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Applying the equivalent uniform dose formulation based on the linear‐quadratic model to inhomogeneous tumor dose distributions: Caution for analyzing and reporting

机译:将基于线性二次模型的等效均匀剂量公式应用于不均匀的肿瘤剂量分布:谨慎进行分析和报告

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摘要

We apply the concept of equivalent uniform dose (EUD) to our data set of model distributions and intensity modulated radiotherapy (IMRT) treatment plans as a method for analyzing large dose inhomogeneities within the tumor volume. For large dose nonuniformities, we find that the linear‐quadratic based EUD model is sensitive to the linear‐quadratic model parameters, α and β, making it necessary to consider EUD as a function of these parameters. This complicates the analysis for inhomogeneous dose distributions. EUD provides a biological estimate that requires interpretation and cannot be used as a single parameter for judging an inhomogeneous plan. We present heuristic examples to demonstrate the dose volume effect associated with EUD and the correlation to statistical parameters used for describing dose distributions. From these examples and patient plans, we discuss the risk of incorrectly applying EUD to IMRT patient plans.PACS number(s): 87.53.Tf
机译:我们将等效均等剂量(EUD)的概念应用于我们的模型分布和调强放疗(IMRT)治疗计划的数据集,作为分析肿瘤体积内大剂量不均匀性的一种方法。对于大剂量不均匀性,我们发现基于线性二次模型的EUD模型对线性二次模型参数α和β敏感,因此有必要将EUD视为这些参数的函数。这使不均匀剂量分布的分析变得复杂。 EUD提供了需要进行解释的生物学估计,不能用作判断不均匀计划的单个参数。我们提供启发式示例,以证明与EUD相关的剂量体积效应以及与用于描述剂量分布的统计参数的相关性。从这些示例和患者计划中,我们讨论了将EUD错误地应用于IMRT患者计划的风险.PACS编号:87.53.Tf

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