B.Sc. in Biomedical Engineering

4 Years On Campus Bachelors Program

Poznan University of Technology

Program Overview

The B.Sc. in Biomedical Engineering at Poznań University of Technology is an interdisciplinary program that combines engineering, medicine, and modern healthcare technologies to prepare students for designing innovative medical devices, rehabilitation equipment, prostheses, implants, and intelligent healthcare solutions. Ideal for students passionate about mathematics, engineering, biology, and medical technology, the program develops both technical expertise and practical skills through modern laboratories, project-based learning, and close collaboration with healthcare professionals.

Location: Poznań University of Technology, Faculty of Mechanical Engineering, ul. Piotrowo 3, 60-965 Poznań, Polan

Curriculum Structure

Year 1

During the first year, students build a strong engineering and scientific foundation essential for biomedical applications. Courses such as Mathematics, Physics, Chemistry, Engineering Graphics, Computer Science, Mechanics, and CAD/CAM introduce analytical thinking while helping students understand engineering design principles and manufacturing processes used in medical technology.

Year 2

The second year introduces students to the intersection of engineering and human biology through subjects including Human Anatomy, Biomaterials, Medical Bioengineering Fundamentals, Biophysics, Engineering Biomechanics, Physiology with Kinesiology, and Medical Imaging Techniques. Students also gain practical experience in electronics, programming, radiography, and material behavior while learning how engineering principles support healthcare innovation.

Year 3

In the third year, the curriculum becomes increasingly specialized with modules such as Medical Apparatus, Implants and Artificial Organs, Orthopaedic Biomechanics, Microcontrollers, Digital Signal Processing, Medical Rehabilitation Equipment, and Medical Information Systems. Students strengthen their design and problem-solving skills while completing industrial practice and applying engineering knowledge to develop medical devices and rehabilitation technologies.

Year 4 (Final Stage)

The final stage focuses on professional development, innovation, and independent engineering projects. Students undertake Industrial Practice, Medical Imaging Techniques, Electronic Measuring and Actuating Systems, Computer Analysis of Medical Data, Robotics, Intellectual Property Protection, Diploma Seminar, and a Bachelor's Thesis, allowing them to solve real biomedical engineering challenges while preparing for professional careers or postgraduate study.

Focus Areas

Medical device design • Biomaterials • Prosthetics and implants • Rehabilitation engineering • Medical electronics • Biomechanics • Medical imaging • Robotics • Artificial intelligence in healthcare • CAD/CAM technologies • Digital signal processing • Biomedical data analysis

Learning Outcomes

Develop engineering solutions for healthcare challenges • Design and manufacture medical devices and rehabilitation equipment • Apply biomechanics, biomaterials, electronics, and programming in medicine • Analyze medical data and imaging systems • Collaborate effectively with doctors, physiotherapists, and healthcare professionals • Utilize advanced technologies including AI, virtual reality, and 3D printing in biomedical applications.

Professional Alignment (Accreditation)

The Biomedical Engineering B.Sc. is a general academic first-cycle (B.Sc.) program accredited by the Polish Accreditation Committee (PKA), ensuring compliance with Poland's national higher education quality standards.

Reputation (Employability Rankings)

Poznań University of Technology is recognized as one of Poland's leading technical universities, with strong industry connections and modern engineering laboratories. Biomedical Engineering graduates are prepared for careers in medical device manufacturing, rehabilitation technology, healthcare engineering, product development, and research, supported by industrial internships and collaboration with healthcare professionals throughout the program. 

Experiential Learning (Research, Projects, Internships etc.)

At Poznan University of Technology, the BS in Biomedical Engineering program is designed to provide students with a rich blend of theoretical knowledge and practical skills. The curriculum emphasizes hands-on experience, ensuring that students are well-prepared for the challenges of the biomedical field. With state-of-the-art facilities and cutting-edge tools, students can engage in real-world applications of their studies, enhancing their learning experience and employability.

Here are some key aspects of experiential learning in the Biomedical Engineering program:

- Modern Laboratories: Students have access to specialized laboratories equipped with advanced technology for research and experimentation, including biomechanics, biomaterials, and medical imaging labs.

- Group Projects: Collaborative projects are a core component of the curriculum, allowing students to work in teams to solve real-world biomedical engineering problems, fostering teamwork and communication skills.

- Internships: The program encourages internships with leading healthcare companies and research institutions, providing students with invaluable industry experience and networking opportunities.

- Software Proficiency: Students gain experience with industry-standard software tools such as MATLAB, SolidWorks, and LabVIEW, which are essential for modeling, simulation, and data analysis in biomedical applications.

- Field Trips: The program includes field trips to hospitals, research centers, and biomedical companies, giving students insights into the practical applications of their studies and exposure to potential career paths.

- Research Institutes: Students can collaborate with various research institutes affiliated with the university, engaging in innovative projects that contribute to advancements in biomedical engineering.

- Library Resources: The university's extensive library system provides access to a wealth of academic journals, books, and online resources specifically related to biomedical engineering and related fields.

 

Progression & Future Opportunities

Graduates of the BS in Biomedical Engineering at Poznan University of Technology are well-prepared to enter a dynamic and growing field, with many finding rewarding careers in various sectors. Typical job roles include Biomedical Engineer, Clinical Engineer, and Research Scientist. The program equips students with the skills and knowledge necessary to innovate and improve healthcare technologies, making a significant impact on patient care and medical advancements.

Here’s how Poznan University of Technology supports your journey toward a successful career:

- Career Services: The university offers dedicated career counseling, workshops, and job fairs that connect students with potential employers in the biomedical sector.
- Employment Statistics: Over 90% of graduates find employment within six months of graduation, with starting salaries averaging around €30,000 to €40,000 annually, depending on the role and location.
- University–Industry Partnerships: Collaborations with leading companies in the biomedical field, such as Philips and Siemens, provide students with internship opportunities and real-world project experience.
- Accreditation: The program is accredited by relevant professional bodies, ensuring that your degree holds long-term value and is recognized internationally.
- Graduation Outcomes: Alumni have successfully transitioned into roles in healthcare technology companies, research institutions, and regulatory agencies, showcasing the versatility of the degree.

Further Academic Progression: After completing the BS in Biomedical Engineering, students have the option to pursue a Master’s degree in Biomedical Engineering or related fields, such as Medical Physics or Healthcare Management. This advanced study can further enhance your expertise and open doors to leadership positions in research, academia, or specialized engineering roles. Additionally, pursuing a Ph.D. can lead to opportunities in cutting-edge research and development, contributing to groundbreaking innovations in healthcare technology.

Program Key Stats

zl13,600
zl13,600
zl85
Oct Intake : 9th Jul


No

Eligibility Criteria

BCC - BBC
3.0
28 - 30
70 - 75

1100 - 1200
22 - 25
5.5
46-59
75 - 82

Additional Information & Requirements

Country Requirements

Career Options

  • Biomedical Engineer
  • Medical Device Design Engineer
  • Clinical Engineer
  • Rehabilitation Engineer
  • Biomaterials Engineer
  • Biomedical Research Scientist
  • Quality Assurance Engineer
  • Regulatory Affairs Specialist
  • Medical Imaging Engineer
  • Healthcare Technology Consultant

Book Free Session with Our Admission Experts

Admission Experts