Radiological Institute, MVZ, Medical Care Center, Markus Hospital, Frankfurt/Main, Germany.
Cancer J. 2009 Jul-Aug;15(4):306-11. doi: 10.1097/PPO.0b013e3181b01922.
Radiation therapy with charged particles, such as protons and heavier ions, provides physical selectivity and therefore allows for favorable dose distributions in comparison with conventional photon radiotherapy. Carbon ions furthermore exhibit biologic advantages related to their high linear energy transfer properties in a number of tumors known to be relatively insensitive to low-linear energy transfer radiation therapy. Over the last 2 decades, major developments in the fields of accelerator technology, diagnostic techniques, and beam delivery methods have been made. These developments formed the basis for the application of particle beams in clinical surroundings. Many clinical centers are already considering the introduction of radiation therapy with charged particles. This article reviews the clinical experience with particle therapy in adults available so far.
带电荷粒子的放射治疗,如质子和重离子,提供了物理选择性,因此与传统光子放射治疗相比,能够实现更好的剂量分布。碳离子还具有生物学优势,因为它们在许多对低线性能量转移放射治疗相对不敏感的肿瘤中具有高线性能量转移特性。在过去的 20 年中,在加速器技术、诊断技术和束流输送方法等领域取得了重大进展。这些发展为粒子束在临床环境中的应用奠定了基础。许多临床中心已经在考虑引入带电荷粒子的放射治疗。本文综述了迄今为止成人粒子治疗的临床经验。