SHM053 Biomedical Device TechnologiesIstinye UniversityDegree Programs Medical Imaging TechniquesGeneral Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Medical Imaging Techniques

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Associate TR-NQF-HE: Level 5 QF-EHEA: Short Cycle EQF-LLL: Level 5

Course Introduction and Application Information

Course Code: SHM053
Course Name: Biomedical Device Technologies
Semester: Spring
Course Credits:
ECTS
3
Language of instruction: Turkish
Course Condition:
Does the Course Require Work Experience?: No
Type of course: Departmental Elective
Course Level:
Associate TR-NQF-HE:5. Master`s Degree QF-EHEA:Short Cycle EQF-LLL:5. Master`s Degree
Mode of Delivery: Face to face
Course Coordinator: Öğr. Gör. ÖZGE ULU
Course Lecturer(s): Lec. Özge ULU
Course Assistants:

Course Objective and Content

Course Objectives: This course aims to provide students with general competencies regarding both the equipment used in the laboratory and the biomedical devices used to detect diseases. It is aimed to convey to students the necessary theoretical knowledge about the physical laws infrastructure of device hardware and to learn technical information about the purposes for which the devices are used.
Course Content: Cell Culture, Cell Culture laboratory design, Cell Culture Applications, Evaluation tests of Effects on Cells, Medical Devices used in the Laboratory and Their Purposes, Biomechanics and flexibility, fluids, sound and hearing, electrostatics, biopotentials, electric current and electronics, EEG, EMG and ECG study principles, Image Formation in Ultrasound and its Applications in the Clinic, X-ray Formation and its Applications in the Clinic, Image Formation in MR (Magnetic Resonance) and its Applications in the Clinic, Devices Used in Clinical Applications 1: X-ray, Mammography, DEXA, Devices Used in Clinical Applications 2: CT, MRI, SPECT/CT, PET/CT, PET/MR

Learning Outcomes

The students who have succeeded in this course;
1) Gains knowledge in the field of cells and cell research.
2) Have general information about laboratory design for cell culture.
3) Gain an idea about cell culture applications.
4) Have information about the devices used in the laboratory and their purposes.
5) Have knowledge about EEG, EMG and ECG used in the clinic.
6) Gains knowledge about the working principles of the devices used in imaging in the clinic and for what purpose they are used.
7) Gains knowledge about the working principles of the devices used in imaging in the clinic and for what purpose they are used.
8) Gains knowledge about devices used in the field of Nuclear Medicine such as Gamma camera, SPECT, PET.

Course Flow Plan

Week Subject Related Preparation
1) Course Introduction, Course Purpose and Learning Objectives
2) Introduction to Cells and Cell Research Cooper G. M. Hücre Moleküler Yaklaşım (8. Baskı). Ankara Nobel Tıp Kitabevleri.
3) Basic Principles in Cell Culture Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018
4) Cell Culture Laboratory Design and Required Equipment Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018
5) Applications in Cell Culture Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018
6) Tests to Evaluate the Effects on Cells Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018
7) Medical Devices Used in the Laboratory and Their Purposes Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018
8) Mıdterm
9) EEG, EMG and ECG Biyofizik. Dr. Enes Akyüz, Nobel Kitabevi. İstanbul 2022 (1. Baskı)
10) Image Formation in Ultrasound and Its Applications in the Clinic Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
11) X-ray Formation and Clinical Applications Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
12) Image Formation in MRI (Magnetic Resonance) and Its Applications in the Clinic Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
13) Devices Used in Clinical Applications 1: X-Ray, Mammography, DEXA Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
14) Devices Used in Clinical Applications 2: CT, MR, SPECT/CT, PET/CT, PET/MR Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)

Sources

Course Notes / Textbooks: Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
Biyofizik. Dr. Enes Akyüz, Nobel Kitabevi. İstanbul 2022 (1. Baskı)
Cooper G. M. Hücre Moleküler Yaklaşım (8. Baskı). Ankara Nobel Tıp Kitabevleri.
Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018

References: Biyomedikal Fizik. Prof. Dr. Gürbüz Çelebi, Barış Yayınları Fakülteler Kitabevi. İzmir 2008 (4. Baskı)
Biyofizik. Dr. Enes Akyüz, Nobel Kitabevi. İstanbul 2022 (1. Baskı)
Cooper G. M. Hücre Moleküler Yaklaşım (8. Baskı). Ankara Nobel Tıp Kitabevleri.
Dr. Öğr. Üyesi Gül İpek Gündoğan. Hücre Kültürüne Yeni Başlayanlar İçin Püf Noktalar. Nobel Tıp Kitabevi. 2018

Course - Program Learning Outcome Relationship

Course Learning Outcomes

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8

Program Outcomes
1) Has a basic level of theoretical and practical knowledge about the field of Medical Imaging Techniques.
2) Apply radiation safety and radiation protection rules. It takes necessary measures to protect itself 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.

Course - Learning Outcome Relationship

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
2) Apply radiation safety and radiation protection rules. It takes necessary measures to protect itself and the patient from the harmful effects of radiation. 2
3) Knows the infrastructure of medical imaging devices, daily maintenance and controls of the devices. 2
4) Has knowledge about occupational health and safety. 1
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. 2
6) Communicates effectively with colleagues, patients, relatives, physicians and other health professionals. 2
7) Knows radiological anatomy at basic level. Recognize the anatomical structures displayed. 1
8) Know medical and radiological terms, uses effectively. 1
9) Has the ability to communicate and work effectively with different medical sciences. 3
10) Adopts the principle of lifelong learning and follows and learns the technological developments in the field. 3
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. 1
12) Uses information and communication technologies with computer software at least at the basic level of European Computer Driving License required by the field. 2
13) Has knowledge about ethical principles and rules in the field. 2

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Midterms 1 % 40
Final 1 % 60
total % 100
PERCENTAGE OF SEMESTER WORK % 40
PERCENTAGE OF FINAL WORK % 60
total % 100

Workload and ECTS Credit Calculation

Activities Number of Activities Workload
Course Hours 15 30
Presentations / Seminar 15 60
Total Workload 90