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首页> 外文期刊>Physics in medicine and biology. >Separating components of variation in measurement series using maximum likelihood estimation. Application to patient position data in radiotherapy
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Separating components of variation in measurement series using maximum likelihood estimation. Application to patient position data in radiotherapy

机译:使用最大似然估计来分离测量系列中的变化分量。在放射治疗中应用于患者位置数据

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摘要

Maximum likelihood estimation (MLE) is presented as a statistical tool to evaluate the contribution of measurement error to any measurement series where the same quantity is measured using different independent methods. The technique was tested against artificial data sets; generated for values of underlying variation in the quantity and measurement error between 0.5 mm and 3 mm. In each case the simulation parameters were determined within 0.1 mm. The technique was applied to analyzing external random positioning errors from positional audit data for 112 pelvic radiotherapy patients. Patient position offsets were measured using portal imaging analysis and external body surface measures. Using MLE to analyze all methods in parallel it was possible to ascertain the measurement error for each method and the underlying positional variation. In the (AP / Lat / SI) directions the standard deviations of the measured patient position errors from portal imaging were (3.3 mm / 2.3 mm / 1.9 mm), arising from underlying variations of (2.7 mm / 1.5 mm / 1.4 mm) and measurement uncertainties of (1.8 mm / 1.8 mm / 1.3 mm), respectively. The measurement errors agree well with published studies. MLE used in this manner could be applied to any study in which the same quantity is measured using independent methods.
机译:最大似然估计(MLE)是一种统计工具,用于评估测量误差对使用不同独立方法测量相同量的任何测量系列的贡献。该技术已针对人工数据集进行了测试;针对数量的基本变化值和0.5 mm至3 mm之间的测量误差生成。在每种情况下,仿真参数均确定在0.1 mm以内。该技术已应用于根据112例盆腔放疗患者的位置审核数据分析外部随机定位错误。使用门禁成像分析和体外表面测量来测量患者位置偏移。使用MLE并行分析所有方法,可以确定每种方法的测量误差以及潜在的位置变化。在(AP / Lat / SI)方向上,测量的患者位置误差与门静脉成像的标准偏差为(3.3 mm / 2.3 mm / 1.9 mm),这是由于(2.7 mm / 1.5 mm / 1.4 mm)的基础偏差和测量不确定度分别为(1.8 mm / 1.8 mm / 1.3 mm)。测量误差与已发表的研究非常吻合。以这种方式使用的MLE可以应用于任何使用独立方法测量相同量的研究。

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