Course Name | Medical Imaging IV |
Code | Semester | Theory (hour/week) | Application/Lab (hour/week) | Local Credits | ECTS |
---|---|---|---|---|---|
TGT 202 | Spring | 2 | 8 | 6 | 8 |
Prerequisites | None | |||||
Course Language | English | |||||
Course Type | Required | |||||
Course Level | Short Cycle | |||||
Mode of Delivery | - | |||||
Teaching Methods and Techniques of the Course | ||||||
Course Coordinator | ||||||
Course Lecturer(s) | ||||||
Assistant(s) | - |
Course Objectives | The aim of this course is to learn imaging techniques and principles of ultrasound, mamography, bone densitometry and angiography devices. |
Learning Outcomes | The students who succeeded in this course;
|
Course Description | Bone densitometry, mamography, angiography and ultrasound examinations of major body parts. |
Related Sustainable Development Goals | |
| Core Courses | X |
Major Area Courses | ||
Supportive Courses | ||
Media and Managment Skills Courses | ||
Transferable Skill Courses |
Week | Subjects | Required Materials |
1 | Mamography Device - Application in imaging centers | The textbooks referenced below and course slides |
2 | Mamografical Techniques - Application in imaging centers | The textbooks referenced below and course slides |
3 | Ultrasonography Device- Application in imaging centers | The textbooks referenced below and course slides |
4 | Basic Ultrasonography Physics -Application in imaging centers | The textbooks referenced below and course slides |
5 | Physics of Doppler Ultrasonography and Areas Where is used -Application in imaging centers | The textbooks referenced below and course slides |
6 | Midterm exam | |
7 | Advanced Radiological Tecniques- Application in imaging centers | The textbooks referenced below and course slides |
8 | Advanced Radiological Tecniques -Application in imaging centers | The textbooks referenced below and course slides |
9 | Ortopantomography- Application in imaging centers | The textbooks referenced below and course slides |
10 | İnformation about Dexa Device -Application in imaging centers | The textbooks referenced below and course slides |
11 | Dexa Scanning tecniques -Application in imaging centers | The textbooks referenced below and course slides |
12 | Angiography device, tecniques and usage -Application in imaging centers | The textbooks referenced below and course slides |
13 | Angiography Device,Ttechniques andApplication Areas -Application in imaging centers | The textbooks referenced below and course slides |
14 | Midterm exam | |
15 | General discussion | The textbooks referenced below and course slides |
16 | Final exam |
Course Notes/Textbooks | Course slides |
Suggested Readings/Materials | 1- Mustafa Seçil, Temel Ultrasonografi ve Doppler Kitabı, Ege Kitabevi, ISBN 2013 978994462726-9 2- Mahmut Oğuz, Ultrasonografi, Nobel Tıp Kitabevi, 1997 ISBN 5019701001 3- Bahri Yıldız, Temel Ultrasonografi Nobel Tıp Kitabevi, 2015 ISBN 9786053351122 4-Temel Radyoloji, Michael Y.M.Chen Nobel tıp Kitabevi ISBN 9789754205596 5- Prof Dr.Orhan Uyar Tıbbi Görüntüleme Fiziği ISBN 9789756813409 |
Semester Activities | Number | Weighting |
Participation | 1 | 5 |
Laboratory / Application | 1 | 25 |
Field Work | ||
Quizzes / Studio Critiques | ||
Portfolio | ||
Homework / Assignments | 1 | 15 |
Presentation / Jury | ||
Project | ||
Seminar / Workshop | ||
Oral Exam | ||
Midterm | 1 | 20 |
Final Exam | 1 | 35 |
Total |
Weighting of Semester Activities on the Final Grade | 4 | 65 |
Weighting of End-of-Semester Activities on the Final Grade | 1 | 35 |
Total |
Semester Activities | Number | Duration (Hours) | Workload |
---|---|---|---|
Course Hours (Including exam week: 16 x total hours) | 16 | 2 | 32 |
Laboratory / Application Hours (Including exam week: 16 x total hours) | 16 | 8 | |
Study Hours Out of Class | 16 | 1 | 16 |
Field Work | |||
Quizzes / Studio Critiques | |||
Portfolio | |||
Homework / Assignments | 1 | 18 | |
Presentation / Jury | |||
Project | |||
Seminar / Workshop | |||
Oral Exam | |||
Midterms | 1 | 7 | |
Final Exams | 1 | 9 | |
Total | 210 |
# | Program Competencies/Outcomes | * Contribution Level | ||||
1 | 2 | 3 | 4 | 5 | ||
1 | To have the required contemporary theoretical and practical knowledge in his/her field | X | ||||
2 | To use the material and technology related to his/her field, and make their maintenance, use the information and communication technologies at basic level | X | ||||
3 | To have the competency to recognize the problems in his/her field, analyze them, develop evidence-based solutions and have the ability to share their suggestions with others | X | ||||
4 | To be aware of legal responsibilities, conduct basic studies in her/his field independently | X | ||||
5 | To communicate with patients, relatives and colleagues properly, comprehensively, honestly and explicitly, transfer his/her thoughts and knowledge through written and oral communication | X | ||||
6 | To take responsibility as an active team member during the practices in his/her field | X | ||||
7 | To commentate and evaluate the scientific information with a critical approach by the help of knowledge gained in his/her field | X | ||||
8 | To comprehend the importance of lifelong learning, to determine and meet her/his learning needs, to develop herself/himself by monitoring the development in science and technology | X | ||||
9 | To act by considering the universal ethical values, social and cultural characteristics | X | ||||
10 | To know the concepts of occupational safety, patient safety, environmental protection and quality, and fulfill the requirements | X | ||||
11 | To be able to follow information in his field and communicate with colleagues in English at least a level of European Language Portfolio A2 General Level | X | ||||
12 | To take appropriate measures in accordance with radiation safety and radiation protection rules | X | ||||
13 | To determine the needs according to the requirements and carry out activities for development in the field of medical imaging techniques | X |
*1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest