首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Dosimetric characterization of a synthetic single crystal diamond detector in a clinical 62 MeV ocular therapy proton beam
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Dosimetric characterization of a synthetic single crystal diamond detector in a clinical 62 MeV ocular therapy proton beam

机译:在临床62 MeV眼科治疗质子束中合成单晶金刚石探测器的剂量学表征

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A synthetic single crystal diamond based Schottky photodiode was tested at INFN-LNS on the proton beam line (62 MeV) dedicated to the radiation treatment of ocular disease. The diamond detector response was studied in terms of pre-irradiation dose, linearity with dose and dose rate, and angular dependence. Depth dose curves were measured for the 62 MeV pristine proton beam and for three unmodulated range-shifted proton beams; furthermore, the spread-out Bragg peak was measured for a modulated therapeutic proton beam. Beam parameters, recommended by the ICRU report 78, were evaluated to analyze depth-dose curves from diamond detector. Measured dose distributions were compared with the corresponding dose distributions acquired with reference plane-parallel ionization chambers. Field size dependence of the output factor (dose per monitor unit) in a therapeutic modulated proton beam was measured with the diamond detector over the range of ocular proton therapy collimator diameters (5-30 mm). Output factors measured with the diamond detector were compared to the ones by a Markus ionization chamber, a Scanditronix Hi-p Si stereotactic diode and a radiochromic EBT2 film. Signal stability within 0.5% was demonstrated for the diamond detector with no need of any pre-irradiation dose. Dose and dose rate dependence of the diamond response was measured: deviations from linearity resulted to be within ± 0.5% over the investigated ranges of 0.5-40.0 Gy and 0.3-30.0 Gy/min respectively. Output factors from diamond detector measured with the smallest collimator (5 mm in diameter) showed a maximum deviation of about 3% with respect to the high resolution radiochromic EBT2 film. Depth-dose curves measured by diamond for unmodulated and modulated beams were in good agreement with those from the reference plane-parallel Markus chamber, with relative differences lower than ± 1% in peak-to-plateau ratios, well within experimental uncertainties. A 2.5% variation in diamond detector response was observed in angular dependence measurements carried-out by varying the proton beam incidence angle in the polar direction. The dosimetric characterization of the tested synthetic single crystal diamond detector clearly indicates its suitability for relative dosimetry in ocular therapy proton beams, with no need of any correction factors accounting for dose rate and linear energy transfer dependence.
机译:在INFN-LNS上对质子束线(62 MeV)进行了专用于眼科疾病放射治疗的合成单晶金刚石肖特基光电二极管的测试。钻石探测器的响应根据预照射剂量,剂量和剂量率的线性关系以及角度依赖性进行了研究。测量了62 MeV原始质子束和三个未调制范围移动质子束的深度剂量曲线;此外,对调制的治疗性质子束测量散布的布拉格峰。评估了ICRU报告78推荐的光束参数,以分析钻石探测器的深度-剂量曲线。将测得的剂量分布与通过参考平面平行电离室获得的相应剂量分布进行比较。在金刚石质子探测器上,在眼质子治疗准直仪直径范围(5-30 mm)范围内,测量治疗性调制质子束中输出因子(每个监控器剂量)的场大小依赖性。用马库斯电离室,Scanditronix Hi-p Si立体定向二极管和放射致变色EBT2膜将用金刚石检测器测量的输出因子与输出因子进行比较。钻石探测器的信号稳定性在0.5%以内,无需任何预辐照剂量。测量了金刚石响应的剂量和剂量率依赖性:在研究的0.5-40.0 Gy和0.3-30.0 Gy / min的范围内,线性偏差分别在±0.5%之内。用最小的准直仪(直径5毫米)测量的钻石检测器的输出因子相对于高分辨率放射致变色EBT2膜显示出约3%的最大偏差。钻石测量的未调制和调制光束的深度-剂量曲线与参考平面平行马库斯室的深度-剂量曲线非常吻合,其峰谷比的相对差异低于±1%,完全在实验不确定性之内。在通过改变质子束入射角在极性方向上进行的角度依赖性测量中,观察到金刚石探测器响应的变化为2.5%。经过测试的合成单晶金刚石探测器的剂量学特征清楚地表明了其适用于眼部治疗质子束的相对剂量学,而无需考虑剂量率和线性能量转移依赖性的任何校正因子。

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