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Master's Programme in Health Technology Engineering
Curriculum 2026-2028
About the programme
After completing the programme, the graduate is be able to:
- Design, develop, and evaluate devices and solutions for health, medical, and wellbeing applications.
- Process and analyse sensor data produced by health devices.
- Create models and simulations of and for health devices.
- Apply engineering principles to the field of healthcare.
- Identify the relevant regulations and standards for particular health devices and healthcare systems.
- Assess ethical and social issues and implications related to evaluation of technologies on living subjects and handling of health data.
- Discuss engineering constraints and opportunities with relevant stakeholders in the context of clinical need.
- Plan and manage projects related to health devices
In a world where healthcare access, personalized medicine, epidemics, mental health, and aging populations are just some of the pressing health and wellbeing concerns, our program equips students with the skills and knowledge needed to develop innovative technical solutions to these outstanding problems. The Master's Programme in Health Technology Engineering (HTE) is set to cultivate a new generation of engineering professionals poised to tackle pivotal challenges at the intersection of engineering and healthcare.
The program鈥檚 mission is to educate engineering minded individuals with a desire to design, develop, and evaluate innovative devices and solutions for health, medical, and wellbeing applications. Through exposure to diverse translational and health engineering topics, students benefit from a rich educational and research ecosystem both on Aalto鈥檚 campus,a cross Finland, and abroad.
The program outcomes ensure that Health Technology Engineering graduates can design and implement medical devices and healthcare solutions, process and analyse health sensor data, create clinically relevant models and simulations, apply engineering principles to healthcare, navigate relevant regulations and standards, assess ethical implications of candiate solutions, constructively engage with various stakeholders, and effectively plan and manage health-related projects. The curriculum will empower graduates to contribute to the core technical and engineering activities within the flourishing Finnish and global health tech industries.
Students can freely choose either of the two majors. The majors consist of 40 credits of common courses to both majors and 25 credits of major-specific courses.
Degree structure
Major 65 ECTS
Code: ELEC3079
Credits: 65 ECTS
Responsible Professors: 鈥痁achary Taylor
Name of the major in Finnish: Terveyden mittaaminen ja puettava teknologia
Name of the major in Swedish: Medicinska instrument och kroppsburen teknik
Learning outcomes of the major
After completing this major, the graduate will be able to
- Design and experimentally assess wearable embedded systems for monitoring of biological parameters
- Condition and evaluate signals provided by health instrumentation and wearables
- Evaluate durability reliability and robustness of health instrumentation and wearables
- Understand and apply embedded system design principles to the field of health instrumentation and wearables
| Code | Course name | ECTS | Teaching |
|---|---|---|---|
| Common major courses in the programme: | |||
| ELEC-E8746 | Introduction to Human Movement Biomechanics | 5 | I-II English / 1st or 2nd year |
| ELEC-E8734 | Biomedical Instrumentation | 5 | II English / 1st year |
| ELEC-E8726 | Biosensing | 5 | III-IV English / 1st year |
| ELEC-E8712 | Design for Reliability | 5 | I-II English / 1st year |
| ELEC-E8004 | Project Work | 10 | III-V English / 1st year |
| ELEC-E8755 | Principles of Health Technology Assessment and Regulatory Affairs D | 5 | III-V English / 1st or 2nd year |
| ELEC-E0110 | Academic Skills in Master鈥檚 Studies | 3 | I-III English / 1st year |
| ELEC-E0210 | Master鈥檚 Thesis Process | 2 | Any / 2nd year* |
| Health Instrumentation and Wearables major specific courses: | |||
| ELEC-E3120 | Analysis and Design of Electronic Circuits | 5 | I-II English / 1st year |
| ELEC-E8740 | Basics of Sensor fusion | 5 | I-II English / 1st year |
| ELEC-E8742 | Translational Engineering Forum | 5 | III-IV English / 1st year |
| ELEC-E8748 | Sensors and Measurement Methods | 5 | IV-V English / 1st year |
Choose one of the following:ELEC-E8001 is a more fundamental course, choose it if you have not completed any courses in the subject before. If you have already completed the course in Aalto or if you have completed a sufficiently similar course in your previous studies elsewhere, choose ELEC-E8408, which is an applied consideration of the same subjects. |
|||
| ELEC-E8408 | Embedded Systems Development | 5 | III-IV English / 1st year |
| ELEC-E8001 | Embedded Real-Time Systems | 5 | I-II English / 1st year |
* continuous registration
Code: ELEC3080
Credits: 65 ECTS
Responsible Professors: 鈥疐ilip Elvander
Name of the major in Finnish: Terveysrobotiikka ja signaalink盲sittely
Name of the major in Swedish: Medicinsk robotik och signalbehandling
Learning outcomes of the major
After completing this major, the graduate will be able to
- Engineer and validate machine learning and robotic solutions for health and wellbeing solutions
- Apply advanced signal processing and estimation methods on embedded health sensors.
- Simulate biological signals and model control systems for health devices
- Design human-robot interfaces for health and wellbeing applications
| Code | Course name | ECTS | Teaching |
|---|---|---|---|
| Common major courses in the programme: | |||
| ELEC-E8746 | Introduction to Human Movement Biomechanics | 5 | I-II English / 1st or 2nd year |
| ELEC-E8734 | Biomedical Instrumentation | 5 | II English / 1st year |
| ELEC-E8726 | Biosensing | 5 | III-IV English / 1st year |
| ELEC-E8712 | Design for Reliability | 5 | I-II English / 1st year |
| ELEC-E8004 | Project Work | 10 | III-V English / 1st year |
| ELEC-E8755 | Principles of Health Technology Assessment and Regulatory Affairs D | 5 | III-V English / 1st or 2nd year |
| ELEC-E0110 | Academic Skills in Master鈥檚 Studies | 3 | I-III English / 1st year |
| ELEC-E0210 | Master鈥檚 Thesis Process | 2 | I-V English / 2nd year * |
| Health Robotics and Signal Processing major specific courses: | |||
| ELEC-E8739 | AI in Health technologies | 5 | I-II English / 1st year |
| ELEC-E5810 | Biosignal processing | 5 | I English / 1st year |
| ELEC-E8130 | Nonlinear Control Design and Analysis | 5 | I-II English / 1st year |
| ELEC-E8106 | Bayesian filtering and smoothing | 5 | III-IV English / 1st year |
| ELEC-E8743 | Neurorobotics | 5 | III-IV English / 1st year |
* continuous registration
Master's thesis 30 ECTS
Students are required to complete a Master's Thesis, which is an individual research assignment with a workload corresponding to 30 credits. The thesis is written on a topic related to the student's advanced studies and is agreed upon between the student and a supervisor who specializes in the topic area of the thesis. Master鈥檚 Thesis work includes a seminar presentation or equivalent presentation. The Master鈥檚 Thesis is a public document and cannot be concealed.
Read more under 鈥Thesis 迟补产鈥.&苍产蝉辫;
| Code | ECTS |
|---|---|
| ELEC.thes | 30 |
| ELEC.matr | 0 |
Elective studies 25 ECTS
Students choose 25 credits of elective studies. As elective studies, students can complete a minor and/or take individual courses. Students can freely choose a minor or individual courses of their interest to complement the content of their major or to expand knowledge beyond one鈥檚 main field of study. Interdisciplinary and entrepreneurial courses are encouraged.
Minor is selected from the list of available minors in the academic catalogue.
Individual courses may include
- courses from any field offered in Aalto
- Studies form other Finnish Universities (note! flexible study right not available after 31.7.2025)
- Studies completed during exchange studies abroad
- Practical training credits (max 5 ECTS)
- courses from European
Studies in the master鈥檚 programme should provide students with new knowledge. Studies that overlap or have similar content with studies that are included in student鈥檚 bachelor鈥檚 degree primarily cannot be included in master鈥檚 degree.
In general, elective studies must be university or university of applied sciences level studies. Universities also offer courses that are targeted for a larger audience. The suitability of these studies is evaluated taking into consideration the learning outcomes of the programme and the aims of the master of science (technology) degree.
Compulsory language studies
Compulsory language studies are included as part of the Finnish Bachelor鈥檚 degree for students who have studied in Finland and whose language of education is Finnish or Swedish. If the language studies have not been completed in the student鈥檚 Bachelor鈥檚 degree, the student must take 2 ECTS in the second national language and 3 ECTS in one foreign language, including both oral and written proficiency.
Students who have received their education in a language other than Finnish or Swedish, or received their education abroad, are required to complete only 3 ECTS in one foreign language, including both oral and written proficiency. Relevant courses (marked with 鈥榦鈥 and 鈥榳鈥) are offered by the Aalto University Language Center. Alternatively, these students can choose 3 ECTS of Finnish courses, hence not covering the requirement of oral/written proficiency but meeting the language requirement of the degree.
Language studies are included in students鈥 elective studies and are agreed in the personal study plan (HOPS).