Istituto Nazionale di Fisica Nucleare, Section of Torino, Via Giuria 1, 10125 Torino, Italy.
Istituto Nazionale di Fisica Nucleare, Section of Torino, Via Giuria 1, 10125 Torino, Italy; University of Torino, Via Giuria 1, 10125 Torino, Italy.
Phys Med. 2017 Nov;43:79-99. doi: 10.1016/j.ejmp.2017.10.013. Epub 2017 Nov 2.
In the last few years, the use of ions in radiation therapy is gaining interest and it is being considered medically necessary for a growing subset of tumours. Concurrently, the technologies involved in a particle therapy treatment are rapidly evolving, as well as the accuracy in the dose delivery in spite of the increased complexity. Since nowadays, the pencil beam scanning technique is showing very interesting features in terms of dose conformation and overall treatment outcome, the present review is intended to summarize the main procedures, detectors and tools adopted for the clinical dose verification. A list of dose measurements is provided, with the aim of being a valuable guidance for starting and future particle therapy facilities. Absorbed dose to water, relative dose, fluence and surrogates of the delivered dose are the main quantities measured by means of different detectors, specifically developed for point-like, 1D or 2D measurements. The dosimetric procedures are here categorized according to their purpose, distinguishing between system commissioning and clinical quality assurance. A separate discussion is dedicated to patient specific, in vivo and 4D dose verification, which aim at assessing the actual delivered dose. Together with the description of the currently used methods, challenges and perspectives toward an increasingly accurate and fast dose verification strategy are discussed.
在过去的几年中,离子在放射治疗中的应用越来越受到关注,并且对于越来越多的肿瘤,它被认为是医学上必需的。同时,尽管复杂性增加,但涉及粒子治疗的技术正在迅速发展,并且剂量传递的准确性也在提高。由于如今,铅笔束扫描技术在剂量构形和整体治疗效果方面显示出非常有趣的特性,因此本综述旨在总结用于临床剂量验证的主要程序、探测器和工具。提供了剂量测量的列表,旨在为正在启动和未来的粒子治疗设施提供有价值的指导。用水吸收剂量、相对剂量、通量和传递剂量的替代物是通过专门为点状、1D 或 2D 测量而开发的不同探测器测量的主要量。根据其目的,剂量学程序可分为系统调试和临床质量保证。专门讨论了针对特定于患者的、体内和 4D 剂量验证,旨在评估实际传递的剂量。除了描述当前使用的方法外,还讨论了朝着越来越准确和快速的剂量验证策略的挑战和前景。