Radiology Board Review(RBR)

Hints and Tips, Traps and Pitfalls

Radiology Physics Review

  1. Compilation of Radiology Physics Practice Exams ( RAPHEX

  2. Fluoroscopy System Description and Operation

  3. University of Washington School of Medicine Rad Physics online

  4. RAPHEX 2002 Questions 

  5. UCSD Physics Recalls

  6. Online Diagnostic Radiology Practice ExamsCompilation of Radiological Physics Examination (RAPHEX)

  7. Course in Diagnostic Radiology Physics: Radiation Risks in Diagnostic Radiology (2008) 

  8. RSP 1308 – CT Imaging – Dose Assessment in Clinical Practice (2009) 

  9. Update Course in Diagnostic Radiology Physics: Screen-Film and Digital Mammography (2008)

  10. Doppler US Techniques: Concepts of Blood Flow Detection and Flow Dynamics

  11. B-mode US: Basic Concepts and New Technology

  12. Radiation Dose in CT

  13. Image Processing in CT

  14. Search for Isotropic Resolution in CT from Conventional through Multiple-Row Detector

  15. Fluoroscopy: Patient Radiation Exposure Issues

  16. Digital Fluoroscopy

  17. Fluoroscopy: Recording of Fluoroscopic Images and Automatic Exposure Control

  18. Fluoroscopy: Optical Coupling and the Video System

  19. X-ray Image Intensifiers for Fluoroscopy

  20. General Overview of Fluoroscopic Imaging

  21. Digital Mammography: An Overview

  22. Technological and Psychophysical Considerations for Digital Mammographic Displays

  23. Fundamental Physics of MR Imaging

  24. MR Artifacts, Safety, and Quality Control

  25. MR Imaging: Brief Overview and Emerging Applications

  26. Technologic Advances in Multidetector CT with a Focus on Cardiac Imaging

  27. Physics of Cardiac Imaging with Multiple-Row Detector CT

MRI Text Online(Joseph P. Hornak, Ph.D.)
  1. Introduction
  2. The Mathematics of NMR
  3. Spin Physics
  4. NMR Spectroscopy
  5. Fourier Transforms
  6. Imaging Principles
  7. Fourier Transform Imaging Principles
  8. Basic Imaging Techniques
  9. Imaging Hardware
  10. Image Presentation
  11. Image Artifacts
  12. Advanced Imaging Techniques
  13. Your MRI Exam
  14. Clinical Images
 
I. Image Quality (or Clarity)
II. Unsharpness, Resolution
A. resolving power
B. point-spread function
C. line-spread function
D. edge-response function
E. modulation transfer function Physical Characteristics of Nuclear Medicine Images
F. factors degrading spatial resolution
III. Contrast
A. subject contrast
B. displayed contrast
C. dynamic range (latitude)
D. factors degrading contrast
IV. Noise
V. Artifacts (Attenuation)
VI. Conclusions

Isotopes and Radioactivity