The University of Barcelona BSc in Biomedical Engineering combines engineering principles with medical and biological sciences to design technologies that improve healthcare, diagnostics, and patient treatment. It is ideal for students interested in innovation at the intersection of engineering, medicine, and life sciences, and is based in Barcelona, Catalonia, Spain (main UB engineering and science campus integrated within Barcelona’s biomedical research ecosystem).
Curriculum Structure:
Year 1: In the first year, students build a strong foundation in engineering and science through modules such as Mathematics I, Physics for Engineering, and Chemistry for Biomedical Applications. The focus is on developing analytical thinking, problem-solving skills, and understanding core physical and chemical principles relevant to biomedical systems.
Year 2: The second year introduces biomedical-specific knowledge through subjects like Biomaterials, Human Physiology, and Electronics and Instrumentation. Students begin laboratory-based learning, applying engineering tools to biological systems and understanding how the human body interacts with medical devices.
Year 3: The third year deepens technical expertise with modules such as Biomedical Signal Processing, Medical Imaging Systems, and Biomechanics. Students engage in applied projects involving data analysis, imaging technologies, and computational modelling of biological systems.
Year 4: In the final year, students focus on advanced electives like Tissue Engineering, Clinical Engineering, and Biomedical Device Design, along with a final-year thesis where they solve real-world healthcare engineering challenges in collaboration with research groups or hospitals.
Focus Areas: Medical Imaging, Biomaterials, Biomedical Devices, Biomechanics, Signal Processing, Clinical Engineering
Learning Outcomes: Graduates are able to design and develop biomedical technologies, analyse physiological data, apply engineering principles to healthcare systems, and contribute to innovation in medical diagnostics and treatment solutions.
Professional Alignment (Accreditation): The program is aligned with the European Higher Education Area (EHEA), ensuring strong international recognition and eligibility for postgraduate engineering and biomedical specialization programs.
Reputation (Employability Rankings): University of Barcelona is consistently ranked among the top global universities in QS World University Rankings, with strong performance in engineering and life sciences, supporting high graduate employability in biomedical and healthcare industries.
Experiential learning in the University of Barcelona BSc in Biomedical Engineering is strongly practice-driven, combining engineering principles with medical and biological applications in real clinical and research environments. Students develop hands-on skills through laboratory work, computational modelling, and collaborative projects that connect directly with hospitals, research institutes, and biomedical technology settings in Barcelona. A key strength of this program is its integration with advanced research centres and interdisciplinary facilities, where students work with real biomedical data, engineering systems, and experimental tools used in modern healthcare innovation:
• Laboratory training in biomedical engineering: Students work in specialised labs covering biomechanics, biomaterials, biomedical instrumentation, and cell/tissue engineering, gaining practical experience with experimental and diagnostic technologies
• Computational & software tools: Training includes widely used engineering and biomedical platforms such as MATLAB, Python-based modelling environments, and simulation tools for signal processing, imaging, and physiological systems analysis
• Clinical exposure & hospital collaboration: Students engage with partner hospitals such as Hospital Clínic de Barcelona through project-based learning, clinical engineering observations, and applied biomedical problem-solving
• Research institutes & innovation centres: Strong links with institutes such as the Institute for Bioengineering of Catalonia (IBEC), IDIBAPS, and the Barcelona Science Park (PCB) support internships, research placements, and final-year thesis projects
• Group projects & engineering design work: Students regularly complete interdisciplinary team projects focused on medical device design, biomedical data analysis, and healthcare technology development
• Field visits & applied learning: Organised visits to hospitals, research laboratories, and biotech companies provide direct insight into biomedical engineering applications in real healthcare systems
• Final year capstone project (TFG): Students complete an independent research or design project integrating engineering, biology, and clinical applications under academic and industry supervision
• University libraries & digital resources: Access to the University of Barcelona’s science libraries, digital biomedical databases, and engineering research repositories supports advanced academic and project work
The University of Barcelona BSc in Biomedical Engineering prepares graduates to apply engineering principles to medicine, healthcare technologies, and biomedical innovation, combining electronics, biology, and computational systems. It equips students to work at the intersection of healthcare and technology, developing solutions such as medical devices, diagnostic systems, and digital health tools.
This program typically leads to roles such as: biomedical engineer, clinical engineer, medical device developer, and healthcare technology analyst. Future progression & opportunities:
• University services supporting employment: The University of Barcelona provides dedicated career services including internship placement support in hospitals and biomedical companies, CV and interview preparation workshops, access to the UB career fairs, and research-oriented placements through affiliated biomedical institutes and laboratories
• Employment stats and salary figures: Biomedical engineering graduates in Spain typically earn a median salary range of approximately €25,000 – €40,000 per year, with higher salaries in private healthcare technology firms, medical device companies, and international R&D roles
• University–industry partnerships: Strong collaboration with hospitals in Barcelona, biomedical research centres, and medical technology companies supports internships, applied research projects, and innovation-driven training in healthcare engineering
• Long-term accreditation value: The degree is fully aligned with the European Higher Education Area (EHEA), ensuring strong international recognition and mobility for both employment and postgraduate study across Europe
• Graduation outcomes: Graduates commonly progress into medical technology companies, hospital engineering departments, biomedical research institutes, or digital health startups focused on device innovation and healthcare systems
Further Academic Progression: After completing this degree, students can pursue Master’s programs in Biomedical Engineering, Clinical Engineering, Bioinstrumentation, Biomechanics, Data Science in Healthcare, or Medical Technology Innovation, and later progress into PhD research in advanced biomedical systems and health engineering solutions.



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