Computed Tomography Physics

This course was designed for Radiology residents and other medical professionals such as x-ray technologists, medical students, and physicists studying CT Physics. The course is also a great refresher for physicians who want to brush up on CT imaging principles
This course includes:

Short, focused topical video lectures

State of the art graphics

Access to course instructor

On-demand content

Engaging questions

Clinically relevant examples
Course Content
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Module 1: CT System Overview
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Module 2: The Xray Tube and Filtration
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Module 3: The Detector Array and Collimation
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Module 4: Image Formation and CT Number
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Module 5: Helical and Axial Acquisiiton Modes
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Module 6: Tube Current Modulation
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Module 7: CT Acquisition Parameters
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Module 8: CT Reconstruction Parameters
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Module 9: CT Dose
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Module 10: CT Artifacts
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Module 11: Dual Energy CT
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Module 12: CT Fluoroscopy
What You Will Learn
- Principles of image formation
- Factors that affect image quality
- Common Artifacts
- Effective and Safe Use of Equipment
Requirements
- 10-15 minutes per module
- 4 hours total to complete the course
- A desire to learn
- A quiet spot or headphones
Thank you for your continued time and teaching. You are greatly appreciated!
-Stephen
Great to work with all the modules
-Benjamin
Thank you for the remote format
-Brianna
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2) Which of the following topics are you interested in? *
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Radiography
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Ultrasound
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Fluoroscopy
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Mammography
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Computed Tomography
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Magnetic Resonance Imaging
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Nuclear Medicine
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Radiation Safety
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Radiation Biology
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Explore Our Course Catalog

Radiography Physics

Ultrasound Physics

Nuclear Medicine Physics

MRI Basic Physics

CT Physics

Fluoroscopy Physics

Mammography Physics

Radiation Biology Safety & Dose
Instructor

Karen Brown
Ms. Brown is a Diagnostic Imaging Physicist for Penn State College of Medicine. She is Certified in Radiological Physics by the American Board of Radiology (ABR) and in Health Physics by the American Board of Health Physics (ABHP).