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Student Workbook for Radiography in the Digital Age [electronic resource].

By: Publication details: Springfield : Charles C Thomas, 2014.Edition: 2nd edDescription: 1 online resource (315 p.)ISBN:
  • 9780398081201
  • 0398081204
Subject(s): Online resources:
Contents:
Chapter 1 Introduction to Radiographic Science; Chapter 2 Basic Physics For Radiography; Chapter 3 Unit Conversions and Help With Math; Chapter 4 The Atom; Chapter 5 Electromagnetic Waves; Chapter 6 Magnetism and Electrostatics; Chapter 7 Electrodynamics; Chapter 8 X-ray Machine Circuits and Generators; Chapter 9 The X-ray Tube; Chapter 10 X-ray Production; Chapter 11 Creation of the Radiographic Image; Chapter 12 Production of Subject Contrast; Chapter 13 Visibility Qualities of the Radiographic Image; Chapter 14 Geometrical Qualities of the Radiographic Image
Chapter 15 Milliampere-secondsChapter 16 Kilovoltage-peak; Chapter 17 Generators and Filtration; Chapter 18 Field Size Limitation; Chapter 19 Patient Condition, Pathology, and Contrast Agents; Chapter 20 Scattered Radiation and Grids; Chapter 21 Anode Bevel and Focal Spot; Chapter 22 Source-to-image Receptor Distance (SID); Chapter 23 OID and Distance Ratios; Chapter 24 Alignment and Motion; Chapter 25 Analyzing the Radiographic Image; Chapter 26 Simplifying and Standardizing Technique; Chapter 27 Using Automatic Exposure Controls (AEC); Chapter 28 Computer Basics
Chapter 29 Creating the Digital ImageChapter 30 Digital Image Preprocessing; Chapter 31 Digital Image Postprocessing; Chapter 32 Postprocessing Operations in Practice; Chapter 33 Applying Radiographic Technique to Digital Imaging; Chapter 34 Capturing the Digital Image: DR and CR; Chapter 35 Display Systems and Electronic Images; Chapter 36 Picture Archiving and Communication Systems (PACS); Chapter 37 Mobile Radiography and Tomography; Chapter 38 Fluoroscopy and Digital Fluoroscopy; Chapter 39 Quality Control; Chapter 40 Radiation Perspectives; Chapter 41 Radiation Units and Measurement
Chapter 42 Radiation Biology: Cellular EffectsChapter 43 Radiation Biology: Organism Effects; Chapter 44 Radiation Protection: Procedures and Policies
Summary: This Student Workbook for Radiography in the Digital Age is specifically designed for in-classroom use with the series PowerPoint Slides for Radiography in the Digital Age. Together with the textbook itself and the Instructor Resources CD, these products complete a full package of educational resources tailored for radiography courses in the Physics of Radiography, Principles of Imaging, Digital Image Acquisition and Display, and Radiation Biology and Protection. The Workbook is organized throughout in a concise ""fill-in-the-blank"" format, focusing on key words to reinforce students' retenti.
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Description based upon print version of record.

Chapter 1 Introduction to Radiographic Science; Chapter 2 Basic Physics For Radiography; Chapter 3 Unit Conversions and Help With Math; Chapter 4 The Atom; Chapter 5 Electromagnetic Waves; Chapter 6 Magnetism and Electrostatics; Chapter 7 Electrodynamics; Chapter 8 X-ray Machine Circuits and Generators; Chapter 9 The X-ray Tube; Chapter 10 X-ray Production; Chapter 11 Creation of the Radiographic Image; Chapter 12 Production of Subject Contrast; Chapter 13 Visibility Qualities of the Radiographic Image; Chapter 14 Geometrical Qualities of the Radiographic Image

Chapter 15 Milliampere-secondsChapter 16 Kilovoltage-peak; Chapter 17 Generators and Filtration; Chapter 18 Field Size Limitation; Chapter 19 Patient Condition, Pathology, and Contrast Agents; Chapter 20 Scattered Radiation and Grids; Chapter 21 Anode Bevel and Focal Spot; Chapter 22 Source-to-image Receptor Distance (SID); Chapter 23 OID and Distance Ratios; Chapter 24 Alignment and Motion; Chapter 25 Analyzing the Radiographic Image; Chapter 26 Simplifying and Standardizing Technique; Chapter 27 Using Automatic Exposure Controls (AEC); Chapter 28 Computer Basics

Chapter 29 Creating the Digital ImageChapter 30 Digital Image Preprocessing; Chapter 31 Digital Image Postprocessing; Chapter 32 Postprocessing Operations in Practice; Chapter 33 Applying Radiographic Technique to Digital Imaging; Chapter 34 Capturing the Digital Image: DR and CR; Chapter 35 Display Systems and Electronic Images; Chapter 36 Picture Archiving and Communication Systems (PACS); Chapter 37 Mobile Radiography and Tomography; Chapter 38 Fluoroscopy and Digital Fluoroscopy; Chapter 39 Quality Control; Chapter 40 Radiation Perspectives; Chapter 41 Radiation Units and Measurement

Chapter 42 Radiation Biology: Cellular EffectsChapter 43 Radiation Biology: Organism Effects; Chapter 44 Radiation Protection: Procedures and Policies

This Student Workbook for Radiography in the Digital Age is specifically designed for in-classroom use with the series PowerPoint Slides for Radiography in the Digital Age. Together with the textbook itself and the Instructor Resources CD, these products complete a full package of educational resources tailored for radiography courses in the Physics of Radiography, Principles of Imaging, Digital Image Acquisition and Display, and Radiation Biology and Protection. The Workbook is organized throughout in a concise ""fill-in-the-blank"" format, focusing on key words to reinforce students' retenti.

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