24 monthsProgramme duration
3,000 EURTuition Fee/year
30 Sep, 2026Application Deadline
OctStarting Month
Programme overview
Main Subject
Medicine Related Studies
Degree
MSc
Study Level
Masters
Study Mode
On Campus
Biomedical Engineering is a broad subject area, incorporating a combination of mathematics, physics, engineering, biology and medicine to answer health-science-related questions, for diagnostics, and for therapeutics.
The objective of the degree programme is to provide students with the skills and knowledge needed to conduct independent work and/or research in the field of biomedical engineering, particularly in areas related to computer science and medical physics. Following completion of the degree programme, graduates will:
- possess basic knowledge of anatomy, physiology, and genetics
- have acquired basic knowledge of biophysics and engineering mathematics (numerically-oriented), including programming
- have learned how to apply computational concepts to the life sciences, in relation to image analysis, scientific visualisation, inverse problems, and simulation systems
- possess detailed knowledge of radiotherapy, nuclear medicine, and medical imaging, and will have learned methods for mediating the gap between technologists and physicians
- have completed a scientific (life-sciences-related) project
- have successfully resolved technical issues related to Biomedical Engineering
- have acquired expertise in the critical assessment of technical systems in medicine
Programme overview
Main Subject
Medicine Related Studies
Degree
MSc
Study Level
Masters
Study Mode
On Campus
Biomedical Engineering is a broad subject area, incorporating a combination of mathematics, physics, engineering, biology and medicine to answer health-science-related questions, for diagnostics, and for therapeutics.
The objective of the degree programme is to provide students with the skills and knowledge needed to conduct independent work and/or research in the field of biomedical engineering, particularly in areas related to computer science and medical physics. Following completion of the degree programme, graduates will:
- possess basic knowledge of anatomy, physiology, and genetics
- have acquired basic knowledge of biophysics and engineering mathematics (numerically-oriented), including programming
- have learned how to apply computational concepts to the life sciences, in relation to image analysis, scientific visualisation, inverse problems, and simulation systems
- possess detailed knowledge of radiotherapy, nuclear medicine, and medical imaging, and will have learned methods for mediating the gap between technologists and physicians
- have completed a scientific (life-sciences-related) project
- have successfully resolved technical issues related to Biomedical Engineering
- have acquired expertise in the critical assessment of technical systems in medicine
Admission Requirements
Tuition fees
Domestic
International
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