Diagnostic ultrasound imaging : inside out /

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Bibliographic Details
Main Author: Szabo, Thomas L. (Author)
Format: eBook
Language:English
Published: Amsterdam Elsevier/Academic Press c2013.
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Table of Contents:
  • Cover
  • Title Page
  • Copyright Page
  • ACKNOWLEDGMENTS
  • PREFACE
  • TOC$CONTENTS
  • CH$Chapter 1. INTRODUCTION
  • 1.1 Introduction
  • 1.2 Echo Ranging of the Body
  • 1.3 Ultrasound Portrait Photographers
  • 1.4 Ultrasound Cinematographers
  • 1.5 Modern Ultrasound Imaging Developments
  • 1.6 Enabling Technologies for Ultrasound Imaging
  • 1.7 Ultrasound Imaging Safety
  • 1.8 Ultrasound and Other Diagnostic Imaging Modalities
  • 1.9 Conclusion
  • Bibliography
  • References
  • CH$Chapter 2. OVERVIEW
  • 2.1 Introduction
  • 2.2 Fourier Transform
  • 2.3 Building Blocks
  • 2.4 Central Diagram
  • References
  • CH$Chapter 3. ACOUSTIC WAVE PROPAGATION
  • 3.1 Introduction to Waves
  • 3.2 Plane Waves in Liquids and Solids
  • 3.3 Elastic Waves in Solids
  • 3.4 Conclusion
  • Bibliography
  • References
  • CH$Chapter 4. ATTENUATION
  • 4.1 Losses in Tissues
  • 4.2 Losses in Both Frequency and Time Domains
  • 4.3 Tissue Models
  • 4.4 Pulses in Lossy Media
  • 4.5 Penetration and Time Gain Compensation
  • 4.6 Hooke's Law for Viscoelastic Media
  • 4.7 Wave Equations for Tissues
  • References
  • CH$Chapter 5. TRANSDUCERS
  • 5.1 Introduction to Transducers
  • 5.2 Resonant Modes of Transducers
  • 5.3 Equivalent Circuit Transducer Model
  • 5.4 Transducer Design Considerations
  • 5.5 Transducer Pulses
  • 5.6 Equations for Piezoelectric Media
  • 5.7 Piezoelectric Materials
  • 5.8 Comparison of Piezoelectric Materials
  • 5.9 Transducer Advanced Topics
  • Bibliography
  • References
  • CH$Chapter 6. BEAMFORMING
  • 6.1 What is Diffraction?
  • 6.2 Fresnel Approximation of Spatial Diffraction Integral
  • 6.3 Rectangular Aperture
  • 6.4 Apodization
  • 6.5 Circular Apertures
  • 6.6 Focusing
  • 6.7 Angular Spectrum of Waves
  • 6.8 Diffraction Loss
  • 6.9 Limited Diffraction Beams
  • Bibliography
  • References
  • CH$Chapter 7. ARRAY BEAMFORMING
  • 7.1 Why Arrays?
  • 7.2 Diffraction in the Time Domain
  • 7.3 Circular Radiators in the Time Domain
  • 7.4 Arrays
  • 7.5 Pulse-Echo Beamforming
  • 7.6 Two-Dimensional Arrays
  • 7.7 Baffled
  • 7.8 General Approaches
  • 7.9 Nonideal Array Performance
  • Bibliography
  • References
  • CH$Chapter 8. WAVE SCATTERING AND IMAGING
  • 8.1 Introduction
  • 8.2 Scattering of Objects
  • 8.3 Role of Transducer Diffraction and Focusing
  • 8.4 Role of Imaging
  • Bibliography
  • References
  • CH$Chapter 9. SCATTERING FROM TISSUE AND TISSUE CHARACTERIZATION
  • 9.1 Introduction
  • 9.2 Scattering from Tissues
  • 9.3 Properties of and Propagation in Heterogeneous Tissue
  • 9.4 Array Processing of Scattered Pulse-Echo Signals
  • 9.5 Tissue Characterization Methods
  • 9.6 Applications of Tissue Characterization
  • 9.7 Elastography
  • 9.8 Aberration Correction
  • 9.9 Wave Equations for Tissue
  • Bibliography
  • References
  • CH$Chapter 10. IMAGING SYSTEMS AND APPLICATIONS
  • 10.1 Introduction
  • 10.2 Tr.