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单通道和多通道算法在放射色胶片剂量测定中剂量估计的蒙特卡罗不确定性分析。

Monte Carlo uncertainty analysis of dose estimates in radiochromic film dosimetry with single-channel and multichannel algorithms.

机构信息

Hospital Universitari Sant Joan de Reus, Servicio de Física Médica, Reus (Tarragona), Spain; PhD Programme in Physics and Space Science of the University of Granada, Granada, Spain.

PhD Programme in Physics and Space Science of the University of Granada, Granada, Spain.

出版信息

Phys Med. 2018 Mar;47:23-33. doi: 10.1016/j.ejmp.2018.02.006. Epub 2018 Feb 22.

Abstract

PURPOSE

To provide a multi-stage model to calculate uncertainty in radiochromic film dosimetry with Monte-Carlo techniques. This new approach is applied to single-channel and multichannel algorithms.

MATERIAL AND METHODS

Two lots of Gafchromic EBT3 are exposed in two different Varian linacs. They are read with an EPSON V800 flatbed scanner. The Monte-Carlo techniques in uncertainty analysis provide a numerical representation of the probability density functions of the output magnitudes. From this numerical representation, traditional parameters of uncertainty analysis as the standard deviations and bias are calculated. Moreover, these numerical representations are used to investigate the shape of the probability density functions of the output magnitudes. Also, another calibration film is read in four EPSON scanners (two V800 and two 10000XL) and the uncertainty analysis is carried out with the four images.

RESULTS

The dose estimates of single-channel and multichannel algorithms show a Gaussian behavior and low bias. The multichannel algorithms lead to less uncertainty in the final dose estimates when the EPSON V800 is employed as reading device. In the case of the EPSON 10000XL, the single-channel algorithms provide less uncertainty in the dose estimates for doses higher than four Gy.

CONCLUSION

A multi-stage model has been presented. With the aid of this model and the use of the Monte-Carlo techniques, the uncertainty of dose estimates for single-channel and multichannel algorithms are estimated. The application of the model together with Monte-Carlo techniques leads to a complete characterization of the uncertainties in radiochromic film dosimetry.

摘要

目的

提供一种使用蒙特卡罗技术计算放射变色胶片剂量学不确定性的多阶段模型。这种新方法应用于单通道和多通道算法。

材料与方法

将两个批次的 Gafchromic EBT3 在两台不同的瓦里安直线加速器中曝光。使用爱普生 V800 平板扫描仪进行读取。不确定性分析中的蒙特卡罗技术提供了输出量概率密度函数的数值表示。从这个数值表示中,可以计算出不确定性分析的传统参数,如标准差和偏差。此外,这些数值表示还用于研究输出量概率密度函数的形状。另外,还在四台爱普生扫描仪(两台 V800 和两台 10000XL)中读取另一个校准胶片,并使用这四个图像进行不确定性分析。

结果

单通道和多通道算法的剂量估计呈现出高斯分布行为和低偏差。当使用爱普生 V800 作为读取设备时,多通道算法会导致最终剂量估计的不确定性降低。在使用爱普生 10000XL 的情况下,对于高于 4Gy 的剂量,单通道算法提供的剂量估计不确定性较小。

结论

提出了一种多阶段模型。借助该模型和蒙特卡罗技术,可以估算单通道和多通道算法的剂量估计不确定性。模型与蒙特卡罗技术的结合应用导致了放射变色胶片剂量学不确定性的全面特征描述。

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