University Sétif 1 FERHAT ABBAS Faculty of Sciences
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Auteur Jerrold T. Bushberg |
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The Essential Physics of Medical Imaging, Third Edition / Jerrold T. Bushberg
Titre : The Essential Physics of Medical Imaging, Third Edition Type de document : texte imprimé Auteurs : Jerrold T. Bushberg Editeur : Lippincott Williams & Année de publication : 2011 Importance : 1 vol. (1030 p.) Format : 24 cm ISBN/ISSN/EAN : 978-0-7817-8057-5 Note générale : 978-0-7817-8057-5 Langues : Anglais (eng) Catégories : Physique Mots-clés : physique
Imagerie médicale
Imagerie diagnostique :méthodesIndex. décimale : 530 Physique Résumé :
This renowned work is derived from the authors' acclaimed national review course ("Physics of Medical Imaging") at the University of California-Davis for radiology residents. The text is a guide to the fundamental principles of medical imaging physics, radiation protection and radiation biology, with complex topics presented in the clear and concise manner and style for which these authors are known. Coverage includes the production, characteristics and interactions of ionizing radiation used in medical imaging and the imaging modalities in which they are used, including radiography, mammography, fluoroscopy, computed tomography and nuclear medicine. Special attention is paid to optimizing patient dose in each of these modalities. Sections of the book address topics common to all forms of diagnostic imaging, including image quality and medical informatics as well as the non-ionizing medical imaging modalities of MRI and ultrasound.
The basic science important to nuclear imaging, including the nature and production of radioactivity, internal dosimetry and radiation detection and measurement, are presented clearly and concisely. Current concepts in the fields of radiation biology and radiation protection relevant to medical imaging, and a number of helpful appendices complete this comprehensive textbook. The text is enhanced by numerous full color charts, tables, images and superb illustrations that reinforce central concepts. The book is ideal for medical imaging professionals, and teachers and students in medical physics and biomedical engineering. Radiology residents will find this text especially useful in bolstering their understanding of imaging physics and related topics prior to board exams.
-- NEW Four-color throughout
-- NEW Companion website with fully searchable text and images
--Basic line drawings help to explain concepts
--Comprehensive coverage of diagnostic imaging modalities
--Superb writing style of the author team helps make a difficult subject approachable and engagingNote de contenu :
Sommaire
Section I. Basic concepts
1. Introduction to medical imaging
2. Radiation and the atom
3. Interaction of radiation with matter
4. Image quality
5. Imaging informatics
Section II. Diagnostic radiology
6. X-ray production, X-ray tubes, and generators
7. Radiography
8. Mammography
9. Fluoroscopy
10. Computed tomography
11. X-ray dosimetry in projection imaging and computed tomography
12. Magnetic resonance basics: magnetic fields, nuclear magnetic characteristics, tissue contrast, image acquisition
13. Magnetic resonance imaging: advanced image acquisition methods, artifacts, spectroscopy, quality control, siting, bioeffects, and safety
14. Ultrasound
Section III. Nuclear medicine
15. Radioactivity and nuclear transformation
16. Radionuclide production, radiopharmaceuticals, and internal dosimetry
17. Radiation detection and measurement
18. Nuclear imaging: scintillation camera
19. Nuclear imaging: emission tomography
Section IV. Radiation biology and protection
20. Radiation biology
21. Radiation protection
Section V. Appendices
A. Fundamental principles of physics
B. Digital computers
C. Physical constants, prefixes, geometry, conversion factors, and radiologic data
D. Mass attenuation coefficients
E. Effective doses, organ doses, and fetal doses from medical imaging procedures
F. Radiopharmaceutical characteristics and dosimetry
G. Convolution and Fourier transforms
H. Radiation dose: perspectives and comparisons
I. Radionuclide therapy home care guidelines
Côte titre : Fs/14257-14258 The Essential Physics of Medical Imaging, Third Edition [texte imprimé] / Jerrold T. Bushberg . - [S.l.] : Lippincott Williams &, 2011 . - 1 vol. (1030 p.) ; 24 cm.
ISBN : 978-0-7817-8057-5
978-0-7817-8057-5
Langues : Anglais (eng)
Catégories : Physique Mots-clés : physique
Imagerie médicale
Imagerie diagnostique :méthodesIndex. décimale : 530 Physique Résumé :
This renowned work is derived from the authors' acclaimed national review course ("Physics of Medical Imaging") at the University of California-Davis for radiology residents. The text is a guide to the fundamental principles of medical imaging physics, radiation protection and radiation biology, with complex topics presented in the clear and concise manner and style for which these authors are known. Coverage includes the production, characteristics and interactions of ionizing radiation used in medical imaging and the imaging modalities in which they are used, including radiography, mammography, fluoroscopy, computed tomography and nuclear medicine. Special attention is paid to optimizing patient dose in each of these modalities. Sections of the book address topics common to all forms of diagnostic imaging, including image quality and medical informatics as well as the non-ionizing medical imaging modalities of MRI and ultrasound.
The basic science important to nuclear imaging, including the nature and production of radioactivity, internal dosimetry and radiation detection and measurement, are presented clearly and concisely. Current concepts in the fields of radiation biology and radiation protection relevant to medical imaging, and a number of helpful appendices complete this comprehensive textbook. The text is enhanced by numerous full color charts, tables, images and superb illustrations that reinforce central concepts. The book is ideal for medical imaging professionals, and teachers and students in medical physics and biomedical engineering. Radiology residents will find this text especially useful in bolstering their understanding of imaging physics and related topics prior to board exams.
-- NEW Four-color throughout
-- NEW Companion website with fully searchable text and images
--Basic line drawings help to explain concepts
--Comprehensive coverage of diagnostic imaging modalities
--Superb writing style of the author team helps make a difficult subject approachable and engagingNote de contenu :
Sommaire
Section I. Basic concepts
1. Introduction to medical imaging
2. Radiation and the atom
3. Interaction of radiation with matter
4. Image quality
5. Imaging informatics
Section II. Diagnostic radiology
6. X-ray production, X-ray tubes, and generators
7. Radiography
8. Mammography
9. Fluoroscopy
10. Computed tomography
11. X-ray dosimetry in projection imaging and computed tomography
12. Magnetic resonance basics: magnetic fields, nuclear magnetic characteristics, tissue contrast, image acquisition
13. Magnetic resonance imaging: advanced image acquisition methods, artifacts, spectroscopy, quality control, siting, bioeffects, and safety
14. Ultrasound
Section III. Nuclear medicine
15. Radioactivity and nuclear transformation
16. Radionuclide production, radiopharmaceuticals, and internal dosimetry
17. Radiation detection and measurement
18. Nuclear imaging: scintillation camera
19. Nuclear imaging: emission tomography
Section IV. Radiation biology and protection
20. Radiation biology
21. Radiation protection
Section V. Appendices
A. Fundamental principles of physics
B. Digital computers
C. Physical constants, prefixes, geometry, conversion factors, and radiologic data
D. Mass attenuation coefficients
E. Effective doses, organ doses, and fetal doses from medical imaging procedures
F. Radiopharmaceutical characteristics and dosimetry
G. Convolution and Fourier transforms
H. Radiation dose: perspectives and comparisons
I. Radionuclide therapy home care guidelines
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