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SU-E-T-153:用于放射治疗剂量测定的探测器级化学气相沉积金刚石。

SU-E-T-153: Detector-Grade CVD Diamond for Radiotherapy Dosimetry.

作者信息

Lansley S, Betzel G, McKay D, Meyer J

机构信息

University of Canterbury, Christchurch, NZ.

University of Maryland School of Medicine, Baltimore, MD.

出版信息

Med Phys. 2012 Jun;39(6Part12):3738. doi: 10.1118/1.4735211.

Abstract

PURPOSE

To evaluate the use of commercially available detector-grade synthetic diamond films made via chemical vapor deposition (CVD) as x- ray detectors for radiotherapy dosimetry.

METHODS

A detector was fabricated using high-quality single crystal CVD diamond films (0.5 × 3 × 3 mm̂3) with 0.4 mm̂3 sensitive volumes, which were encapsulated with PMMA. The detector was placed in a (30 × 30 × 30 cm̂3) PTW water phantom. Six- and ten-MV photons from an Elekta Synergy linac were measured using an SSD of 90 cm and typically a 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 with a 100-V bias. The detector was evaluated by measuring leakage current, priming dose, response dynamics, dose linearity, dependence on dose rate, percent depth dose (6 and 10 MV photons) and output factors. Some measurements were compared with a Si diode detector, 0.04 and/or 0.13-cc ion chamber(s).

RESULTS

Leakage currents were negligible (∼1 pA) given the overall average sensitivity of the material (680 nC/Gy at 100 V). Detector current rise and fall times were < 2 s. Dose measurements up to 5 Gy were linear. A slight dependence on nominal dose rates up to 500 MU/min was seen with Fowler fitting parameter delta = 0.981. Percent depth dose profiles compared well to a 0.13-cc ion chamber up to 25 cm depths for 10-MV photons. Output factors measured well for field widths 5-15 cm; below 5 cm, differences are seen between all four different detectors as expected.

CONCLUSIONS

The type of diamond tested has potential to be used for small field dosimetry due to its small sensitive volume and high sensitivity. Further experiments are ongoing and detector packaging is yet to be optimized.

摘要

目的

评估通过化学气相沉积(CVD)制成的市售探测器级合成金刚石薄膜作为放射治疗剂量测定的X射线探测器的用途。

方法

使用高质量的单晶CVD金刚石薄膜(0.5×3×3立方毫米)制作探测器,敏感体积为0.4立方毫米,并用聚甲基丙烯酸甲酯(PMMA)封装。将探测器置于(30×30×30立方厘米)的PTW水模体中。使用Elekta Synergy直线加速器的6兆伏和10兆伏光子,源皮距(SSD)为90厘米,在射束中心轴上,模体深度通常为10厘米,射野尺寸为10×10平方厘米进行测量。使用带有100伏偏压的PTW UNIDOS E静电计进行数据采集。通过测量漏电流、起始剂量、响应动力学、剂量线性、对剂量率的依赖性、百分深度剂量(6兆伏和10兆伏光子)和输出因子来评估探测器。一些测量结果与硅二极管探测器、0.04立方厘米和/或0.13立方厘米电离室进行了比较。

结果

鉴于材料的总体平均灵敏度(100伏时为680纳库仑/戈瑞),漏电流可忽略不计(约1皮安)。探测器电流的上升和下降时间小于2秒。高达5戈瑞的剂量测量呈线性。使用Fowler拟合参数δ = 0.981时,在高达500监测单位/分钟的标称剂量率下有轻微依赖性。对于10兆伏光子,在深度达25厘米时,百分深度剂量曲线与0.13立方厘米电离室的测量结果吻合良好。对于5 - 15厘米的射野宽度,输出因子测量良好;在5厘米以下,正如预期的那样,所有四种不同探测器之间存在差异。

结论

由于其敏感体积小和灵敏度高,所测试的这种金刚石类型有潜力用于小射野剂量测定。进一步的实验正在进行中,探测器封装尚待优化。

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