial resolution achievable in current clinical MR practice, will also be addressed.
This course comprises 24 points structured into two parts: Part A: Instrumentation and safety (6 points) and Part B: Clinical application (18 points).
Units are 6 points unless otherwise stated.
Part A: Instrumentation and safety (6 points)
You must complete:
- RAD5503 Magnetic resonance imaging: Physical principles, MR safety and image optimisation
Part B: Clinical Application (18 points)
You must complete three units (18 points) from the following:
- RAD5504 Magnetic resonance imaging: Musculoskeletal system
- RAD5505 Magnetic resonance imaging: Head, spine abdomen and pelvis
- RAD5506 Magnetic resonance imaging: Advanced imaging techniques
- RAD5107 Hybrid and molecular imaging
Learning outcomes
These course outcomes are aligned with the Australian Qualifications Framework and Monash Graduate Attributes.
Upon successful completion of this course it is expected that you will be able to:
- 1
Communicate an informed understanding of the physical principles and safety requirements for magnetic resonance imaging
- 2
Critically apply knowledge of the advantages and limitations of magnetic resonance imaging including risk factors with the use of contrast media in clinical MR practice
- 3
Implement evidence-based magnetic resonance imaging protocols for the neurological and musculoskeletal systems
- 4
Implement advanced imaging techniques, protocols and post-processing approaches for clinical and research applications
- 5
Produce and evaluate high-quality diagnostic multi-planar and 3D images from head, spine, abdomen, pelvis and extremities magnetic resonance imaging examinations
- 6
Communicate the magnetic resonance imaging appearances of a range of normal appearances and common disorders of the head, spine, abdomen, pelvis and extremities
- 7
Demonstrate professional judgment and expertise in providing imaging support in a multi-disciplinary environment
Entry requirements
English language
Monash minimum: Level A, that is: IELTS (Academic): 6.5 overall (no band lower than 6.0); or Pearson Test of English (Academic): score of 58 overall with no band lower than 50; or TOEFL Internet-based test: score of 79 overall with minimum scores: Writing: 21, Listening: 12, Reading: 13 and Speaking: 18; or Equivalent approved English test
More information
Progression to further studies
Successful completion of this course may provide a pathway to the Master of Advanced Health Care Practice.
Other information
This postgraduate course is designed for practising medical radiation practitioners and other suitably qualified health practitioners to advance their technological expertise and academic understanding of magnetic resonance imaging (MRI) whilst continuing clinical work in these areas.
This course expands students' previous knowledge and professional experience and will appeal to:
- medical radiation science professionals - radiographers, radiation therapists and nuclear medicine scientists
- professionals in related disciplines (such as psychology and neuropsychology) who use MRI as a research tool
- professionals in related disciplines (such as such as medicine, veterinary science, physiotherapy and rehabilitation science and forensic medicine) who use MRI as a clinical tool
Other professionals who would benefit from this course would include:
- orthopaedic surgeons and cardiologists who rely on MRI to provide rapid answers to difficult clinical questions
- biomedical engineers wishing to undertake research and development in the field of MRI (eg. Advanced RF coil, RF and gradient amplifier design)
Internationally, professional bodies representing medical imaging scientists recognise the value of postgraduate study as a means of keeping pace with rapidly changing technology in this field, as well as enhancing the capacity of graduates to engage in MRI research.
Contacts
- Academic Coordinator
- Professor Jenny Sim
- Ayyaz Qadir
Common questions
Where can I study Graduate Certificate of Magnetic Resonance Imaging?
At Clayton.
How do I plan my Graduate Certificate of Magnetic Resonance Imaging units?
Open the course in the MonMap planner. It lays out your semesters, checks prerequisites as you drag units in, and tracks the credit points each requirement still needs.