BIOMEDICAL ENGINEERING | |||||
Bachelor | TR-NQF-HE: Level 6 | QF-EHEA: First Cycle | EQF-LLL: Level 6 |
Course Code | Course Name | Semester | Theoretical | Practical | Credit | ECTS |
BME1032 | Introduction to Biology | Spring | 3 | 0 | 3 | 6 |
Language of instruction: | English |
Type of course: | Must Course |
Course Level: | Bachelor’s Degree (First Cycle) |
Mode of Delivery: | Face to face |
Course Coordinator : | Dr. Öğr. Üyesi CANAN BAĞCI |
Recommended Optional Program Components: | None |
Course Objectives: | - To introduce students to the basic concepts and principles of biology - To introduce basic life units - To describe the structure of the cell - To describe the structure and function of cellular organelles. - To describe the processes involved in cellular division |
The students who have succeeded in this course; Students who successfully complete this course are able to; 1. Explain the steps in the scientific process and list the importance of biology in society and daily life. 2. Define the cell structure and function. 3. Describe the basic chemical structure of deoxyribonucleic acid (DNA), ribonucleic acid (RNA), carbohydrates, lipids, and proteins. 4. Explain the role of DNA and RNA in transmitting information from genotype (DNA) to phenotype (protein) and deciphering the genetic code. 5. Defines the evolution and ecosystem. |
1. Week: What is “cell”? by Dr. Filiz Sağlam, Dep. of Clinical Microbiology 2. Week: Cellular Organels by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 3. Week: Cell Division & Cell Death by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 4. Week: Lab: How to use microscobe-observation of some bacteria (in Goztepe Campus, Multidisipline Lab.) by Dr. Filiz Sağlam, Dep. of Clinical Microbiology 5. Week: Lab: Cell Types and Cell Division (in Goztepe Campus, Multidisipline Lab.) by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 6. Week: Muscle, Contraction & Human Activity by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 7. Week: Mid-Exam 8. Week: Nutrition and GIS System by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 9. Week: Circulation &Respiratory System by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 10. Week: Nervous System &Senses by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 11. Week: Reproductive System by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 12. Week: Introduction to Human Development by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 13. Week: Stem Cells by Dr. Gözde Erkanlı Şentürk, Dep. of Histology &Embryology 14. Week: Final Exam |
Week | Subject | Related Preparation |
1) | Human biology, Science and Society | |
2) | Cell Overview | Lecture notes |
3) | Organelles of the Cell | Lecture notes |
4) | Cell structure and functions | |
5) | DNA and chromosome | |
6) | DNA replication | Lecture notes |
7) | Cell division and metamorphosis | |
8) | Cancer: Uncontrolled cell division and differentiation | Lecture notes |
9) | Genetics and inheritance | |
10) | Human embryogenesis | |
11) | From cells to organs | |
12) | Introduction to stem cells | |
13) | Ecosystem and Population | |
14) | Evolution and the beginning of life | Lecture Notes |
Course Notes / Textbooks: | 1. Michael D. Johnson. “ Human Biology, Concepts and Current Issues”, ISBN: 1292166274, 8th Edition, Publisher: Pearson, 2017. 2-Alberts, B., Johnson, A., Lewis, J., Raff, M., Roberts, K., Walter, P. “Molecular Biology of The Cell”, 5th Edition, ISBN:9780815341055, Publisher: Garland Science, 2008. |
References: |
Semester Requirements | Number of Activities | Level of Contribution |
Attendance | 14 | % 5 |
Midterms | 1 | % 35 |
Final | 1 | % 60 |
Total | % 100 | |
PERCENTAGE OF SEMESTER WORK | % 40 | |
PERCENTAGE OF FINAL WORK | % 60 | |
Total | % 100 |
Activities | Number of Activities | Duration (Hours) | Workload |
Course Hours | 14 | 3 | 42 |
Laboratory | 3 | 9 | 27 |
Study Hours Out of Class | 14 | 6 | 84 |
Quizzes | 1 | 3 | 3 |
Midterms | 1 | 3 | 3 |
Final | 1 | 3 | 3 |
Total Workload | 162 |
No Effect | 1 Lowest | 2 Low | 3 Average | 4 High | 5 Highest |
Program Outcomes | Level of Contribution | |
1) | Adequate knowledge of subjects specific to mathematics (analysis, linear, algebra, differential equations, statistics), science (physics, chemistry, biology) and related engineering discipline, and the ability to use theoretical and applied knowledge in these fields in complex engineering problems. | 3 |
2) | Identify, formulate, and solve complex Biomedical Engineering problems; select and apply proper modeling and analysis methods for this purpose | 2 |
3) | Design complex Biomedical systems, processes, devices or products under realistic constraints and conditions, in such a way as to meet the desired result; apply modern design methods for this purpose. | 2 |
4) | Devise, select, and use modern techniques and tools needed for solving complex problems in Biomedical Engineering practice; employ information technologies effectively. | 2 |
5) | Design and conduct numerical or physical experiments, collect data, analyze and interpret results for investigating the complex problems specific to Biomedical Engineering. | 2 |
6) | Cooperate efficiently in intra-disciplinary and multi-disciplinary teams; and show self-reliance when working on Biomedical Engineering-related problems. | 2 |
7) | Ability to communicate effectively in Turkish, oral and written, to have gained the level of English language knowledge (European Language Portfolio B1 general level) to follow the innovations in the field of Biomedical Engineering; gain the ability to write and understand written reports effectively, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions. | 2 |
8) | Recognize the need for life-long learning; show ability to access information, to follow developments in science and technology, and to continuously educate oneself. | |
9) | Having knowledge for the importance of acting in accordance with the ethical principles of biomedical engineering and the awareness of professional responsibility and ethical responsibility and the standards used in biomedical engineering applications | |
10) | Learn about business life practices such as project management, risk management, and change management; develop an awareness of entrepreneurship, innovation, and sustainable development. | |
11) | Acquire knowledge about the effects of practices of Biomedical Engineering on health, environment, security in universal and social scope, and the contemporary problems of Biomedical Engineering; is aware of the legal consequences of Mechatronics engineering solutions. |