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SU-E-T-157:用于放射治疗剂量测定的化学气相沉积金刚石探测器的可重复性

SU-E-T-157: Reproducibility of CVD Diamond Detectors for Radiotherapy Dosimetry.

作者信息

Betzel G, Lansley S, McKay D, Meyer J

机构信息

University of Maryland School of Medicine, Baltimore, MD.

University of Canterbury, Christchurch, NZ.

出版信息

Med Phys. 2012 Jun;39(6Part12):3739. doi: 10.1118/1.4735215.

Abstract

PURPOSE

Three diamond x-ray detectors fabricated in-house using films from the same batch of commercially-available chemical vapor deposition (CVD) diamond were investigated for performance inter-comparability under clinically relevant conditions.

METHODS

Detectors were based on single-crystal CVD diamond films (0.5 × 3 × 3 mm̂3) with 0.4 mm^3 sensitive volumes, which were encapsulated with PMMA. Detectors were placed in a (30 × 30 × 30 cm̂3) PTW water phantom. Six-MV photons from an Elekta Synergy linac were measured using an SSD of 90 cm and 10 cm phantom depth with a 10 × 10 cm̂2 field size in the central axis of the beam. Data acquisition was performed using a PTW UNIDOS E electrometer. Leakage current, priming dose, response dynamics, dose linearity, dependence on dose rate and angular dependence were used to evaluate differences between diamond detectors.

RESULTS

Differences were seen in leakage currents before (< 1.5 pA) and after (< 12 pA) irradiation. A priming dose of ∼7 Gy and rise and fall times of 2 s were found for all three detectors. Sensitivities differed by up to 10%. Dependence on dose rate was similar (Fowler fitting parameter, delta = 0.92-0.94). Angular dependence was minimal (97-102% average). Differences in detector performance appeared to be primarily due to film thickness, which can significantly change sensitivities and applied fields for detectors with small sensitive volumes.

CONCLUSIONS

Although films were sourced from the same manufactured batch, small deviations were seen between detectors such that correction factors may be required much like natural diamonds used in existing commercial detectors. Differences in sensitivity and dependence on dose rate most likely originate from variation in film thickness due to manufactured tolerances. Preselecting films by thickness is important to help eliminate variability in detector response where small sensitive volumes are used.

摘要

目的

研究了使用同一批次市售化学气相沉积(CVD)金刚石薄膜在内部制造的三个菱形X射线探测器,以评估其在临床相关条件下的性能可比性。

方法

探测器基于单晶CVD金刚石薄膜(0.5×3×3 mm³),灵敏体积为0.4 mm³,并用聚甲基丙烯酸甲酯(PMMA)封装。探测器放置在一个(30×30×30 cm³)的PTW水模体中。使用Elekta Synergy直线加速器产生的6兆伏光子,在源轴距(SSD)为90厘米、模体深度为10厘米、射野尺寸为10×10 cm²的条件下,在射束中心轴上进行测量。数据采集使用PTW UNIDOS E静电计。通过漏电流、起始剂量、响应动力学、剂量线性、对剂量率的依赖性和角度依赖性来评估金刚石探测器之间的差异。

结果

在辐照前后的漏电流方面存在差异(辐照前<1.5皮安,辐照后<12皮安)。发现所有三个探测器的起始剂量约为7戈瑞,上升和下降时间为2秒。灵敏度差异高达10%。对剂量率的依赖性相似(Fowler拟合参数,δ = 0.92 - 0.94)。角度依赖性最小(平均为97 - 102%)。探测器性能的差异似乎主要归因于薄膜厚度,这会显著改变灵敏体积小的探测器的灵敏度和应用场。

结论

尽管薄膜来自同一生产批次,但探测器之间仍存在小偏差,因此可能需要像现有商用探测器中使用的天然钻石那样的校正因子。灵敏度和对剂量率依赖性的差异很可能源于制造公差导致的薄膜厚度变化。在使用小灵敏体积时,按厚度预选薄膜对于帮助消除探测器响应的变异性很重要。

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