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EBT3 型光致聚合物胶片的综合评估及新的使用建议。

Comprehensive evaluation and new recommendations in the use of Gafchromic EBT3 film.

机构信息

Division of Radiation Oncology, Department of Radiation Physics, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.

Graduate School of Biomedical Sciences, The University of Texas, Houston, Texas, USA.

出版信息

Med Phys. 2023 Nov;50(11):7252-7262. doi: 10.1002/mp.16593. Epub 2023 Jul 5.

Abstract

BACKGROUND

Gafchromic film's unique properties of tissue-equivalence, dose-rate independence, and high spatial resolution make it an attractive choice for many dosimetric applications. However, complicated calibration processes and film handling limits its routine use.

PURPOSE

We evaluated the performance of Gafchromic EBT3 film after irradiation under a variety of measurement conditions to identify aspects of film handling and analysis for simplified but robust film dosimetry.

METHODS

The short- (from 5 min to 100 h) and long-term (months) film response was evaluated for clinically relevant doses of up to 50 Gy for accuracy in dose determination and relative dose distributions. The dependence of film response on film-read delay, film batch, scanner type, and beam energy was determined.

RESULTS

Scanning the film within a 4-h window and using a standard 24-h calibration curve introduced a maximum error of 2% over a dose range of 1-40 Gy, with lower doses showing higher uncertainty in dose determination. Relative dose measurements demonstrated <1 mm difference in electron beam parameters such as depth of 50% of the maximum dose value (R ), independent of when the film was scanned after irradiation or the type of calibration curve used (batch-specific or time-specific calibration curve) if the same default scanner was used. Analysis of films exposed over a 5-year period showed that using the red channel led to the lowest variation in the measured net optical density values for different film batches, with doses >10 Gy having the lowest coefficient of variation (<1.7%). Using scanners of similar design produced netOD values within 3% after exposure to doses of 1-40 Gy.

CONCLUSIONS

This is the first comprehensive evaluation of the temporal and batch dependence of Gafchromic EBT3 film evaluated on consolidated data over 8 years. The relative dosimetric measurements were insensitive to the type of calibration applied (batch- or time-specific) and in-depth time-dependent dosimetric signal behaviors can be established for film scanned outside of the recommended 16-24 h post-irradiation window. We generated guidelines based on our findings to simplify film handling and analysis and provide tabulated dose- and time-dependent correction factors to achieve this without reducing the accuracy of dose determination.

摘要

背景

Gafchromic 胶片具有组织等效性、剂量率独立性和高空间分辨率等独特性能,因此成为许多剂量测量应用的理想选择。然而,其复杂的校准过程和胶片处理限制了其常规使用。

目的

我们评估了 Gafchromic EBT3 胶片在各种测量条件下照射后的性能,以确定简化但稳健的胶片剂量测量中胶片处理和分析的各个方面。

方法

评估了胶片的短期(5 分钟至 100 小时)和长期(数月)响应,以确定高达 50Gy 的临床相关剂量的准确性和相对剂量分布。确定了胶片响应对胶片读取延迟、胶片批次、扫描仪类型和束能量的依赖性。

结果

在 4 小时的窗口内扫描胶片,并使用标准的 24 小时校准曲线,在 1-40Gy 的剂量范围内,最大误差为 2%,剂量越低,剂量确定的不确定性越高。相对剂量测量表明,电子束参数(如最大剂量值的 50%深度(R))的差异小于 1mm,与照射后何时扫描胶片或使用的校准曲线类型(批次特定或时间特定校准曲线)无关,如果使用相同的默认扫描仪。对 5 年内曝光的胶片进行分析表明,对于不同的胶片批次,使用红色通道会导致测量的净光密度值变化最小,剂量>10Gy 时变化系数(CV)最低(<1.7%)。使用设计相似的扫描仪,在 1-40Gy 的剂量下,净 OD 值的差异在 3%以内。

结论

这是首次对 Gafchromic EBT3 胶片在 8 年的时间内进行时间和批次依赖性的综合评估。相对剂量测量对所应用的校准类型(批次或时间特定)不敏感,并且可以为在推荐的 16-24 小时辐照后窗口之外扫描的胶片建立深度相关的时间依赖性剂量测量信号行为。我们根据研究结果制定了简化胶片处理和分析的指南,并提供了剂量和时间相关的校正因子表,以在不降低剂量确定准确性的情况下实现这一目标。

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