Department of Medical Physics, Applications of Detectors and Accelerators to Medicine, Meyrin, 1217, Switzerland.
Shanghai Proton and Heavy Ion Center, Shanghai, 201315, China.
Med Phys. 2021 Jan;48(1):e1-e30. doi: 10.1002/mp.14546. Epub 2020 Nov 17.
Proton therapy is an expanding radiotherapy modality in the United States and worldwide. With the number of proton therapy centers treating patients increasing, so does the need for consistent, high-quality clinical commissioning practices. Clinical commissioning encompasses the entire proton therapy system's multiple components, including the treatment delivery system, the patient positioning system, and the image-guided radiotherapy components. Also included in the commissioning process are the x-ray computed tomography scanner calibration for proton stopping power, the radiotherapy treatment planning system, and corresponding portions of the treatment management system. This commissioning report focuses exclusively on intensity-modulated scanning systems, presenting details of how to perform the commissioning of the proton therapy and ancillary systems, including the required proton beam measurements, treatment planning system dose modeling, and the equipment needed.
质子治疗是美国和全球范围内不断发展的放射治疗方式。随着越来越多的质子治疗中心开始治疗患者,对一致性和高质量的临床调试实践的需求也在不断增加。临床调试涵盖了质子治疗系统的多个组件,包括治疗输送系统、患者定位系统和图像引导放射治疗组件。调试过程还包括用于质子停止能力的 X 射线计算机断层扫描(CT)扫描仪校准、放射治疗计划系统以及治疗管理系统的相应部分。本调试报告专门针对强度调制扫描系统,详细介绍了如何对质子治疗和辅助系统进行调试,包括所需的质子束测量、治疗计划系统剂量建模以及所需的设备。