Institute of Modern Physics, Chinese Academy of Sciences, 730000, Lanzhou, China.
Key Laboratory of Heavy Ion Radiation Biology and Medicine of Chinese Academy of Science, 730000, Lanzhou, China.
Phys Eng Sci Med. 2024 Jun;47(2):703-715. doi: 10.1007/s13246-024-01399-9. Epub 2024 Feb 28.
Dose verification of treatment plans is an essential step in radiotherapy workflows. In this work, we propose a novel method of treatment planning based on nanodosimetric quantity-weighted dose (NQWD), which could realize biological representation using pure physical quantities for biological-oriented carbon ion-beam treatment plans and their direct verification. The relationship between nanodosimetric quantities and relative biological effectiveness (RBE) was studied with the linear least-squares method for carbon-ion radiation fields. Next, under the framework of the matRad treatment planning platform, NQWD was optimized using the existing RBE-weighted dose (RWD) optimization algorithm. The schemes of NQWD-based treatment planning were compared with the RWD treatment plans in term of the microdosimetric kinetic model (MKM). The results showed that the nanodosimetric quantity F had a good correlation with the radiobiological effect reflected by the relationship between RBE and F. Moreover, the NQWD-based treatment plans reproduced the RWD plans generally. Therefore, F could be adopted as a radiation quality descriptor for carbon-ion treatment planning. The novel method proposed herein not only might be helpful for rapid physical verification of biological-oriented ion-beam treatment plans with the development of experimental nanodosimetry, but also makes the direct comparison of ion-beam treatment plans in different institutions possible. Thus, our proposed method might be potentially developed to be a new strategy for carbon-ion treatment planning and improve patient safety for carbon-ion radiotherapy.
剂量验证是放射治疗工作流程中的一个重要步骤。在这项工作中,我们提出了一种基于纳米剂量学量值加权剂量(NQWD)的新治疗计划方法,该方法可以使用纯物理量实现生物代表性,用于生物导向的碳离子束治疗计划及其直接验证。我们使用线性最小二乘法研究了纳米剂量学量与相对生物效应(RBE)之间的关系,以用于碳离子辐射场。接下来,在 matRad 治疗计划平台的框架内,使用现有的 RBE 加权剂量(RWD)优化算法对 NQWD 进行了优化。根据微剂量动力学模型(MKM),将基于 NQWD 的治疗计划方案与 RWD 治疗计划方案进行了比较。结果表明,纳米剂量学量 F 与 RBE 和 F 之间的关系所反映的放射生物学效应具有良好的相关性。此外,基于 NQWD 的治疗计划方案通常可以再现 RWD 治疗计划方案。因此,F 可以作为碳离子治疗计划的辐射质量描述符。本文提出的新方法不仅可能有助于在实验纳米剂量学发展的情况下,对生物导向的离子束治疗计划进行快速物理验证,而且还可以实现不同机构的离子束治疗计划的直接比较。因此,我们提出的方法可能有潜力发展成为碳离子治疗计划的新策略,并提高碳离子放射治疗的患者安全性。