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生物剂量优化中的正常组织剂量效应模型

Normal tissue dose-effect models in biological dose optimisation.

作者信息

Alber Markus

机构信息

Sektion für Biomedizinische Physik, Uniklinik für Radioonkologie Tübingen, Tübingen.

出版信息

Z Med Phys. 2008;18(2):102-10. doi: 10.1016/j.zemedi.2007.08.002.

Abstract

Sophisticated radiotherapy techniques like intensity modulated radiotherapy with photons and protons rely on numerical dose optimisation. The evaluation of normal tissue dose distributions that deviate significantly from the common clinical routine and also the mathematical expression of desirable properties of a dose distribution is difficult. In essence, a dose evaluation model for normal tissues has to express the tissue specific volume effect. A formalism of local dose effect measures is presented, which can be applied to serial and parallel responding tissues as well as target volumes and physical dose penalties. These models allow a transparent description of the volume effect and an efficient control over the optimum dose distribution. They can be linked to normal tissue complication probability models and the equivalent uniform dose concept. In clinical applications, they provide a means to standardize normal tissue doses in the face of inevitable anatomical differences between patients and a vastly increased freedom to shape the dose, without being overly limiting like sets of dose-volume constraints.

摘要

复杂的放射治疗技术,如光子和质子调强放射治疗,依赖于数值剂量优化。评估与常规临床流程显著不同的正常组织剂量分布,以及剂量分布理想特性的数学表达都很困难。本质上,正常组织剂量评估模型必须体现组织特定的体积效应。本文提出了一种局部剂量效应测量的形式体系,可应用于串行和并行反应组织以及靶区体积和物理剂量惩罚。这些模型能清晰描述体积效应,并有效控制最佳剂量分布。它们可与正常组织并发症概率模型及等效均匀剂量概念相联系。在临床应用中,面对患者间不可避免的解剖差异以及塑造剂量的自由度大幅增加的情况,它们提供了一种标准化正常组织剂量的方法,而不会像剂量体积约束集那样过度受限。

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