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Diagnostic Nuclear Medicine, Softcover reprint of hardcover 1st ed. 2004 A Physics Perspective

Langue : Anglais

Auteur :

Couverture de l’ouvrage Diagnostic Nuclear Medicine
In the development of many medical technologies the beginning is characterised by an emphasis on the basic scientific principles of the technology and the optimisa­ tion of the functional aspects of the technology. As a technology matures there is a tendency for the underlying principles to be forgotten as the dinical applications begin to develop and the focus moves to an understanding of the dinical applica­ tion. This maturity brings with it new challenges for those involved in the use of the technology. An acceptance of the methodology may lead to a scaling back of the ba­ sic training of staff into the fundamentals of the techniques and lead to a lack of questioning as to those issues which lead to the optimisation in dinical applications. This lack of basic training may ultimately lead to a stifling of research and develop­ ment of the technology as a whole as trained staff becomes a scarce commodity. Nudear medicine is no exception to this development cyde. As a medical special­ ty the discipline has matured. The basic imaging technology has become more reli­ able in everyday use requiring less input from scientific staff. Clinical procedures have become protocols which are often followed without due understanding of the basic principles underlying the imaging procedure. This is clearly demonstrated when new radiopharmaceuticals are introduced into the market place.
I Radiation.- I.1 Radioactivity.- I.2 Radiopharmaceuticals.- I.3 Biological Effects of Radiation.- I.4 Protection of the Community.- I.5 Protection of the Patient.- II Detection Systems.- II.1 Radiation Detection.- II.2 Non-Imaging.- II.3 Single Photon Planar Imaging.- II.4 Single Photon Tomographic Imaging.- II.5 Dual Photon Imaging.- II.6 Image Presentation.- II.7 Computers and Communications.- III Clinical Procedures.- III.1 Non-Imaging Studies.- III.2 Single Photon Planar Imaging.- III.3 Single Photon Tomographic Imaging.- III.4 Dual Photon Imaging.- III.5 Image Processing and Analysis.- IV Quality Assurance.- IV.1 Quality Assurance.- IV.2 Radiopharmaceutical.- IV.3 Non-Imaging.- IV.4 Single Photon Planar Imaging.- IV.5 Single Photon Tomographic Imaging.- IV.6 Dual Photon Imaging.- IV.7 Image Presentation.- IV.8 Computer.- V Appendices.- V.1 Radionuclide Decay Characteristics.- V.2 Units.- V.3 Collimator Details.- V.4 GFR Single Sample Equations.- V.5 Typical Acquisition and Processing Protocols for Single Photon Investigations.

 David Hamilton has 27 years of medical physics experience in nuclear medicine within general and teaching hospitals, university departments and regional health authorities within England, Ireland, Saudi Arabia, Kuwait and Bahrain; including honorary lectureship at Trinity College, Dublin. consultant Medical Physicist at the Military Hospital, Riyadh, Saudi Arabia since 1992.Published 41 abstracts, papers and book chapters. Gained PhD in 1983 with a thesis entiteld: The analysis of 81Krm equilibrium inhalation data. Bained BSc in Physics in 1973 and MSc in BioEngineering in 1975. Awarde Fellowship of the IPEM in 1996.

Comprehensive text Provides information demanded in clinical practice Presents the principles and analyses the effects of physics in diagnostic nuclear medicine

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Date de parution :

Ouvrage de 465 p.

15.5x23.5 cm

Sous réserve de disponibilité chez l'éditeur.

Prix indicatif 105,49 €

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