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| BIL4010 | Medical Imaging Systems | 3+0+0 | ECTS:4 | | Year / Semester | Spring Semester | | Level of Course | First Cycle | | Status | Elective | | Department | DEPARTMENT of COMPUTER ENGINEERING | | Prerequisites and co-requisites | None | | Mode of Delivery | Face to face | | Contact Hours | 14 weeks - 3 hours of lectures per week | | Lecturer | Prof. Dr. Bekir DİZDAROĞLU | | Co-Lecturer | None | | Language of instruction | Turkish | | Professional practise ( internship ) | None | | | | The aim of the course: | | Link between the image data generation and the image reconstruction, processing, and analysis. |
| Learning Outcomes | CTPO | TOA | | Upon successful completion of the course, the students will be able to : | | | | LO - 1 : | understand how to image data generation. | 1.1 - 1.2 - 1.3 - 2.2 - 5.2 - 5.3 | 1 | | LO - 2 : | understand how to be image reconstruction, processing, and analysis. | 1.1 - 1.2 - 1.3 - 4.1 - 5.2 - 5.3 | 1 | | CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome | | |
| Introduction; Planar X-Ray Imaging: X-Ray Projection Radiography, Subtractive Angiography; X-Ray Computed Tomography: Imaging Principle and Geometry, Measuring Considerations, Imaging Properties, Postmeasurement Data Processing in Computed Tomography; Magnetic Resonance Imaging: Magnetic Resonance Phenomena, Response Measurement and Interpretation, Basic MRI Arrangement, Localization and Reconstruction of Image Data, Image Quality and Artifacts, Postmeasurement Data Processing in MRI; Nuclear Imaging: Planar Gamma Imaging, Single-Photon Emission Tomography, Positron Emission Tomography; Ultrasonography: Two-Dimensional Echo Imaging, Flow Imaging, Three-Dimensional Ultrasonography; Other Modalities: Optical and Infrared Imaging, Electron Microscopy, Electrical Impedance Tomography. |
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| Course Syllabus | | Week | Subject | Related Notes / Files | | Week 1 | Introduction | | | Week 2 | Planar X-Ray Imaging: X-Ray Projection Radiography | | | Week 3 | Planar X-Ray Imaging: Subtractive Angiography | | | Week 4 | Planar X-Ray Imaging: Imaging Principle and Geometry | | | Week 5 | Planar X-Ray Imaging: Measuring Considerations, Imaging Properties | | | Week 6 | Planar X-Ray Imaging: Postmeasurement Data Processing in Computed Tomography; | | | Week 7 | Magnetic Resonance Imaging: Magnetic Resonance Phenomena, Response Measurement and Interpretation | | | Week 8 | Magnetic Resonance Imaging: Basic MRI Arrangement, Localization and Reconstruction of Image Data | | | Week 9 | Mid-term exam
| | | Week 10 | Magnetic Resonance Imaging: Image Quality and Artifacts, Postmeasurement Data Processing in MRI | | | Week 11 | Nuclear Imaging: Planar Gamma Imaging, Single-Photon Emission Tomography | | | Week 12 | Nuclear Imaging: Positron Emission Tomography | | | Week 13 | Ultrasonography: Two-Dimensional Echo Imaging, Flow Imaging, Three-Dimensional Ultrasonography | | | Week 14 | Other Modalities: Optical and Infrared Imaging, Electron Microscopy | | | Week 15 | Other Modalities: Electrical Impedance Tomography | | | Week 16 | End-of-term exam | | | |
| 1 | Jan, Jiri. 2006; Medical Image Processing, Reconstruction, and Restoration, CRC Press, FL, USA | | | |
| 1 | Bankman, H. Isaac. 2009; Handbook of Medical Image Processing and Analysis, Elsevier, MA, USA | | | |
| Method of Assessment | | Type of assessment | Week No | Date | Duration (hours) | Weight (%) | | Mid-term exam | 9 | 11/04/2013 | 2 | 30 | | Homework/Assignment/Term-paper | 13 | 02/05/2013 | 30 | 20 | | End-of-term exam | 17 | 05/06/2013 | 2 | 50 | | |
| Student Work Load and its Distribution | | Type of work | Duration (hours pw) | No of weeks / Number of activity | Hours in total per term | | Yüz yüze eğitim | 3 | 14 | 42 | | Sınıf dışı çalışma | 2 | 14 | 28 | | Arasınav için hazırlık | 2 | 1 | 2 | | Arasınav | 2 | 1 | 2 | | Ödev | 20 | 1 | 20 | | Dönem sonu sınavı için hazırlık | 5 | 1 | 5 | | Dönem sonu sınavı | 2 | 1 | 2 | | Total work load | | | 101 |
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