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Evaluation of the dosimetric properties of a synthetic single crystal diamond detector in high energy clinical proton beams

机译:合成单晶金刚石探测器在高能临床质子束中的剂量学特性评估

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Purpose: To investigate the dosimetric properties of a synthetic single crystal diamond Schottky diode for accurate relative dose measurements in large and small field high-energy clinical proton beams. Methods: The dosimetric properties of a synthetic single crystal diamond detector were assessed by comparison with a reference Markus parallel plate ionization chamber, an Exradin A16 microionization chamber, and Exradin T1a ion chamber. The diamond detector was operated at zero bias voltage at all times. Comparative dose distribution measurements were performed by means of Fractional depth dose curves and lateral beam profiles in clinical proton beams of energies 155 and 250 MeV for a 14 cm square cerrobend aperture and 126 MeV for 3, 2, and 1 cm diameter circular brass collimators. ICRU Report No. 78 recommended beam parameters were used to compare fractional depth dose curves and beam profiles obtained using the diamond detector and the reference ionization chamber. Warm-up/stability of the detector response and linearity with dose were evaluated in a 250 MeV proton beam and dose rate dependence was evaluated in a 126 MeV proton beam. Stem effect and the azimuthal angle dependence of the diode response were also evaluated. Results: A maximum deviation in diamond detector signal from the average reading of less than 0.5% was found during the warm-up irradiation procedure. The detector response showed a good linear behavior as a function of dose with observed deviations below 0.5% over a dose range from 50 to 500 cGy. The detector response was dose rate independent, with deviations below 0.5% in the investigated dose rates ranging from 85 to 300 cGy/min. Stem effect and azimuthal angle dependence of the diode signal were within 0.5%. Fractional depth dose curves and lateral beam profiles obtained with the diamond detector were in good agreement with those measured using reference dosimeters. Conclusions: The observed dosimetric properties of the synthetic single crystal diamond detector indicate that its behavior is proton energy independent and dose rate independent in the investigated energy and dose rate range and it is suitable for accurate relative dosimetric measurements in large as well as in small field high energy clinical proton beams. © 2013 American Association of Physicists in Medicine.
机译:目的:研究合成单晶金刚石肖特基二极管的剂量特性,以在大,小场高能临床质子束中进行准确的相对剂量测量。方法:通过与参考Markus平行板电离室,Exradin A16微电离室和Exradin T1a离子室进行比较,评估了合成单晶金刚石检测器的剂量特性。金刚石检测器始终在零偏置电压下运行。通过分数深度剂量曲线和临床质子束的横向束分布曲线进行比较剂量分布测量,能量为155和250 MeV,直径为14 cm的cerrobend孔径,直径为126 MeV,直径为3、2和1 cm的圆形黄铜准直器。 ICRU报告第78号建议的光束参数用于比较使用钻石探测器和参考电离室获得的深度分数剂量曲线和光束轮廓。在250 MeV质子束中评估探测器响应的预热/稳定性以及剂量线性关系,在126 MeV质子束中评估剂量率依赖性。还评估了干效应和二极​​管响应的方位角依赖性。结果:在预热照射过程中,金刚石检测器信号与平均读数的最大偏差小于0.5%。检测器响应显示出良好的线性行为,随剂量变化,在50至500 cGy的剂量范围内观察到的偏差低于0.5%。检测器响应与剂量率无关,在85至300 cGy / min的剂量率范围内偏差低于0.5%。二极管信号的干效应和方位角依赖性在0.5%以内。用金刚石检测器获得的分数深度剂量曲线和横束轮廓与使用参考剂量计测得的曲线高度吻合。结论:观察到的合成单晶金刚石探测器的剂量学特性表明,其行为在所研究的能量和剂量率范围内与质子能量无关且与剂量率无关,并且适用于大,小领域的精确相对剂量测量高能临床质子束。 ©2013美国医学物理学会。

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