Ultrasound Elastography for Biomedical Applications and Medicine True PDF price 1€
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Ultrasound Elastography for Biomedical Applications and Medicine
True PDF
Price 1€
2019
(Original quality)
1th Edition
Covers all major developments and techniques of Ultrasound Elastography and biomedical applications
The field of ultrasound elastography has developed various techniques with the potential to diagnose and track the progression of diseases such as breast and thyroid cancer, liver and kidney fibrosis, congestive heart failure, and atherosclerosis. Having emerged in the last decade, ultrasound elastography is a medical imaging modality that can noninvasively measure and map the elastic and viscous properties of soft tissues.
Ultrasound Elastography for Biomedical Applications and Medicine covers the basic physics of ultrasound wave propagation and the interaction of ultrasound with various media. The book introduces tissue elastography, covers the history of the field, details the various methods that have been developed by research groups across the world, and describes its novel applications, particularly in shear wave elastography.
Key features:
- Covers all major developments and techniques of ultrasound elastography and biomedical applications.
- Contributions from the pioneers of the field secure the most complete coverage of ultrasound elastography available.
The book is essential reading for researchers and engineers working in ultrasound and elastography, as well as biomedical engineering students and those working in the field of biomechanics.
Ivan Z. Nenadic, Matthew W. Urban, James F. Greenleaf, Mayo Clinic, USA.
Jean-Luc Gennisson, Imagerie par Résonance Magnétique Médicale et Multi-Modalités, France.
Miguel Bernal, Universidad Pontificia Bolivariana, Colombia.
Mickael Tanter, Institut Langevin – Ondes et Images, ESPCI ParisTech CNRS, France.
Section I Introduction
Section II Fundamentals of Ultrasound Elastography
Section III Theory of Mechanical Properties of Tissue
Section IV Static and Low Frequency Elastography
Section V Harmonic Elastography Methods
Section VI Transient Elastography Methods
Section VII Emerging Research Areas in Ultrasound Elastography
Section VIII Clinical Elastography Applications
Section IX Perspective on Ultrasound Elastography