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自动肿瘤功能体积勾画准确性对放射治疗计划的影响。

Impact of the accuracy of automatic tumour functional volume delineation on radiotherapy treatment planning.

机构信息

INSERM, UMR 1101 LaTIM, CHRU Morvan, Brest, France.

出版信息

Phys Med Biol. 2012 Sep 7;57(17):5381-97. doi: 10.1088/0031-9155/57/17/5381. Epub 2012 Aug 3.

Abstract

Over the past few years several automatic and semi-automatic PET segmentation methods for target volume definition in radiotherapy have been proposed. The objective of this study is to compare different methods in terms of dosimetry. For such a comparison, a gold standard is needed. For this purpose, realistic GATE-simulated PET images were used. Three lung cases and three H&N cases were designed with various shapes, contrasts and heterogeneities. Four different segmentation approaches were compared: fixed and adaptive thresholds, a fuzzy C-mean and the fuzzy locally adaptive Bayesian method. For each of these target volumes, an IMRT treatment plan was defined. The different algorithms and resulting plans were compared in terms of segmentation errors and ground-truth volume coverage using different metrics (V(95), D(95), homogeneity index and conformity index). The major differences between the threshold-based methods and automatic methods occurred in the most heterogeneous cases. Within the two groups, the major differences occurred for low contrast cases. For homogeneous cases, equivalent ground-truth volume coverage was observed for all methods but for more heterogeneous cases, significantly lower coverage was observed for threshold-based methods. Our study demonstrates that significant dosimetry errors can be avoided by using more advanced image-segmentation methods.

摘要

在过去的几年中,已经提出了几种用于放射治疗中靶区定义的自动和半自动 PET 分割方法。本研究的目的是比较不同方法在剂量学方面的性能。为此,需要一个金标准。为此,使用了逼真的 GATE 模拟 PET 图像。设计了三个肺病例和三个头颈部病例,具有各种形状、对比度和异质性。比较了四种不同的分割方法:固定和自适应阈值、模糊 C-均值和模糊局部自适应贝叶斯方法。对于每个目标体积,定义了一个调强放疗计划。使用不同的指标(V(95)、D(95)、均匀性指数和适形性指数)比较了不同算法和生成计划的分割误差和真实体积覆盖率。基于阈值的方法和自动方法之间的主要差异出现在最不均匀的情况下。在这两组中,主要差异出现在对比度低的情况下。对于均匀的情况,所有方法的真实体积覆盖率都相同,但对于更不均匀的情况,基于阈值的方法的覆盖率明显较低。我们的研究表明,通过使用更先进的图像分割方法,可以避免显著的剂量学误差。

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