A cross-disciplinary, project-based master's that trains engineers to work at the intersection of medicine and information technology. Best suited to graduates from engineering, medical and health sciences, IT, natural sciences, dentistry or pharmacy who want to develop medical devices, clinical software and advanced patient-care technologies.
Teaching focuses on technological solutions used in clinical practice and health education. Topics and application areas named by the programme include neurorehabilitation, human–machine connectivity, medical imaging technology and biomimetic 3D tissue printing. Students gain experience in developing assistive devices such as individually designed prosthetic limbs with AI control, designing and using 3D imaging and design tools for medical purposes, producing living tissue prints, creating simulators for medical training, and engineering special devices for surgical implant procedures.
Applicants may apply with a bachelor’s degree in medical and health sciences or in engineering. The programme also welcomes candidates holding undergraduate degrees in information technology, natural sciences, dentistry or pharmacy. The course builds on prior scientific or technical education.
Graduates are prepared to work where engineering meets clinical practice: developing innovative medical devices and software, introducing technology into healthcare workflows, designing training simulators and surgical tools, and creating new patient-care methods aimed at improving quality of life. Roles can span medical device development, clinical engineering, biomedical R&D, and technology-driven healthcare services.
The programme page does not list specific scholarships. Prospective students should consult the university’s central funding and international offices for information on scholarships, grants or faculty-level support applicable to master's candidates.
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