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优化小胶片在直肠癌盆腔 IOERT 中体内剂量学测量的方法。

Optimized method for in vivo dosimetry with small films in pelvic IOERT for rectal cancer.

机构信息

Physics and Astronomy Department, Faculty of Sciences, University of Porto, Portugal; Medical Physics, Radiobiology and Radiation Protection Group, IPO Porto Research Center (CI-IPOP), Portuguese Oncology Institute of Porto (IPO Porto), Porto, Portugal.

Medical Physics, Radiobiology and Radiation Protection Group, IPO Porto Research Center (CI-IPOP), Portuguese Oncology Institute of Porto (IPO Porto), Porto, Portugal; Medical Physics Service, Portuguese Oncology Institute of Porto (IPO Porto), Porto, Portugal.

出版信息

Phys Med. 2021 Jan;81:20-30. doi: 10.1016/j.ejmp.2020.11.019. Epub 2020 Dec 15.

Abstract

PURPOSE

Intra-Operative Electron Radiation Therapy (IOERT) is used to treat rectal cancer at our institution, and in vivo measurements with Gafchromic EBT3® films were introduced as quality assurance. The purpose of this work was to quantify the uncertainties associated with digitization of very small EBT3 films irradiated simultaneously, in order to optimize in vivo dosimetry for IOERT.

METHODS

Film samples of different sizes - M1 (5×5cm), M2 (1.5×1.5 cm), M3 (1.0×1.5 cm) and M4 (0.75×1.5 cm) - were used to quantify typical variations (uncertainties) due to scanner fluctuations, misalignment, film inhomogeneity, long-term effect of film cutting, small rotations, film curling, edge effects and the influence of opaque templates. Fitting functions and temporal validity of sensitometric curves were also assessed.

RESULTS

Film curling, intra-film variability and scanner fluctuations are important effects that need to be minimized or considered in the uncertainty budget. Small rotations, misalignments and film cutting have little or no influence on the readings. Most fitting functions perform well, but the quantity used for dose quantification determines over- or under-valuation of dose in the long term. Edge effects and the influence of opaque templates need to be well understood, to allow optimization of methodology to the intended purpose.

CONCLUSION

The proposed method allows practical and simultaneous digitization of up to ten small irradiated film samples, with an experimental uncertainty of 1%.

摘要

目的

术中电子放射治疗(IOERT)在我们的机构中用于治疗直肠癌,并且引入了 Gafchromic EBT3®薄膜的体内测量作为质量保证。这项工作的目的是量化与同时辐照的非常小的 EBT3 薄膜数字化相关的不确定度,以便优化 IOERT 的体内剂量学。

方法

使用不同尺寸的薄膜样品 - M1(5×5cm)、M2(1.5×1.5cm)、M3(1.0×1.5cm)和 M4(0.75×1.5cm) - 来量化由于扫描仪波动、失准、薄膜不均匀性、薄膜切割的长期效应、小旋转、薄膜卷曲、边缘效应和不透明模板的影响而导致的典型变化(不确定度)。还评估了感光曲线的拟合函数和时间有效性。

结果

薄膜卷曲、薄膜内变异性和扫描仪波动是需要最小化或在不确定度预算中考虑的重要影响。小旋转、失准和薄膜切割对读数几乎没有或没有影响。大多数拟合函数表现良好,但用于剂量量化的数量会长期导致剂量的高估或低估。边缘效应和不透明模板的影响需要很好地理解,以允许针对预期目的优化方法。

结论

所提出的方法允许对多达十个小辐照薄膜样品进行实际和同时数字化,实验不确定度为 1%。

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