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πŸ“

The Physics of Medical Imaging, Second Edition

✍ Scribed by S. Webb


Publisher
Taylor & Francis
Year
2012
Tongue
English
Leaves
829
Edition
2
Category
Library

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✦ Synopsis


Since the publication of the best-selling, highly acclaimed first edition, the technology and clinical applications of medical imaging have changed significantly. Gathering these developments into one volume, Webb’s Physics of Medical Imaging, Second Edition presents a thorough update of the basic physics, modern technology and many examples of clinical application across all the modalities of medical imaging.

New to the Second Edition

  • Extensive updates to all original chapters
  • Coverage of state-of-the-art detector technology and computer processing used in medical imaging
  • 11 new contributors in addition to the original team of authors
  • Two new chapters on medical image processing and multimodality imaging
  • More than 50 percent new examples and over 80 percent new figures
  • Glossary of abbreviations, color insert and contents lists at the beginning of each chapter

Keeping the material accessible to graduate students, this well-illustrated book reviews the basic physics underpinning imaging in medicine. It covers the major techniques of x-radiology, computerised tomography, nuclear medicine, ultrasound and magnetic resonance imaging, in addition to infrared, electrical impedance and optical imaging. The text also describes the mathematics of medical imaging, image processing, image perception, computational requirements and multimodality imaging.

✦ Table of Contents


Front Cover
Series Preface
Quotation
Contents
Contributors
Editor
Acknowledgement to the First Edition
Acknowledgement to the Second Edition
Abbreviations
Introduction and Some Challenging Questions
Chapter 1 - In the Beginning: the Origins of Medical Imaging
Chapter 2 - Diagnostic Radiology with X-Rays
Chapter 3 - X-Ray Transmission Computed Tomography
Chapter 4 - Clinical Applications of X-Ray Computed Tomography in Radiotherapy Planning
Chapter 5 - Radioisotope Imaging
Chapter 6 - Diagnostic Ultrasound
Chapter 7 - Spatially Localised Magnetic Resonance
Chapter 8 - Physical Aspects of Infrared Imaging
Chapter 9 - Imaging of Tissue Electrical Impedance
Chapter 10 - Optical Imaging
Chapter 11 - Mathematics of Image Formation and Image Processing
Chapter 12 - Medical Image Processing
Chapter 13 - Perception and Interpretation of Images
Chapter 14 - Computer Requirements of Imaging Systems
Chapter 15 - Multimodality Imaging
Chapter 16 - Epilogue
Back Cover


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