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X-Ray Imaging Systems for Biomedical Engineering Technology: An Essential Guide

Autor Euclid Seeram
en Limba Engleză Hardback – 28 noi 2023
This book addresses X-Ray Imaging Systems intended for biomedical engineering technology students and practitioners, and deals with the major technical components of x-ray imaging modalities. These modalities include film-based imaging, digital radiography, and computed tomography. Furthermore, principles and concepts essential to the understanding of how these modalities function will be described. These include fundamental radiation physics, imaging informatics, quality control, and radiation protection considerations.
X-Ray Imaging Systems for Biomedical Engineering Technology: An Essential Guide is intended for biomedical engineering technologists, who provide technical advice and services relating to digital radiography and CT departments not only in hospitals but in private facilities as well. Students in radiological technology programs may also find this to be a useful resource.
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Specificații

ISBN-13: 9783031462658
ISBN-10: 3031462653
Pagini: 155
Ilustrații: XV, 155 p. 85 illus., 66 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.42 kg
Ediția:1st ed. 2023
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Preface.- X-Ray Imaging Systems: An Overview.- Radiation Physics at a Glance.- Computed Radiography Imaging: Principles and System Components.- Flat-Panel Digital Radiography: Principles and System Components.- Digital Fluoroscopy: System Components and Principles.- Digital Image Quality Descriptors and Performance Characteristics.- Computed Tomography: Basic Physics and Technology.- Imaging Informatics Essentials.- Artificial Intelligence in Medical Imaging: An Overview.- Quality Control in Diagnostic X-Ray Imaging Systems.- Radiation Protection in X-Ray Imaging.- Index. 
 

Notă biografică

Dr Euclid Seeram was formerly the Program Head of the Medical Imaging Degree at the British Columbia Institute of Technology, where he worked for 38 years, where he served the Medical Imaging education and clinical practice communities; and earned an excellence in teaching award. Currently, Euclid has the following honorary academic appoints at Monash University; Charles Sturt University; and University of Canberra; in Australia. He is a full member of the Health Physics Society, and served as external examiner for 5 PhD dissertations on CT, from the University of Sydney.  Euclid has published more than 55 papers in peer-reviewed radiologic technology journals, and has published 24 textbooks on CT physics and technology and radiographic sciences. He serves on editorial boards for Radiography; Biomedical Imaging and Intervention Journal; International Journal of Radiology and Medical Imaging; Open Journal of Radiology; Journal of Allied Health; Journal of Social Science & Allied Health Professions. He is on the international advisory panel for the Journal of Medical Radiation Sciences.  

Textul de pe ultima copertă

This book addresses X-Ray Imaging Systems intended for biomedical engineering technology students and practitioners, and deals with the major technical components of x-ray imaging modalities. These modalities include film-based imaging, digital radiography, and computed tomography. Furthermore, principles and concepts essential to the understanding of how these modalities function will be described. These include fundamental radiation physics, imaging informatics, quality control, and radiation protection considerations.
X-Ray Imaging Systems for Biomedical Engineering Technology: An Essential Guide is intended for biomedical engineering technologists, who provide technical advice and services relating to digital radiography and CT departments not only in hospitals but in private facilities as well. Students in radiological technology programs may also find this to be a useful resource.

Caracteristici

Outlines the motivation for understanding X-Ray Imaging Systems in biomedical engineering technology Identifies and describes the major system components of digital radiography and computed tomography imaging modalities Covers fundamental radiation protection principles for biomedical engineering technology