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Surface Guided Radiation Therapy (Paperback): Todd Pawlicki, Jeremy David Page Hoisak, Adam Brent Paxton, Benjamin James Waghorn Surface Guided Radiation Therapy (Paperback)
Todd Pawlicki, Jeremy David Page Hoisak, Adam Brent Paxton, Benjamin James Waghorn
R1,484 Discovery Miles 14 840 Ships in 9 - 15 working days

Surface Guided Radiation Therapy provides a comprehensive overview of optical surface image guidance systems for radiation therapy. It serves as an introductory teaching resource for students and trainees, and a valuable reference for medical physicists, physicians, radiation therapists, and administrators who wish to incorporate surface guided radiation therapy (SGRT) into their clinical practice. This is the first book dedicated to the principles and practice of SGRT, featuring: Chapters authored by an internationally represented list of physicists, radiation oncologists and therapists, edited by pioneers and experts in SGRT Covering the evolution of localization systems and their role in quality and safety, current SGRT systems, practical guides to commissioning and quality assurance, clinical applications by anatomic site, and emerging topics including skin mark-less setups. Several dedicated chapters on SGRT for intracranial radiosurgery and breast, covering technical aspects, risk assessment and outcomes. Jeremy Hoisak, PhD, DABR is an Assistant Professor in the Department of Radiation Medicine and Applied Sciences at the University of California, San Diego. Dr. Hoisak's clinical expertise includes radiosurgery and respiratory motion management. Adam Paxton, PhD, DABR is an Assistant Professor in the Department of Radiation Oncology at the University of Utah. Dr. Paxton's clinical expertise includes patient safety, motion management, radiosurgery, and proton therapy. Benjamin Waghorn, PhD, DABR is the Director of Clinical Physics at Vision RT. Dr. Waghorn's research interests include intensity modulated radiation therapy, motion management, and surface image guidance systems. Todd Pawlicki, PhD, DABR, FAAPM, FASTRO, is Professor and Vice-Chair for Medical Physics in the Department of Radiation Medicine and Applied Sciences at the University of California, San Diego. Dr. Pawlicki has published extensively on quality and safety in radiation therapy. He has served on the Board of Directors for the American Society for Radiology Oncology (ASTRO) and the American Association of Physicists in Medicine (AAPM).

Quality and Safety in Radiotherapy (Paperback): Todd Pawlicki, Peter Dunscombe, Arno J. Mundt, Pierre Scalliet Quality and Safety in Radiotherapy (Paperback)
Todd Pawlicki, Peter Dunscombe, Arno J. Mundt, Pierre Scalliet
R1,530 Discovery Miles 15 300 Ships in 12 - 17 working days

The first text to focus solely on quality and safety in radiotherapy, this work encompasses not only traditional, more technically oriented, quality assurance activities, but also general approaches of quality and safety. It includes contributions from experts both inside and outside the field to present a global view. The task of assuring quality is no longer viewed solely as a technical, equipment-dependent endeavor. Instead, it is now recognized as depending on both the processes and the people delivering the service. Divided into seven broad categories, the text covers: Quality Management and Improvement includes discussions about lean thinking, process control, and access to services. Patient Safety and Managing Error looks at reactive and prospective error management techniques. Methods to Assure and Improve Quality deals broadly with techniques to monitor, assure, and improve quality. People and Quality focuses on human factors, changing roles, staffing, and training. Quality Assurance in Radiotherapy addresses the general issues of quality assurance with descriptions of the key systems used to plan and treat patients and includes specific recommendations on the types and frequencies of certain tests. Quality Control: Equipment and Quality Control: Patient-Specific provides explicit details of quality control relating to equipment and patient-specific issues. Recently, a transformation of quality and safety in radiotherapy has begun to take place. Among the key drivers of this transformation have been new industrial and systems engineering approaches that have come to the forefront in recent years following revelations of system failures. This book provides an approach to quality that is long needed, one that deals with both human and technical aspects that must be the part of any overall quality improvement program.

Surface Guided Radiation Therapy (Hardcover): Todd Pawlicki, Jeremy David Page Hoisak, Adam Brent Paxton, Benjamin James Waghorn Surface Guided Radiation Therapy (Hardcover)
Todd Pawlicki, Jeremy David Page Hoisak, Adam Brent Paxton, Benjamin James Waghorn
R5,374 Discovery Miles 53 740 Ships in 12 - 17 working days

Surface Guided Radiation Therapy provides a comprehensive overview of optical surface image guidance systems for radiation therapy. It serves as an introductory teaching resource for students and trainees, and a valuable reference for medical physicists, physicians, radiation therapists, and administrators who wish to incorporate surface guided radiation therapy (SGRT) into their clinical practice. This is the first book dedicated to the principles and practice of SGRT, featuring: Chapters authored by an internationally represented list of physicists, radiation oncologists and therapists, edited by pioneers and experts in SGRT Covering the evolution of localization systems and their role in quality and safety, current SGRT systems, practical guides to commissioning and quality assurance, clinical applications by anatomic site, and emerging topics including skin mark-less setups. Several dedicated chapters on SGRT for intracranial radiosurgery and breast, covering technical aspects, risk assessment and outcomes. Jeremy Hoisak, PhD, DABR is an Assistant Professor in the Department of Radiation Medicine and Applied Sciences at the University of California, San Diego. Dr. Hoisak's clinical expertise includes radiosurgery and respiratory motion management. Adam Paxton, PhD, DABR is an Assistant Professor in the Department of Radiation Oncology at the University of Utah. Dr. Paxton's clinical expertise includes patient safety, motion management, radiosurgery, and proton therapy. Benjamin Waghorn, PhD, DABR is the Director of Clinical Physics at Vision RT. Dr. Waghorn's research interests include intensity modulated radiation therapy, motion management, and surface image guidance systems. Todd Pawlicki, PhD, DABR, FAAPM, FASTRO, is Professor and Vice-Chair for Medical Physics in the Department of Radiation Medicine and Applied Sciences at the University of California, San Diego. Dr. Pawlicki has published extensively on quality and safety in radiation therapy. He has served on the Board of Directors for the American Society for Radiology Oncology (ASTRO) and the American Association of Physicists in Medicine (AAPM).

Quality and Safety in Radiotherapy (Hardcover): Todd Pawlicki, Peter Dunscombe, Arno J. Mundt, Pierre Scalliet Quality and Safety in Radiotherapy (Hardcover)
Todd Pawlicki, Peter Dunscombe, Arno J. Mundt, Pierre Scalliet
R5,701 Discovery Miles 57 010 Ships in 12 - 17 working days

The first text to focus solely on quality and safety in radiotherapy, this work encompasses not only traditional, more technically oriented, quality assurance activities, but also general approaches of quality and safety. It includes contributions from experts both inside and outside the field to present a global view. The task of assuring quality is no longer viewed solely as a technical, equipment-dependent endeavor. Instead, it is now recognized as depending on both the processes and the people delivering the service. Divided into seven broad categories, the text covers:

  • Quality Management and Improvement includes discussions about lean thinking, process control, and access to services.
  • Patient Safety and Managing Error looks at reactive and prospective error management techniques.
  • Methods to Assure and Improve Quality deals broadly with techniques to monitor, assure, and improve quality.
  • People and Quality focuses on human factors, changing roles, staffing, and training.
  • Quality Assurance in Radiotherapy addresses the general issues of quality assurance with descriptions of the key systems used to plan and treat patients and includes specific recommendations on the types and frequencies of certain tests.
  • Quality Control: Equipment and Quality Control: Patient-Specific provides explicit details of quality control relating to equipment and patient-specific issues.

Recently, a transformation of quality and safety in radiotherapy has begun to take place. Among the key drivers of this transformation have been new industrial and systems engineering approaches that have come to the forefront in recent years following revelations of system failures. This book provides an approach to quality that is long needed, one that deals with both human and technical aspects that must be the part of any overall quality improvement program.

Quality and Safety in Radiotherapy - Learning the New Approaches in Task Group 100 and Beyond (Hardcover, New): Bruce... Quality and Safety in Radiotherapy - Learning the New Approaches in Task Group 100 and Beyond (Hardcover, New)
Bruce Thomadsen, Peter Dunscombe, Eric Ford, Saiful Huq, Todd Pawlicki, …
R3,145 Discovery Miles 31 450 Ships in 12 - 17 working days

This book was developed for the AAPM 2013 Summer School Proceedings in Colorado Springs, Colorado. Radiotherapy physics has had a very long history of performing quality assurance. Physicists working with the very earliest radiotherapy units developed before the beginning of the last century realized the need to verify the calibration and proper operation of their equipment. The International Commission on Radiation Units and Measurements and the National Council on Radiation Protection and Measurement initiated standardization of quality assurance protocols through a series of recommendations. This was followed by a large collection of professional guidance documents, particularly from the American Association of Physicists in Medicine (AAPM). Through these efforts, radiotherapy became one of the first medical disciplines to establish standardized quality assurance. In light of the increasing complexity of radiotherapy treatments and technology and the diversity of methods used by facilities for various clinical procedures, it is no longer practical to rely solely on generic, prescriptive lists of comprehensive quality assurance (QA) steps to ensure quality and safety for patients. This was the conclusion that guided the AAPM's Task Group 100 away from writing such guidelines for intensity-modulated radiotherapy and toward the examination of quality and safety techniques that have proven so effective first in industry and, more recently, in many medical disciplines. These techniques consider not only QA for equipment, but also for procedures as a whole in the context of the facility. These approaches and methodologies may be new and somewhat daunting to many practicing medical physicists. The goal of this book is to make these new techniques accessible to the broader medical physics community. The CD included in this book contains large tables, figures, and many of the text's images in color.

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