Last edited by Kijas
Wednesday, May 6, 2020 | History

6 edition of Radiation Detectors for Medical Applications (NATO Security through Science Series / NATO Security through Science Series B: Physics and Biophysics) found in the catalog.

Radiation Detectors for Medical Applications (NATO Security through Science Series / NATO Security through Science Series B: Physics and Biophysics)

  • 306 Want to read
  • 8 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Medical imaging,
  • Scientific standards,
  • Radiology,
  • Medical,
  • Medical / Nursing,
  • Physics,
  • Weights & Measures,
  • Biophysics,
  • Medical / Radiology & Nuclear Medicine,
  • NATO,
  • Science,
  • Science : Physics,
  • Science : Weights & Measures,
  • Security,
  • Sub-Series B,
  • Congresses,
  • Diagnostic imaging,
  • Scintillation counters,
  • Tomography, Emission

  • Edition Notes

    ContributionsStefaan Tavernier (Editor), Alexander Gektin (Editor), Boris Grinyov (Editor), William W. Moses (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages317
    ID Numbers
    Open LibraryOL9389191M
    ISBN 101402050917
    ISBN 109781402050916

    ionizing radiation detectors for medical imaging Identity and quantity of 18, Digitally watermarked, no DRM included format: PDF eBooks can be used on all Reading Devices ion Detectors for Medical Applications. This book ion detectors in medical and biological applications. H.J. Integrating aspects of engineering, application physics, and medical science, Solid-State Radiation Detectors: Technology and Applications offers a comprehensive review of new and emerging solid-state materials-based technologies for radiation chapter is structured to address the current advantages and challenges of each material and technology .

    Ionizing radiation has always been present in the natural environment. However, this radiation is not easily detected and since it also possesses high ionizing power and penetration strength, it constitutes a risk to human health when it is found outside of its acceptable limits. The adverse effects of ionizing radiation on human health need to be systematically monitored in order to Cited by: 1. Summary. Integrating aspects of engineering, application physics, and medical science, Solid-State Radiation Detectors: Technology and Applications offers a comprehensive review of new and emerging solid-state materials-based technologies for radiation chapter is structured to address the current advantages and challenges of each material and technology .

      2. Room-Temperature Compound Semiconductor Radiation Detectors. Silicon (Si) and germanium (Ge) are traditional semiconductors used for radiation detectors that offer good performance in a wide range of applications [].The growing field of applications has stimulated the development of detectors based on compound semiconductors [].They were first Cited by: Ionizing Radiation Detectors for Medical Imaging contains ten technical chapters, half of which are devoted to radiology and the other half to nuclear medicine. Where necessary, software and specific applications are described in book is intended for graduate and undergraduate students in physics and engineering who want to study.


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Radiation Detectors for Medical Applications (NATO Security through Science Series / NATO Security through Science Series B: Physics and Biophysics) Download PDF EPUB FB2

The "NATO Advanced Research Workshop on radiation detectors for medical imaging", held in Alushta (Crimea, Ukraine) in September was a unique event and I. Overall, I found the book to be a valuable resource on scintillation radiation detectors and their medical applications.

This book should be part of any medical physics, health physics, radiology, or radiation oncology : Hardcover. From the reviews:"The book provides an overview of radiation detectors for medical applications in general, with particular emphasis on scintillation detectors.

All chapters include figures, tables, and illustrations that have been reproduced with good quality. The "NATO Advanced Research Workshop on radiation detectors for medical imaging", held in Alushta (Crimea, Ukraine) in September was a unique event and I am very pleased that the proceedings are published in the prestigious NATO Security Through Science series.

Overall, I found the book to be a valuable resource on scintillation radiation detectors and their medical applications.

This book should be part of any medical physics, health physics, radiology, or radiation oncology library. Medical Applications. Medical use of nuclear radiation is quite common in today’s hospitals and clinics.

One of the most important uses of nuclear radiation is the location and study of diseased tissue. This application requires a special drug called a radiopharmaceutical. A radiopharmaceutical contains an unstable radioactive isotope.

Radiation Detectors for Medical Imaging discusses the current state of the art and future prospects of photon-counting detectors for medical imaging applications.

Featuring contributions from leading experts and pioneers in their respective fields, this book: Describes x-ray spectral imaging detectors based on cadmium zinc telluride (CdZnTe) and cadmium telluride (CdTe) Price: $ Radiation Detectors for Medical Imaging discusses the current state of the art and future prospects of photon-counting detectors for medical imaging applications.

Featuring contributions from leading experts and pioneers in their respective fields, this book. The topic of this book is the use of scintillating materials in the detection of ionising radiation for medical imaging. The text surveys the state of the art in radiation detectors for medical imaging, followed by an in-depth review of all aspects of the use of scintillating materials.

Radiation Detectors for Medical Applications S. Tavernier, A. Gektin, B. Grinyov, and W.W. Moses New York, NY: Springer,pages, $ This book is the proceedings of the NATO Advanced Research Workshop on Radiation Detectors for Medical Application that was held in Alushta, Crimea, Ukraine, on September 19–23 of and is.

Get this from a library. Radiation detectors for medical applications. [Stefaan Tavernier; North Atlantic Treaty Organization. Public Diplomacy Division.;] -- The "NATO Advanced Research Workshop on radiation detectors for medical imaging", held in Alushta (Crimea, Ukraine) in September was a unique event and I am very pleased that the proceedings are.

Gamma Radiation. This book brings new research insights on the properties and behavior of gamma radiation, studies from a wide range of options of gamma radiation applications in Nuclear Physics, industrial processes, Environmental Science, Radiation Biology, Radiation Chemistry, Agriculture and Forestry, sterilization, food industry, as well as the review of both advantages.

Book Description. The aim of this book is to educate the reader on radiation detectors, from sensor to read-out electronics to application. Relatively new detector materials, such as CdZTe and Cr compensated GaAs, are introduced, along with emerging applications of. In this regard, the book provides an overview of radiation detectors for medical applications in general, with particular emphasis on scintillation detectors.

The book is composed of a collection of 13 articles from 14 keynote by: 1. Ionizing Radiation Detectors for Medical Imaging contains ten technical chapters, half of which are devoted to radiology and the other half to nuclear medicine. The last chapter describes the detectors for radiotherapy and portal imaging.

Each chapter addresses completely a specific application. Radiation Detectors for Medical Imaging discusses the current state of the art and future prospects of photon-counting detectors for medical imaging applications.

Featuring contributions from leading experts and pioneers in their respective fields, this book:Describes x-ray spectral imaging detectors based on cadmium zinc telluride (CdZnTe) and cad.

Radiation Detectors for Medical Imaging. The content this book could be divided into two halves. Chapters are focused on the basic technological. Signal Processing for Radiation Detectors provides researchers, engineers, and graduate students working in disciplines such as nuclear physics and engineering, environmental and biomedical engineering, and medical physics and radiological science, the knowledge to design their own systems, optimize available systems or to set up new experiments.

Scintillator based radiation detectors are employed in a large variety of medical imaging systems (x-ray radiography and fluoroscopy, computed tomography, gamma camera, positron emission tomography).

In all cases scintillators are directly or indirectly coupled to optical sensors (films, photocathodes, photodiodes) (). Radiation Detectors for Medical Imaging discusses the current state of the art and future prospects of photon-counting detectors for medical imaging applications.

Featuring contributions from leading experts and pioneers in their respective fields, this book:Describes x-ray spectral imaging detectors based on cadmium zinc telluride (CdZnTe) and cadCited by: 5. Vlado Valković, in Radioactivity in the Environment (Second Edition), Personal dosimetry detectors.

Personal radiation detectors (PRDs) detect and localize radiation sources generated by man-made devices, they are worn on the person and provide radiation detection in the immediate area around the wearer.

The instrument can quickly pinpoint the location of .Introduction to Radiation Detectors and Electronics Helmuth Spieler Jan LBNL 4 The development of detector systems is an interdisciplinary mix of physics and electronics.

For example, understanding of a modern tracking detector in high-energy physics or a medical imaging system requires knowledge of •solid state physics.Radiation detectors: Physical Principles and Applications.

New York: Oxford university Press, Del Guerra, Alberto. Ionizing Radiation Detectors for Medical Imaging. Hackensack, NJ: World Scientific Publishing Co. Brandon R. Brown.