Chauvel P
Radiotherapy Department, Centre Antoine-Lacassagne, Nice, France.
Radiat Environ Biophys. 1995 Mar;34(1):49-53. doi: 10.1007/BF01210546.
The use of heavy charged particles in radiotherapy potentially represents an advance towards better local tumour control and a decrease in morbidity related to radiation injury of healthy tissues surrounding the target volume. This assertion only holds, however, if treatment planning systems give a real representation of the three-dimensional dose distribution, including physical and biological aspects, especially for heavier ions. The influence of linear energy transfer on the biological effects, its variations related to depth, particle, target tissue, position in the Bragg peak, etc. make the possible models for treatment planning extremely complex. A brief review of the problems to be addressed and some solutions is presented from the radiation oncologist's point of view.
在放射治疗中使用重带电粒子可能意味着朝着更好地局部控制肿瘤以及降低与靶区周围健康组织辐射损伤相关的发病率迈进了一步。然而,只有当治疗计划系统能够真实呈现三维剂量分布,包括物理和生物学方面,尤其是对于较重离子时,这一论断才成立。线性能量传递对生物学效应的影响、其与深度、粒子、靶组织、布拉格峰位置等相关的变化,使得治疗计划的可能模型极其复杂。本文从放射肿瘤学家的角度简要回顾了需要解决的问题及一些解决方案。