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关于井型电离室源强校准系数的稳定性

On the stability of well-type ionization chamber source strength calibration coefficients.

作者信息

Smith Blake R, DeWerd Larry A, Culberson Wesley S

机构信息

Department of Medical Physics, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, WI, 53705, USA.

出版信息

Med Phys. 2020 Sep;47(9):4491-4501. doi: 10.1002/mp.14247. Epub 2020 Jun 17.

Abstract

PURPOSE

To investigate the variability and stability of brachytherapy source strength calibration coefficients for air-communicating and pressurized well-type ionization chambers among high-dose rate (HDR), low-dose rate (LDR), and electronic brachytherapy (EBT) source qualities. These qualities of an ionization chamber are important features to assess given their role in maintaining traceability to a primary national standards laboratory and facilitating efficacious patient care in brachytherapy.

METHODS

The calibration records from the University of Wisconsin Accredited Dosimetry Calibration Laboratory (UWADCL) customer well-type ionization chamber database were retrospectively analyzed for calibrations performed between 1996 and 2019. A statistical analysis was performed and differentiated among calibration type to quantify the distribution of chamber calibration coefficients among several chamber models. Distributions were quantified based on their moments and by quantile analysis. For LDR calibrations, chamber response was further differentiated by seed type to study the variability in seed dependence within and across chamber models. In addition to these metrics, the calibration lineage at the UWADCL was used to assess the stability of these calibration coefficients among chamber model and source type based on the ratio of subsequent calibration coefficients.

RESULTS

The distribution of brachytherapy source strength calibration coefficients for a particular chamber model is not necessarily normally distributed and is sensitive to changes in the machining tolerances or design of the chamber model. Calibration source quality also influenced the distributions of calibration coefficients for a chamber model; the air-kerma rate calibration coefficients for EBT sources were the most variable followed by LDR and then HDR source types. The stability of a chamber's source strength calibration coefficient exhibited a similar dependence on the source quality. Air-communicating and pressurized chambers exhibited an average stability between subsequent calibrations of 0.2% and 3.0%, respectively, for HDR calibrations, but could exhibit more than double this variability characteristic of their leptokurtic distributions. For LDR calibrations, the spread and stability in a model's calibration ratio toward another seed type is extensive and notable. For some seed types and chamber models exhibit variations of <0.5% while others exceeded 2.0%. Furthermore, the magnitude of this dependence is outside the variability of the source's source strength due to manufacturing, which was determined from the manufacturer and NIST source strength intercomparison records at the UWADCL. As a result, establishing and disseminating calibration conversion factors among different source and chamber models is not advised as it would substantially increase the uncertainty in a clinical user's determination of source strength.

CONCLUSIONS

The calibration of a well-type ionization chamber is unique to the chamber, source, and source holder. Attempting to generalize source strength calibration coefficients among chambers of the same model or source type is impractical given the variation in response observed across the calibration history of the UWADCL. Attempting to quantitate and transfer calibration coefficients in such a relative sense may significantly degrade the uncertainty relative to specifically calibrating a chamber for an individual source.

摘要

目的

研究在高剂量率(HDR)、低剂量率(LDR)和电子近距离放射治疗(EBT)源质量条件下,用于空气连通式和加压型井型电离室的近距离放射治疗源强度校准系数的可变性和稳定性。鉴于电离室的这些特性在维持与国家一级标准实验室的可追溯性以及促进近距离放射治疗中有效的患者护理方面所起的作用,它们是评估的重要特征。

方法

回顾性分析了威斯康星大学认可剂量校准实验室(UWADCL)客户井型电离室数据库中1996年至2019年期间进行的校准记录。进行了统计分析,并区分校准类型以量化几种电离室模型之间的电离室校准系数分布。基于矩和分位数分析对分布进行量化。对于LDR校准,根据种子类型进一步区分电离室响应,以研究不同电离室模型内部和之间种子依赖性的可变性。除了这些指标外,UWADCL的校准谱系用于根据后续校准系数的比率评估这些校准系数在电离室模型和源类型之间的稳定性。

结果

特定电离室模型的近距离放射治疗源强度校准系数分布不一定呈正态分布,并且对电离室模型的加工公差或设计变化敏感。校准源质量也影响电离室模型的校准系数分布;EBT源的空气比释动能率校准系数变化最大,其次是LDR,然后是HDR源类型。电离室源强度校准系数的稳定性对源质量也有类似的依赖性。对于HDR校准,空气连通式和加压型电离室在后续校准之间的平均稳定性分别为0.2%和3.0%,但由于其尖峰分布,其变化可能超过两倍。对于LDR校准,模型对另一种种子类型的校准比率的差异和稳定性很大且显著。对于某些种子类型和电离室模型,变化小于0.5%,而其他则超过2.0%。此外,这种依赖性的大小超出了源由于制造导致的源强度可变性,这是根据UWADCL的制造商和NIST源强度比对记录确定的。因此,不建议在不同的源和电离室模型之间建立和传播校准转换因子,因为这会大幅增加临床用户确定源强度时的不确定性。

结论

井型电离室的校准对于电离室、源和源支架是独特的。鉴于在UWADCL的校准历史中观察到的响应变化,试图在同一模型或源类型的电离室之间推广源强度校准系数是不切实际的。试图在这种相对意义上量化和转移校准系数可能会相对于为单个源专门校准电离室而显著降低不确定性。

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