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Master the critical physics content you need to know with this new title in the popular Case Review series. Imaging Physics Case Review offers a highly illustrated, case-based preparation for board review to help residents and recertifying radiologists succeed on exams and demonstrate a clinical understanding of physics, patient safety, and improvement of imaging accuracy and interpretation.

  • Presents 150 high-yield case studies organized by level of difficulty, with multiple-choice questions, answers, and rationales that mimic the format of certification exams.
  • Uses short, easily digestible chapters and high-quality illustrations for efficient, effective learning and exam preparation.
  • Discusses current advances in all modalities, ensuring that your study is up-to-date and clinically useful.
  • Covers today’s key physics topics including radiation safety and methods to prevent patient harm; how to reduce artifacts; basics of radiation doses including dose reduction strategies; cardiac CT physics; advanced ultrasound techniques; and how to optimize image quality using physics principles.
  • Enhanced eBook version included with purchase, which allows you to access all of the text, figures, and references from the book on a variety of devices

1. Cover image - p. Cover 2. Title page - p. ii 3. Table of Contents - p. iii 4. Series Page - p. iii 5. Copyright - p. iii 6. Dedication - p. iii 7. Foreword - p. iii 8. Preface - p. iii 9. List of Illustrations - p. iii 10. List of Tables - p. iii 11. Chapter 1: Radiographic Imaging - p. iii 12. Chapter 2: Mammographic Imaging - p. g26 13. Chapter 3: Fluoroscopy with Image Intensifiers - p. g50 14. Chapter 4: Interventional Radiology With Flat Panel Detectors - p. g72 15. Chapter 5: Computed Tomography Basics - p. g98 16. Chapter 6: Computed Tomography Imaging - p. g122 17. Chapter 7: Gamma Cameras - p. g150 18. Chapter 8: Single-Photon Emission Computed Tomography and Positron Emission Tomography Imaging - p. g176 19. Chapter 9: Magnetic Resonance Basics - p. g210 20. Chapter 10: Magnetic Resonance Imaging - p. g236 21. Chapter 11: Ultrasound Basics - p. g272 22. Chapter 12: Ultrasound Imaging and Doppler - p. g296 23. Chapter 13: Radiation Doses - p. g318 24. Chapter 14: Radiation Safety - p. g351 25. Index - p. g380

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Descripcion
Descripción

Master the critical physics content you need to know with this new title in the popular Case Review series. Imaging Physics Case Review offers a highly illustrated, case-based preparation for board review to help residents and recertifying radiologists succeed on exams and demonstrate a clinical understanding of physics, patient safety, and improvement of imaging accuracy and interpretation.

  • Presents 150 high-yield case studies organized by level of difficulty, with multiple-choice questions, answers, and rationales that mimic the format of certification exams.
  • Uses short, easily digestible chapters and high-quality illustrations for efficient, effective learning and exam preparation.
  • Discusses current advances in all modalities, ensuring that your study is up-to-date and clinically useful.
  • Covers today’s key physics topics including radiation safety and methods to prevent patient harm; how to reduce artifacts; basics of radiation doses including dose reduction strategies; cardiac CT physics; advanced ultrasound techniques; and how to optimize image quality using physics principles.
  • Enhanced eBook version included with purchase, which allows you to access all of the text, figures, and references from the book on a variety of devices

1. Cover image - p. Cover 2. Title page - p. ii 3. Table of Contents - p. iii 4. Series Page - p. iii 5. Copyright - p. iii 6. Dedication - p. iii 7. Foreword - p. iii 8. Preface - p. iii 9. List of Illustrations - p. iii 10. List of Tables - p. iii 11. Chapter 1: Radiographic Imaging - p. iii 12. Chapter 2: Mammographic Imaging - p. g26 13. Chapter 3: Fluoroscopy with Image Intensifiers - p. g50 14. Chapter 4: Interventional Radiology With Flat Panel Detectors - p. g72 15. Chapter 5: Computed Tomography Basics - p. g98 16. Chapter 6: Computed Tomography Imaging - p. g122 17. Chapter 7: Gamma Cameras - p. g150 18. Chapter 8: Single-Photon Emission Computed Tomography and Positron Emission Tomography Imaging - p. g176 19. Chapter 9: Magnetic Resonance Basics - p. g210 20. Chapter 10: Magnetic Resonance Imaging - p. g236 21. Chapter 11: Ultrasound Basics - p. g272 22. Chapter 12: Ultrasound Imaging and Doppler - p. g296 23. Chapter 13: Radiation Doses - p. g318 24. Chapter 14: Radiation Safety - p. g351 25. Index - p. g380

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