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一套系统编制的定量指标,用于描述放射治疗剂量分布的空间特征,并有助于治疗计划。

A systematically compiled set of quantitative metrics to describe spatial characteristics of radiotherapy dose distributions and aid in treatment planning.

机构信息

Department of Oncology, Aarhus University Hospital, Aarhus, Denmark; Department of Clinical Medicine, Aarhus University, Aarhus, Denmark; Danish Centre for Particle Therapy, Aarhus University Hospital, Aarhus, Denmark.

Department of Oncology, Aarhus University Hospital, Aarhus, Denmark; Department of Clinical Medicine, Aarhus University, Aarhus, Denmark; Danish Centre for Particle Therapy, Aarhus University Hospital, Aarhus, Denmark.

出版信息

Phys Med. 2021 Oct;90:164-175. doi: 10.1016/j.ejmp.2021.09.014. Epub 2021 Oct 18.

Abstract

PURPOSE

Many quantitative metrics have been proposed in literature for characterization of spatial dose properties. The aim of this study is to work towards much-needed consensus in the radiotherapy community on which of these metrics to use. We do this by comparing characteristics of the metrics and providing a systematically selected set of metrics to comprehensively quantify properties of the spatial dose distribution.

METHODS

We searched the literature for metrics to quantitatively evaluate dose conformity, homogeneity, gradient (overall and directional), and distribution and location of over- and under-dosed sub-volumes. For each spatial dose property, we compared the responses of its corresponding metrics to simulated dose variations in a virtual water phantom. Selection criteria were a metric's ability to describe simulated scenarios robustly and to be visualized in an intuitive way.

RESULTS

We saw substantial differences in the responses of metrics to the simulated dose variations. Some conformity and homogeneity metrics were unable to quantify certain types of changes (e.g. target under-coverage). Others showed a large dependency on the shape and volume of targets and isodoses. Metric values differed between calculations in a static plan and in simulated full treatment courses including setup errors, especially for metrics quantifying distribution and location of hot and cold spots. We provide an Eclipse plugin script to calculate and visualize selected metrics.

CONCLUSION

The selected set of metrics provides complementary and comprehensive quantitative information about the spatial dose distribution. This work serves as a step towards broader consensus on the use of spatial dose metrics.

摘要

目的

文献中已经提出了许多定量指标来描述空间剂量特性。本研究旨在为放疗界就使用哪些指标达成急需的共识。我们通过比较这些指标的特性并提供一套系统选择的指标来全面量化空间剂量分布的特性来实现这一目标。

方法

我们在文献中搜索了用于定量评估剂量适形性、均匀性、梯度(总体和方向)以及超量和欠量子体积分布和位置的指标。对于每个空间剂量特性,我们比较了其相应指标对虚拟水模体中模拟剂量变化的响应。选择标准是指标能够稳健地描述模拟场景并以直观的方式可视化。

结果

我们看到指标对模拟剂量变化的响应存在很大差异。某些适形性和均匀性指标无法量化某些类型的变化(例如目标覆盖不足)。其他指标显示出对目标和等剂量线的形状和体积的很大依赖性。在静态计划和包括设置误差的模拟全治疗过程中的计算中,特别是对于量化热点和冷点分布和位置的指标,指标值存在差异。我们提供了一个 Eclipse 插件脚本,用于计算和可视化选定的指标。

结论

所选指标集提供了关于空间剂量分布的补充和全面的定量信息。这项工作是朝着更广泛地就空间剂量指标的使用达成共识迈出的一步。

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