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Development and implementation of a remote audit tool for high dose rate (HDR) Ir-192 brachytherapy using optically stimulated luminescence dosimetry

机译:开发和实施使用光激发发光剂量法进行高剂量率(HDR)Ir-192近距离放射治疗的远程审核工具

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>Purpose: The aim of this work was to create a mailable phantom with measurement accuracy suitable for Radiological Physics Center (RPC) audits of high dose-rate (HDR) brachytherapy sources at institutions participating in National Cancer Institute-funded cooperative clinical trials. Optically stimulated luminescence dosimeters (OSLDs) were chosen as the dosimeter to be used with the phantom.>Methods: The authors designed and built an 8 × 8 × 10 cm3 prototype phantom that had two slots capable of holding Al2O3:C OSLDs (nanoDots; Landauer, Glenwood, IL) and a single channel capable of accepting all 192Ir HDR brachytherapy sources in current clinical use in the United States. The authors irradiated the phantom with Nucletron and Varian 192Ir HDR sources in order to determine correction factors for linearity with dose and the combined effects of irradiation energy and phantom characteristics. The phantom was then sent to eight institutions which volunteered to perform trial remote audits.>Results: The linearity correction factor was kL = (−9.43 × 10−5 × dose) + 1.009, where dose is in cGy, which differed from that determined by the RPC for the same batch of dosimeters using 60Co irradiation. Separate block correction factors were determined for current versions of both Nucletron and Varian 192Ir HDR sources and these vendor-specific correction factors differed by almost 2.6%. For the Nucletron source, the correction factor was 1.026 [95% confidence interval (CI) = 1.023–1.028], and for the Varian source, it was 1.000 (95% CI = 0.995–1.005). Variations in lateral source positioning up to 0.8 mm and distal/proximal source positioning up to 10 mm had minimal effect on dose measurement accuracy. The overall dose measurement uncertainty of the system was estimated to be 2.4% and 2.5% for the Nucletron and Varian sources, respectively (95% CI). This uncertainty was sufficient to establish a ±5% acceptance criterion for source strength audits under a formal RPC audit program. Trial audits of four Nucletron sources and four Varian sources revealed an average RPC-to-institution dose ratio of 1.000 (standard deviation = 0.011).>Conclusions: The authors have created an OSLD-based 192Ir HDR brachytherapy source remote audit tool which offers sufficient dose measurement accuracy to allow the RPC to establish a remote audit program with a ±5% acceptance criterion. The feasibility of the system has been demonstrated with eight trial audits to date.
机译:>目的:这项工作的目的是在美国国家癌症研究所(National Cancer Institute)参与研究的机构中创建一种具有可测量精度的可邮寄体模,该体模适用于放射物理中心(RPC)对高剂量率(HDR)近距离放射治疗源的审核-资助合作临床试验。选择了光激发发光剂量计(OSLD)作为用于体模的剂量计。>方法:作者设计并建造了一个8×8×10 cm 3 原型体模。它具有两个能够容纳Al2O3:C OSLD的插槽(nanoDots; Landauer,Glenwood,IL),并且一个通道能够接受美国当前临床使用的所有 192 Ir HDR近距离放射治疗源。作者用Nucletron和Varian 192 Ir HDR光源照射了人体模型,以确定剂量线性度的校正因子以及辐照能量和人体模型特性的综合影响。然后,该幻像被发送到八个自愿进行远程审核的机构。>结果:线性校正因子为kL =(−9.43×10 -5 ×剂量)+ 1.009,其中剂量以cGy为单位,与使用 60 Co辐照的同一批剂量计的RPC确定的剂量不同。对于当前版本的Nucletron和Varian 192 Ir HDR源,确定了单独的块校正因子,这些特定于供应商的校正因子相差将近2.6%。对于Nucletron源,校正因子为1.026 [95%置信区间(CI)= 1.023–1.028],对于Varian源,校正因子为1.000(95%CI = 0.995–1.005)。侧向放射源定位最大0.8 mm和远侧/近侧放射源定位最大10 mm的变化对剂量测量精度的影响最小。对于Nucletron和Varian光源,系统的总体剂量测量不确定度估计分别为2.4%和2.5%(95%CI)。这种不确定性足以为正式的RPC审核计划下的源强度审核建立±5%的接受标准。对四个Nucletron来源和四个Varian来源的试验审核显示,RPC与机构的平均剂量比为1.000(标准偏差= 0.011)。>结论:作者创建了基于OSLD的 192 Ir HDR近距离放射源远程审核工具,该工具可提供足够的剂量测量精度,以使RPC建立具有±5%接受标准的远程审核程序。迄今为止,该系统的可行性已通过八次试用审核得到了证明。

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