Radiation Dosimetry

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Introduction to Radiological Physics and Radiation Dosimetry

Author : Frank Herbert Attix
Publisher : John Wiley & Sons
Page : 628 pages
File Size : 48,9 Mb
Release : 2008-09-26
Category : Medical
ISBN : 9783527617142

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Introduction to Radiological Physics and Radiation Dosimetry by Frank Herbert Attix Pdf

A straightforward presentation of the broad concepts underlying radiological physics and radiation dosimetry for the graduate-level student. Covers photon and neutron attenuation, radiation and charged particle equilibrium, interactions of photons and charged particles with matter, radiotherapy dosimetry, as well as photographic, calorimetric, chemical, and thermoluminescence dosimetry. Includes many new derivations, such as Kramers X-ray spectrum, as well as topics that have not been thoroughly analyzed in other texts, such as broad-beam attenuation and geometrics, and the reciprocity theorem. Subjects are layed out in a logical sequence, making the topics easier for students to follow. Supplemented with numerous diagrams and tables.

Introduction to Radiological Physics and Radiation Dosimetry

Author : Frank H. Attix
Publisher : John Wiley & Sons
Page : 640 pages
File Size : 42,7 Mb
Release : 1986
Category : Medical
ISBN : 0471011460

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Introduction to Radiological Physics and Radiation Dosimetry by Frank H. Attix Pdf

A straightforward presentation of the broad concepts underlying radiological physics and radiation dosimetry for the graduate-level student. Covers photon and neutron attenuation, radiation and charged particle equilibrium, interactions of photons and charged particles with matter, radiotherapy dosimetry, as well as photographic, calorimetric, chemical, and thermoluminescence dosimetry. Includes many new derivations, such as Kramers X-ray spectrum, as well as topics that have not been thoroughly analyzed in other texts, such as broad-beam attenuation and geometrics, and the reciprocity theorem. Subjects are layed out in a logical sequence, making the topics easier for students to follow. Supplemented with numerous diagrams and tables.

Fundamentals of Ionizing Radiation Dosimetry

Author : Pedro Andreo,David T. Burns,Alan E. Nahum,Jan Seuntjens
Publisher : John Wiley & Sons
Page : 236 pages
File Size : 53,9 Mb
Release : 2017-06-14
Category : Science
ISBN : 9783527811045

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Fundamentals of Ionizing Radiation Dosimetry by Pedro Andreo,David T. Burns,Alan E. Nahum,Jan Seuntjens Pdf

Fördert nachhaltig das Verständnis von Konzepten zur Strahlendosimetrie: ausführliche Lösungen zu den Übungen im Lehrbuch "Fundamentals of Ionizing Radiation Dosimetry".

Fundamentals of Radiation Dosimetry

Author : J.R Greening
Publisher : CRC Press
Page : 196 pages
File Size : 40,8 Mb
Release : 2017-12-14
Category : Science
ISBN : 9781351446327

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Fundamentals of Radiation Dosimetry by J.R Greening Pdf

This book reviews ionising radiation quantities and the relationships between them and discusses the principles underlying their measurement. The emphasis is on the determination of absorbed dose and related dosimetric quantities.

Radiation Dosimetry

Author : Gerald J. Hine,Gordon L. Brownell
Publisher : Elsevier
Page : 946 pages
File Size : 40,5 Mb
Release : 2013-09-12
Category : Medical
ISBN : 9781483258539

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Radiation Dosimetry by Gerald J. Hine,Gordon L. Brownell Pdf

Radiation Dosimetry focuses on the advancements, processes, technologies, techniques, and principles involved in radiation dosimetry, including counters and calibration and standardization techniques. The selection first offers information on radiation units and the theory of ionization dosimetry and interaction of radiation with matter. Topics include quantities derivable from roentgens, determination of dose in roentgens, ionization dosimetry of high-energy photons and corpuscular radiations, and heavy charged particles. The text then examines the biological and medical effects of radiation, as well as radiation effects in malignant tissues, levels of radiation, and mechanism of radiation effects on living cells. The publication takes a look at ionization chambers, Geiger-Mueller counters and proportional counters, scintillation detectors, and photographic film dosimetry, Discussions focus on calibration and standardization techniques, scintillating materials and their light yield, scintillation detector dosimetry of neutrons, and the physics of counters. The text also ponders on chemical and colorimetric indicators and survey instruments and pocket dosimeters. The selection is a dependable reference for readers interested in radiation dosimetry.

Radiation Dosimetry Instrumentation and Methods

Author : Gad Shani
Publisher : CRC Press
Page : 506 pages
File Size : 43,9 Mb
Release : 2000-12-28
Category : Medical
ISBN : 9780849315053

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Radiation Dosimetry Instrumentation and Methods by Gad Shani Pdf

Radiation dosimetry has made great progress in the last decade, mainly because radiation therapy is much more widely used. Since the first edition, many new developments have been made in the basic methods for dosimetry, i.e. ionization chambers, TLD, chemical dosimeters, and photographic films. Radiation Dosimetry: Instrumentation and Methods, Second Edition brings to the reader these latest developments. Written at a high level for medical physicists, engineers, and advanced dosimetrists, it concentrates only on evolvement during the last decade, relying on the first edition to provide the basics.

Nuclear Medicine Therapy

Author : Janet F. Eary,Winfried Brenner
Publisher : CRC Press
Page : 216 pages
File Size : 47,8 Mb
Release : 2007-03-30
Category : Medical
ISBN : 9781420016642

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Nuclear Medicine Therapy by Janet F. Eary,Winfried Brenner Pdf

One in three of the 30 million Americans who are hospitalized are diagnosed or treated with nuclear medicine techniques. This text provides a succinct overview and detailed set of procedures and considerations for patient therapy with unsealed radioactivity sources. Serving as a complete literature reference for therapy with radiopharmaceuticals c

Radiation Protection and Dosimetry

Author : Michael G. Stabin
Publisher : Springer Science & Business Media
Page : 390 pages
File Size : 55,9 Mb
Release : 2007-09-12
Category : Science
ISBN : 9780387499833

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Radiation Protection and Dosimetry by Michael G. Stabin Pdf

This book provides a comprehensive yet accessible overview of all relevant topics in the field of radiation protection (health physics). The text is organized to introduce the reader to basic principles of radiation emission and propagation, to review current knowledge and historical aspects of the biological effects of radiation, and to cover important operational topics such as radiation shielding and dosimetry. The author’s website contains materials for instructors including PowerPoint slides for lectures and worked-out solutions to end-of-chapter exercises. The book serves as an essential handbook for practicing health physics professionals.

Medical Radiation Dosimetry

Author : Brian J McParland
Publisher : Springer Science & Business Media
Page : 622 pages
File Size : 51,5 Mb
Release : 2013-11-11
Category : Medical
ISBN : 9781447154037

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Medical Radiation Dosimetry by Brian J McParland Pdf

Accurate radiation dosimetry is a requirement of radiation oncology, diagnostic radiology and nuclear medicine. It is necessary so as to satisfy the needs of patient safety, therapeutic and diagnostic optimisation, and retrospective epidemiological studies of the biological effects resulting from low absorbed doses of ionising radiation. The radiation absorbed dose received by the patient is the ultimate consequence of the transfer of kinetic energy through collisions between energetic charged particles and atoms of the tissue being traversed. Thus, the ability of the medical physicist to both measure and calculate accurately patient dosimetry demands a deep understanding of the physics of charged particle interactions with matter. Interestingly, the physics of charged particle energy loss has an almost exclusively theoretical basis, thus necessitating an advanced theoretical understanding of the subject in order to apply it appropriately to the clinical regime. ​ Each year, about one-third of the world's population is exposed to ionising radiation as a consequence of diagnostic or therapeutic medical practice. The optimisation of the resulting radiation absorbed dose received by the patient and the clinical outcome sought, whether diagnostic or therapeutic, demands accuracy in the evaluation of the radiation absorbed doses resulting from such exposures. This requirement arrises primarily from two broadly-encompassing factors: The requirement in radiation oncology for a 5% or less uncertainty in the calculation and measurement of absorbed dose so as to optimise the therapeutic ratio of the probabilities of tumour control and normal tissue complications; and The establishment and further refinement of dose reference levels used in diagnostic radiology and nuclear medicine to minimise the amount of absorbed dose for a required degree of diagnostic benefit. The radiation absorbed dose is the outcome of energetic charged particles decelerating and transferring their kinetic energy to tissue. The calculation of this energy deposition, characterised by the stopping power, is unique in that it is derived entirely from theoretical principles. This dominant role of the associated theory makes its understanding of fundamental to the calculation of the radiation absorbed dose to the patient. The theoretical development of charged particle energy loss recognised in medical physics textbooks is in general limited to basic derivations based upon classical theory, generally a simplified form of the Bohr theory. More advanced descriptions of, for example, the Bethe-Bloch quantum result usually do not go beyond the simple presentation of the result without full explanation of the theoretical development of the theory and consideration of its limitations, its dependencies upon the Born perturbation theory and the various correction factors needed to correct for the failures of that Born theory at higher orders. This is not appropriate for a full understanding of the theory that its importance deserves. The medical radiation physicist should be aware of the details of the theoretical derivations of charged particle energy loss in order to appreciate the levels of accuracy in tabular data provided in reports and the calculation methodologies used in modern Monte Carlo calculations of radiation dosimetry.

Nuclear Medicine Radiation Dosimetry

Author : Brian J McParland
Publisher : Springer Science & Business Media
Page : 633 pages
File Size : 46,6 Mb
Release : 2010-07-03
Category : Medical
ISBN : 9781848821262

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Nuclear Medicine Radiation Dosimetry by Brian J McParland Pdf

Complexities of the requirements for accurate radiation dosimetry evaluation in both diagnostic and therapeutic nuclear medicine (including PET) have grown over the past decade. This is due primarily to four factors: Growing consideration of accurate patient-specific treatment planning for radionuclide therapy as a means of improving the therapeutic benefit, development of more realistic anthropomorphic phantoms and their use in estimating radiation transport and dosimetry in patients, Design and use of advanced Monte Carlo algorithms in calculating the above-mentioned radiation transport and dosimetry which require the user to have a thorough understanding of the theoretical principles used in such algorithms, their appropriateness and their limitations, increasing regulatory scrutiny of the radiation dose burden borne by nuclear medicine patients in the clinic and in the development of new radiopharmaceuticals, thus requiring more accurate and robust dosimetry evaluations. An element common to all four factors is the need for precise radiation dosimetry in nuclear medicine, which is fundamental to the therapeutic success of a patient undergoing radionuclide therapy and to the safety of the patients undergoing diagnostic nuclear medicine and PET procedures. As the complexity of internal radiation dosimetry applied to diagnostic and therapeutic nuclear medicine increases, this book will provide the theoretical foundations for: enabling the practising nuclear medicine physicist to understand the dosimetry calculations being used and their limitations, allowing the research nuclear medicine physicist to critically examine the internal radiation dosimetry algorithms available and under development; and providing the developers of Monte Carlo codes for the transport of radiation resulting from internal radioactive sources with the only comprehensive and definitive.

Advanced Radiation Protection Dosimetry

Author : Shaheen Dewji,Nolan E. Hertel
Publisher : CRC Press
Page : 507 pages
File Size : 40,5 Mb
Release : 2019-04-02
Category : Science
ISBN : 9780429621550

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Advanced Radiation Protection Dosimetry by Shaheen Dewji,Nolan E. Hertel Pdf

Although many radiation protection scientists and engineers use dose coefficients, few know the origin of those dose coefficients. This is the first book in over 40 years to address the topic of radiation protection dosimetry in intimate detail. Advanced Radiation Protection Dosimetry covers all methods used in radiation protection dosimetry, including advanced external and internal radiation dosimetry concepts and regulatory applications. This book is an ideal reference for both scientists and practitioners in radiation protection and students in graduate health physics and medical physics courses. Features: A much-needed book filling a gap in the market in a rapidly expanding area Contains the history, evolution, and the most up-to-date computational dosimetry models Authored and edited by internationally recognized authorities and subject area specialists Interrogates both the origins and methodologies of dose coefficient calculation Incorporates the latest international guidance for radiation dosimetry and protection

Handbook of Anatomical Models for Radiation Dosimetry

Author : Xie George Xu,Keith F. Eckerman
Publisher : CRC Press
Page : 757 pages
File Size : 47,7 Mb
Release : 2009-09-01
Category : Science
ISBN : 1420059807

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Handbook of Anatomical Models for Radiation Dosimetry by Xie George Xu,Keith F. Eckerman Pdf

Over the past few decades, the radiological science community has developed and applied numerous models of the human body for radiation protection, diagnostic imaging, and nuclear medicine therapy. The Handbook of Anatomical Models for Radiation Dosimetry provides a comprehensive review of the development and application of these computational models, known as "phantoms." An ambitious and unparalleled project, this pioneering work is the result of several years of planning and preparation involving 64 authors from across the world. It brings together recommendations and information sanctioned by the International Commission on Radiological Protection (ICRP) and documents 40 years of history and the progress of those involved with cutting-edge work with Monte Carlo Codes and radiation protection dosimetry. This volume was in part spurred on by the ICRP’s key decision to adopt voxelized computational phantoms as standards for radiation protection purposes. It is an invaluable reference for those working in that area as well as those employing or developing anatomical models for a a number of clinical applications. Assembling the work of nearly all major phantom developers around the world, this volume examines: The history of the research and development in computational phantoms Detailed accounts for each of the well-known phantoms, including the MIRD-5, GSF Voxel Family Phantoms, NCAT, UF Hybrid Pediatric Phantoms, VIP-Man, and the latest ICRP Reference Phantoms Physical phantoms for experimental radiation dosimetry The smallest voxel size (0.2 mm), phantoms developed from the Chinese Visible Human Project Applications for radiation protection dosimetry involving environmental, nuclear power plant, and internal contamination exposures Medical applications, including nuclear medicine therapy, CT examinations, x-ray radiological image optimization, nuclear medicine imaging, external photon and proton treatments, and management of respiration in modern image-guided radiation treatment Patient-specific phantoms used for radiation treatment planning involving two Monte Carlo code systems: GEANT4 and EGS Future needs for research and development Related data sets are available for download on the authors’ website. The breadth and depth of this work enables readers to obtain a unique sense of the complete scientific process in computational phantom development, from the conception of an idea, to the identification of original anatomical data, to solutions of various computing problems, and finally, to the ownership and sharing of results in this groundbreaking field that holds so much promise.

Radiation Dosimetry Instrumentation and Methods (2001)

Author : Gad Shani
Publisher : CRC Press
Page : 500 pages
File Size : 53,7 Mb
Release : 2017-11-22
Category : Medical
ISBN : 9781351358620

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Radiation Dosimetry Instrumentation and Methods (2001) by Gad Shani Pdf

Radiation dosimetry has made great progress in the last decade, mainly because radiation therapy is much more widely used. Since the first edition, many new developments have been made in the basic methods for dosimetry, i.e. ionization chambers, TLD, chemical dosimeters, and photographic films. Radiation Dosimetry: Instrumentation and Methods, Second Edition brings to the reader these latest developments. Written at a high level for medical physicists, engineers, and advanced dosimetrists, it concentrates only on evolvement during the last decade, relying on the first edition to provide the basics.

Radiation Dosimetry Phosphors

Author : Sanjay J. Dhoble,Vibha Chopra,Vinit Nayar,George Kitis,Dirk Poelman,Hendrik C. Swart
Publisher : Woodhead Publishing
Page : 546 pages
File Size : 45,9 Mb
Release : 2022-05-26
Category : Technology & Engineering
ISBN : 9780323854726

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Radiation Dosimetry Phosphors by Sanjay J. Dhoble,Vibha Chopra,Vinit Nayar,George Kitis,Dirk Poelman,Hendrik C. Swart Pdf

Radiation Dosimetry Phosphors provides an overview of the synthesis, properties and applications of materials used for radiation dosimetry and reviews the most appropriate phosphor materials for each radiation dosimetry technique. The book describes the available phosphors used commercially for their applications in the medical field for dose measurements. Although radiation dosimetry phosphors are commercially available, continuous efforts have been made by the worldwide research community to develop new materials or improve already existing materials used in different areas with low or high levels of radiation. Moreover, researchers are still working on developing dosimetric phosphors for OSL, ML, LL and RPL dosimetry. This book provides an overall view of the phosphors available, low cost synthesis methods, mechanisms involved, emerging trends and new challenges for the development of emerging materials for radiation dosimetry. It is suitable for those working in academia and R&D laboratories in the discipline of materials science and engineering, along with practitioners working in radiation and dosimetry. Provides the fundamental concepts, historical context and review of current phosphors available for radiation dosimetry Reviews low-cost material methods to synthesize and characterize rare earth doped inorganic phosphors for different kinds of radiation dosimetry techniques Discusses key barriers and potential solutions for enabling commercial realization phosphors for radiation dosimetry applications

Techniques of Radiation Dosimetry

Author : K. Mahesh,D. R. Vij
Publisher : Unknown
Page : 532 pages
File Size : 46,5 Mb
Release : 1985
Category : Science
ISBN : MINN:31951000695193R

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Techniques of Radiation Dosimetry by K. Mahesh,D. R. Vij Pdf

Described in this book are features of various techniques that are in use for the quantitative measurement of radiation doses. The authors who are working specialists in different parts of the world have attempted to introduce these techniques not only in a comprehensive manner but, also, review the current state of art as well and explain applications.