Practical Radiotherapy

Practical Radiotherapy
Author: Pam Cherry
Publisher: John Wiley & Sons
Total Pages: 305
Release: 2009-09-08
Genre: Medical
ISBN: 1444316184

Practical Radiotherapy introduces the reader to the physicsand equipment that is central to radiotherapy practice. This SecondEdition has been extensively revised and is fully up to date withkey developments in equipment and practice, namely: stereotacicradiosurgery, CT SIM and SIM CT, portal imaging, MLC and HDRbrachytherapy. Practical Radiotherapy is written by anexperienced team of practitioners and teachers who present adifficult and dry subject in a reader-friendly manner, covering allof the required core information.

Stereotactic Body Radiation Therapy

Stereotactic Body Radiation Therapy
Author: Simon S. Lo
Publisher: Springer Science & Business Media
Total Pages: 433
Release: 2012-08-28
Genre: Medical
ISBN: 364225604X

Stereotactic body radiation therapy (SBRT) has emerged as an important innovative treatment for various primary and metastatic cancers. This book provides a comprehensive and up-to-date account of the physical/technological, biological, and clinical aspects of SBRT. It will serve as a detailed resource for this rapidly developing treatment modality. The organ sites covered include lung, liver, spine, pancreas, prostate, adrenal, head and neck, and female reproductive tract. Retrospective studies and prospective clinical trials on SBRT for various organ sites from around the world are examined, and toxicities and normal tissue constraints are discussed. This book features unique insights from world-renowned experts in SBRT from North America, Asia, and Europe. It will be necessary reading for radiation oncologists, radiation oncology residents and fellows, medical physicists, medical physics residents, medical oncologists, surgical oncologists, and cancer scientists.

Radiation Oncology Physics

Radiation Oncology Physics
Author: International Atomic Energy Agency
Publisher: IAEA
Total Pages: 704
Release: 2005
Genre: Business & Economics
ISBN:

This publication is aimed at students and teachers involved in teaching programmes in field of medical radiation physics, and it covers the basic medical physics knowledge required in the form of a syllabus for modern radiation oncology. The information will be useful to those preparing for professional certification exams in radiation oncology, medical physics, dosimetry or radiotherapy technology.

Absorbed Dose Determination in External Beam Radiotherapy

Absorbed Dose Determination in External Beam Radiotherapy
Author: International Atomic Energy Agency
Publisher:
Total Pages: 260
Release: 2000
Genre: Medical
ISBN:

This Code of Practice, which has also been endorsed by WHO, PAHO and ESTRO, fulfils the need for a systematic and internationally unified approach to the calibration of ionization chambers in terms of absorbed dose to water and to the use of these detectors in determining the absorbed dose to water for the radiation beams used in radiotherapy. It provides a methodology for the determination of absorbed dose to water in the low, medium and high energy photon beams, electron beams, proton beams and heavy ion beams used for external radiation therapy.

Technical Basis of Radiation Therapy

Technical Basis of Radiation Therapy
Author: Seymour H. Levitt
Publisher: Springer Science & Business Media
Total Pages: 1145
Release: 2012-02-10
Genre: Medical
ISBN: 3642115721

This well-received book, now in its fifth edition, is unique in providing a detailed examination of the technological basis of radiation therapy. Another unique feature is that the chapters are jointly written by North American and European authors. This considerably broadens the book’s contents and increases its applicability in daily practice throughout the world. The book is divided into two sections. The first section covers basic concepts in treatment planning and explains the various approaches to radiation therapy, such as intensity-modulated radiation therapy, tomotherapy, stereotactic radiotherapy, and high and low dose rate brachytherapy. The second discusses in depth the practical clinical applications of the different radiation therapy techniques in a wide range of cancer sites. All chapters have been written by leaders in the field. This book will serve to instruct and acquaint teachers, students, and practitioners with the basic technological factors and approaches in radiation therapy.

The Modern Technology of Radiation Oncology

The Modern Technology of Radiation Oncology
Author: Jake Van Dyk
Publisher: Medical Physics Publishing Corporation
Total Pages: 1106
Release: 1999
Genre: Medical
ISBN:

Details technology associated with radiation oncology, emphasizing design of all equipment allied with radiation treatment. Describes procedures required to implement equipment in clinical service, covering needs assessment, purchase, acceptance, and commissioning, and explains quality assurance issues. Also addresses less common and evolving technologies. For medical physicists and radiation oncologists, as well as radiation therapists, dosimetrists, and engineering technologists. Includes bandw medical images and photos of equipment. Paper edition (unseen), $145.95. Annotation copyrighted by Book News, Inc., Portland, OR

Khan’s The Physics of Radiation Therapy

Khan’s The Physics of Radiation Therapy
Author: John P. Gibbons
Publisher: Lippincott Williams & Wilkins
Total Pages: 1018
Release: 2019-08-14
Genre: Medical
ISBN: 1496397533

A vital reference for the entire radiation oncology team, Khan’s The Physics of Radiation Therapy thoroughly covers the physics and practical clinical applications of advanced radiation therapy technologies. Dr. John Gibbons carries on the tradition established by Dr. Khan in previous editions, ensuring that the 6th Edition provides state-of-the-art information for radiation oncologists, medical physicists, dosimetrists, radiation therapists, and residents alike. This updated classic remains the most practical radiation therapy physics text available, offering an ideal balance between theory and clinical application.

Khan's Treatment Planning in Radiation Oncology

Khan's Treatment Planning in Radiation Oncology
Author: Faiz M. Khan
Publisher: Lippincott Williams & Wilkins
Total Pages: 1342
Release: 2021-09-17
Genre: Medical
ISBN: 1975162048

Offering comprehensive coverage of the clinical, physical, and technical aspects of radiation treatment planning, Khan’s Treatment Planning in Radiation Oncology, Fifth Edition, provides a team approach to this complex field. Drs. Paul W. Sperduto and John P. Gibbons are joined by expert contributing authors who focus on the application of physical and clinical concepts to solve treatment planning problems—helping you provide effective, state-of-the-art care for cancer patients. This unique, well-regarded text has been updated throughout to reflect the most current practices in today’s radiation oncology treatment.

Proton Therapy Physics

Proton Therapy Physics
Author: Harald Paganetti
Publisher: CRC Press
Total Pages: 691
Release: 2016-04-19
Genre: Medical
ISBN: 1439836450

Proton Therapy Physics goes beyond current books on proton therapy to provide an in-depth overview of the physics aspects of this radiation therapy modality, eliminating the need to dig through information scattered in the medical physics literature. After tracing the history of proton therapy, the book summarizes the atomic and nuclear physics background necessary for understanding proton interactions with tissue. It describes the physics of proton accelerators, the parameters of clinical proton beams, and the mechanisms to generate a conformal dose distribution in a patient. The text then covers detector systems and measuring techniques for reference dosimetry, outlines basic quality assurance and commissioning guidelines, and gives examples of Monte Carlo simulations in proton therapy. The book moves on to discussions of treatment planning for single- and multiple-field uniform doses, dose calculation concepts and algorithms, and precision and uncertainties for nonmoving and moving targets. It also examines computerized treatment plan optimization, methods for in vivo dose or beam range verification, the safety of patients and operating personnel, and the biological implications of using protons from a physics perspective. The final chapter illustrates the use of risk models for common tissue complications in treatment optimization. Along with exploring quality assurance issues and biological considerations, this practical guide collects the latest clinical studies on the use of protons in treatment planning and radiation monitoring. Suitable for both newcomers in medical physics and more seasoned specialists in radiation oncology, the book helps readers understand the uncertainties and limitations of precisely shaped dose distribution.