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Biomedical Engineering MSc

Postgraduate Taught

Course code

P-H800

Start date

27 September 2027

Study location

University of º£½ÇÉçÇø

Qualification

Master of Science (MSc)

Department

School of Engineering

Duration

1 year full-time

Course overview

Build the future of healthcare technology.

From wearable health monitors and advanced medical imaging, to empowering devices for amputees, biomedical engineering is transforming healthcare. Our course equips you with cutting-edge technical skills to drive the next generation of healthcare innovation. Applying engineering to medicine and biology, you’ll develop technologies that improve diagnosis, treatment and patient outcomes across a rapidly evolving sector.

Close-up of a person with red and blue electrode sensors attached to their face,

The Biomedical MSc at º£½ÇÉçÇø has given me the opportunity to explore a wide range of topics within the field, as well as getting hands-on experience, applying the knowledge gained in lectures. As well as finding this very interesting, it gave me a competitive advantage when looking for a job.

Charlotte

MSc Biomedical Engineering graduate

This course is accredited by the IET, and IMechE and InstMC. More information about accreditation is available on the School of Engineering website.

Modules

Build state-of-the-art biomedical expertise while exploring the technologies shaping modern healthcare.

  • Biomedical fundamentals: including biomedical imaging, biomechanics, medical devices and systems modelling
  • Specialist options: tailor your studies in areas such as signal processing, systems modelling and computational intelligence
  • Individual research project: undertake an experimental, theoretical or computational study on a topic of your choice
  • Real-world skills: develop solutions to current healthcare technology challenges

Note that information found by following the links to the module catalogue is subject to change for future years of study, as we evolve our courses in response to the latest developments in academia and industry.

Optional modules can vary from year to year. Example optional modules may include:

Teaching and learning

Learn from leading researchers and industry experts in a collaborative engineering environment.

  • Systems approach: benefit from our unique systems approach to biomedical research and teaching
  • Expert supervision: be guided by specialists in biomechanics, biomaterials, neural engineering, medical imaging, healthcare technologies and biomedical science.
  • Career-ready skills: prepare for opportunities in the biomedical industry, clinical engineering roles within healthcare, or further research through doctoral study

Entry requirements

Fees and scholarships

Tuition fees are payable for each year of your course at the start of the academic year, or at the start of your course, if later. Academic fees cover the cost of tuition, examinations and assessment and some student amenities.

Find your course fees

About the department

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