CTU FEE Moodle
Introduction to bioengineering
B251 - Winter 25/26
Introduction to bioengineering - BAB31UBI
| Credits | 4 |
| Semesters | Winter |
| Completion | Graded Assessment |
| Language of teaching | Czech |
| Extent of teaching | 2P+2L |
Annotation
The course presents the basics of biomedical engineering and provides illustrative examples of projects performed by the faculty teams.
Study targets
• To understand the roles of the biomedical engineer in the research, healthcare, and private sector
• To fit he field into a historical and ethical perspective
• To describe and define different technical aspects of the biomedical engineering
• To have an insight into the projects of the teams from the faculty
• To fit he field into a historical and ethical perspective
• To describe and define different technical aspects of the biomedical engineering
• To have an insight into the projects of the teams from the faculty
Course outlines
1. Bioengineering: General, historicalc a ethical frame of biomedicalengineering
2. Medical devices:Design of medical devices
3. Medical devices: Biological signals and their analysis
4. Medical devices: Diagnostics
5. Diagnostics: Neurodegenerative diseases
6. Diagnostics: Analysis of the epileptogenic activity
7. Diagnostics: Medical image processing
8. Diagnostics: Bioinformatics and datamining
9. Diagnostics: Genetics for neuroengineering
10. Medical devices: Therapy
11. Therapy: Epileptosurgery commented surgery recording
12. Medical devices: Prosthetics and wearables
13. Personal experience of the absolovents
14. Medical devices: Models
2. Medical devices:Design of medical devices
3. Medical devices: Biological signals and their analysis
4. Medical devices: Diagnostics
5. Diagnostics: Neurodegenerative diseases
6. Diagnostics: Analysis of the epileptogenic activity
7. Diagnostics: Medical image processing
8. Diagnostics: Bioinformatics and datamining
9. Diagnostics: Genetics for neuroengineering
10. Medical devices: Therapy
11. Therapy: Epileptosurgery commented surgery recording
12. Medical devices: Prosthetics and wearables
13. Personal experience of the absolovents
14. Medical devices: Models
Exercises outlines
1. (K131): Basics of soldering
2. (K131): Oscilloscope
3. (K131): Measurements
4. (K131): Individual project
5. (K131): Individual project
6. (K131): Individual project
7. (K131): Individual project
8. (K102): Medical devices
9. (K102): Therapeutical devices
10. (K102): Special devices
11 . Excursion
12. Excursion
13. Excursion
14. Excursion
2. (K131): Oscilloscope
3. (K131): Measurements
4. (K131): Individual project
5. (K131): Individual project
6. (K131): Individual project
7. (K131): Individual project
8. (K102): Medical devices
9. (K102): Therapeutical devices
10. (K102): Special devices
11 . Excursion
12. Excursion
13. Excursion
14. Excursion
Literature
[1] Rozman, J. (2006) Elektronické přístroje v lékařství. Praha. Academia, Česká matice technická, č. spisu 494, roč. 111. ISBN 80-200-1308-3.
[2] Enderle, J. D., & Bronzino, J. D. (2012). Introduction to biomedical engineering (3rd ed.). Burlington, Mass.: Academic Press.
[3] Bronzino, J., Peterson, D. (2015). Biomedical Engineering Fundamentals. Boca Raton: CRC Press, https://doi.org/10.1201/b15482 (dostupné jako ebook na stránkách Ústřední knihovny ČVUT)
[2] Enderle, J. D., & Bronzino, J. D. (2012). Introduction to biomedical engineering (3rd ed.). Burlington, Mass.: Academic Press.
[3] Bronzino, J., Peterson, D. (2015). Biomedical Engineering Fundamentals. Boca Raton: CRC Press, https://doi.org/10.1201/b15482 (dostupné jako ebook na stránkách Ústřední knihovny ČVUT)
Requirements
Předmět nemá prerekvizity.