Medical Imaging Techniques (Evening Education) | |||||
Associate | TR-NQF-HE: Level 5 | QF-EHEA: Short Cycle | EQF-LLL: Level 5 |
Course Code: | UNI228 | ||||
Course Name: | Personal Medicine | ||||
Semester: | Spring | ||||
Course Credits: |
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Language of instruction: | Turkish | ||||
Course Condition: | |||||
Does the Course Require Work Experience?: | No | ||||
Type of course: | University Elective | ||||
Course Level: |
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Mode of Delivery: | E-Learning | ||||
Course Coordinator: | Dr. Öğr. Üy. FATMA KÜBRA TOMBULTÜRK | ||||
Course Lecturer(s): | Fatma Kübra Tombultürk | ||||
Course Assistants: |
Course Objectives: | It is aimed to learn personal medicine-targeted information by determining and learning personalized treatment methods. |
Course Content: | It includes treatment options based on human molecular profile in various diseases. |
The students who have succeeded in this course;
1) Gain knowledge of personalized medicine resulting from each person's clinical, genetic, genomic and environmental knowledge. 2) Learns treatment options based on human molecular profile in various diseases. 3) Learns that the molecular profile is different in each individual. 4) Have distinctive knowledge about the effect of modern medicine and personalized medicine on diseases. |
Week | Subject | Related Preparation |
1) | Genomic information | |
2) | Personalized medicine | |
3) | Genomic approach to Personal Targeted drug therapy | |
4) | Pharmacogenomics and complex diseases | |
5) | Pharmacogenetics and potential applications in personalized medicine-1 | |
6) | Pharmacogenetics and potential applications in personalized medicine-2 | |
7) | Role of noncoding RNAs in personalized molecular therapy | |
8) | Midterm exam | |
9) | Personalized medicine treatments based on the molecular profile in cancer-1 | |
10) | Personalized medicine treatments based on the molecular profile in cancer-2 | |
11) | Personalized medicine treatments based on molecular profile in diabetes | |
12) | Pharmacometabolomics drug metabolism, toxicity and efficacy in personalized medicine | |
13) | Future personalized medicine practice plans | |
14) | Known and unknown in personalized medicine | |
15) | Final exam | |
16) | Final exam |
Course Notes / Textbooks: | Öğretim üyesinin ders notları |
References: | Academic Member's lecture notes |
Course Learning Outcomes | 1 |
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3 |
4 |
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Program Outcomes | |||||||||||||
1) Has a basic level of theoretical and practical knowledge about the field of Medical Imaging Techniques. | |||||||||||||
2) Applies radiation safety and radiation protection rules. Takes the necessary precautions to protect himself and the patient from the harmful effects of radiation. | |||||||||||||
3) Knows the infrastructure of medical imaging devices, daily maintenance and controls of the devices. | |||||||||||||
4) Has knowledge about occupational health and safety. | |||||||||||||
5) In order to solve unforeseen complex problems encountered in the applications related to the field, it takes part in the team and acts in accordance with the quality management and processes and takes individual responsibility when necessary. | |||||||||||||
6) Communicates effectively with colleagues, patients, relatives, physicians and other health professionals. | |||||||||||||
7) Knows radiological anatomy at basic level. Recognize the anatomical structures displayed. | |||||||||||||
8) Know medical and radiological terms, uses effectively. | |||||||||||||
9) Has the ability to communicate and work effectively with different medical sciences. | |||||||||||||
10) Adopts the principle of lifelong learning and follows and learns the technological developments in the field. | |||||||||||||
11) Follows the information in his / her field and communicates with his / her colleagues by using a foreign language at least at a level of European Language Portfolio A2 General Level. | |||||||||||||
12) Uses information and communication technologies with computer software at least at the basic level of European Computer Driving License required by the field. | |||||||||||||
13) Has knowledge about ethical principles and rules in the field. |
No Effect | 1 Lowest | 2 Average | 3 Highest |
Program Outcomes | Level of Contribution | |
1) | Has a basic level of theoretical and practical knowledge about the field of Medical Imaging Techniques. | |
2) | Applies radiation safety and radiation protection rules. Takes the necessary precautions to protect himself and the patient from the harmful effects of radiation. | |
3) | Knows the infrastructure of medical imaging devices, daily maintenance and controls of the devices. | |
4) | Has knowledge about occupational health and safety. | |
5) | In order to solve unforeseen complex problems encountered in the applications related to the field, it takes part in the team and acts in accordance with the quality management and processes and takes individual responsibility when necessary. | |
6) | Communicates effectively with colleagues, patients, relatives, physicians and other health professionals. | |
7) | Knows radiological anatomy at basic level. Recognize the anatomical structures displayed. | |
8) | Know medical and radiological terms, uses effectively. | |
9) | Has the ability to communicate and work effectively with different medical sciences. | |
10) | Adopts the principle of lifelong learning and follows and learns the technological developments in the field. | |
11) | Follows the information in his / her field and communicates with his / her colleagues by using a foreign language at least at a level of European Language Portfolio A2 General Level. | |
12) | Uses information and communication technologies with computer software at least at the basic level of European Computer Driving License required by the field. | |
13) | Has knowledge about ethical principles and rules in the field. |
Semester Requirements | Number of Activities | Level of Contribution |
Midterms | 1 | % 50 |
Final | 1 | % 50 |
total | % 100 | |
PERCENTAGE OF SEMESTER WORK | % 50 | |
PERCENTAGE OF FINAL WORK | % 50 | |
total | % 100 |
Activities | Number of Activities | Workload |
Course Hours | 13 | 39 |
Study Hours Out of Class | 13 | 39 |
Presentations / Seminar | 8 | 24 |
Homework Assignments | 13 | 13 |
Total Workload | 115 |