İzmir Ekonomi Üniversitesi
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  • VOCATIONAL SCHOOL OF HEALTH SERVICES

    Department of Medical Imaging Techniques

    TGT 202 | Course Introduction and Application Information

    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 Q&A
    Lecture / Presentation
    Field work/Application
    Report Writing
    National Occupation Classification -
    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;

    • Define physics and image formation of ultrasound and doppler ultrasonograpy.
    • Explain applications of ultrasound and doppler ultasonograpy
    • Define Mamography device and applications.
    • Explain Dexa device and applications.
    • Classify angiography techniques and applications.
    Course Description This course covers that bone densitometry, mamography, angiography and ultrasound examinations of major body parts.
    Related Sustainable Development Goals

     



    Course Category

    Core Courses
    Major Area Courses
    Supportive Courses
    X
    Media and Management Skills Courses
    Transferable Skill Courses

     

    WEEKLY SUBJECTS AND RELATED PREPARATION STUDIES

    Week Subjects Related Preparation
    1 Structure and Operating Principles of Mammography Systems and Their Application in Imaging Units Michael Y. M. Chen, Temel Radyoloji, pp. 119–127. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; Stewart C. Bushong, Radyoloji Bilimi: Teknolojistler İçin Fizik, Biyoloji ve Korunma.
    2 Mammographic Imaging Methods and Clinical Applications Michael Y. M. Chen, Temel Radyoloji, pp. 127–143. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    3 Structure of Ultrasound Systems, Probe Types and Image Formation Mustafa Seçil, Temel Ultrasonografi ve Doppler, pp. 1–8. Supplementary source: Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    4 4 Fundamental Physical Principles of Ultrasonography and Imaging Techniques Mustafa Seçil, Temel Ultrasonografi ve Doppler, pp. 1–8. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    5 Physical Principles, Techniques and Applications of Doppler Ultrasonography Mustafa Seçil, Temel Ultrasonografi ve Doppler, pp. 9–29. Supplementary source: Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    6 Quiz
    7 Advanced Radiological Imaging Techniques and Applications I Orhan Oyar, BT Çekim Protokolleri, pp. 50–61. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    8 Midterm Examination -
    9 Advanced Radiological Imaging Techniques and Applications II Orhan Oyar, BT Çekim Protokolleri, p. 72 and the relevant section. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    10 Orthopantomography Systems, Imaging Principles and Applications Orhan Oyar, Tıbbi Görüntüleme Fiziği, pp. 441–444. Supplementary source: Stewart C. Bushong, Radyoloji Bilimi: Teknolojistler İçin Fizik, Biyoloji ve Korunma.
    11 Structure and Operating Principles of DEXA Systems and Bone Mineral Density Measurement Orhan Oyar, Tıbbi Görüntüleme Fiziği, pp. 450–452. Supplementary source: Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    12 DEXA Scanning Methods, Patient Positioning and Applications Orhan Oyar, Tıbbi Görüntüleme Fiziği, pp. 450–452. Supplementary source: Nuran Akyurt (Ed.), Tıbbi Görüntüleme Yöntemleri.
    13 Structure of Angiography Systems, Imaging Techniques and Basic Applications Orhan Oyar, Tıbbi Görüntüleme Fiziği, pp. 419–425. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; İbrahim Tanzer Sancak, Temel Radyoloji.
    14 Angiographic Imaging Techniques and Clinical Applications Orhan Oyar, Tıbbi Görüntüleme Fiziği, pp. 419–425. Supplementary sources: Fazıl Gelal (Ed.), Radyoloji Fiziği; İbrahim Tanzer Sancak, Temel Radyoloji.
    15 General Evaluation and Review of Medical Imaging Techniques
    16 Final examination

     

    Course Notes/Textbooks
    1. Seçil, M. Temel Ultrasonografi ve Doppler. Izmir: Ege Bookstore, 2013. ISBN: 978-9944-627-26-9.
    2. Oyar, O. Tıbbi Görüntüleme Fiziği. Süleyman Demirel University Faculty of Medicine Publications. ISBN: 978-975-6813-40-9.
    Suggested Readings/Materials
    1. Chen, M. Y. M. Temel Radyoloji. Nobel Medical Bookstores. ISBN: 978-975-420-559-6.
    2. Oğuz, M. Ultrasonografi. Istanbul: Nobel Medical Bookstores, 1997. ISBN: 5019701001.
    3. Yıldız, B. Temel Ultrasonografi. Istanbul: Nobel Medical Bookstores, 2015. ISBN: 978-605-335-112-2.
    4. Gelal, F. (Ed.). Radyoloji Fiziği. Istanbul: Nobel Medical Bookstores, 2020. ISBN: 978-605-335-495-6.
    5. Bushong, S. C. Radyoloji Bilimi: Teknolojistler İçin Fizik, Biyoloji ve Korunma. Translation Editor: İbrahim Tanzer Sancak. Istanbul: Güneş Medical Bookstore, 2020. ISBN: 978-975-277-789-7.
    6. Akyurt, N. (Ed.). Tıbbi Görüntüleme Yöntemleri: Tarihçe, İnceleme Yöntemleri, Temel Prensipler, İleri Uygulamalar, Radyasyondan Korunma, Yönetim, Maliyet, İletişim. Ankara: Akademisyen Publishing House, 2023. ISBN: 978-625-399-234-7.
    7. Sancak, İ. T. Temel Radyoloji. Istanbul: Güneş Medical Bookstore, 2015.
    8. Oyar, O. BT Çekim Protokolleri. Istanbul: Istanbul Medical / Istanbul Medical Bookstore, 2008. ISBN: 978-9944-211-31-4.

     

    EVALUATION SYSTEM

    Semester Activities Number Weigthing
    Participation
    Laboratory / Application
    1
    20
    Field Work
    Quizzes / Studio Critiques
    1
    10
    Portfolio
    Homework / Assignments
    1
    10
    Presentation / Jury
    Project
    Seminar / Workshop
    Oral Exams
    Midterm
    1
    20
    Final Exam
    1
    40
    Total

    Weighting of Semester Activities on the Final Grade
    4
    65
    Weighting of End-of-Semester Activities on the Final Grade
    1
    35
    Total

    ECTS / WORKLOAD TABLE

    Semester Activities Number Duration (Hours) Workload
    Theoretical Course Hours
    (Including exam week: 16 x total hours)
    16
    2
    32
    Laboratory / Application Hours
    (Including exam week: '.16.' x total hours)
    16
    8
    128
    Study Hours Out of Class
    14
    3
    42
    Field Work
    0
    Quizzes / Studio Critiques
    1
    5
    5
    Portfolio
    0
    Homework / Assignments
    3
    5
    15
    Presentation / Jury
    0
    Project
    0
    Seminar / Workshop
    0
    Oral Exam
    0
    Midterms
    1
    8
    8
    Final Exam
    1
    10
    10
        Total
    240

     

    COURSE LEARNING OUTCOMES AND PROGRAM QUALIFICATIONS RELATIONSHIP

    #
    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.

    -
    -
    -
    -
    -
    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.

    -
    -
    -
    -
    -
    7

    To commentate and evaluate the scientific information with a critical approach by the help of knowledge gained in his/her field.

    -
    -
    -
    -
    -
    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.

    -
    -
    -
    -
    -
    12

    Explains radiation protection and radiation safety rules for patients and staff in medical imaging units and takes necessary precautions accordingly.

    -
    -
    -
    -
    -
    13

    Is capable of using X-ray based imaging devices (such as CT, CR and DR systems, mammography, etc.) as well as magnetic resonance imaging (MRI) devices in medical imaging units.

    -
    -
    -
    -
    -

    *1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest


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