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Angular dependence of the response of the nanoDot OSLD system for measurements at depth in clinical megavoltage beams

机译:nanoDot OSLD系统响应的角度依赖性,用于在临床兆电压束深度中进行测量

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摘要

Purpose ududThe purpose of this investigation was to assess the angular dependence of a commercial optically stimulated luminescence dosimeter (OSLD) dosimetry system in MV x-ray beams at depths beyondd max and to find ways to mitigate this dependence for measurements in phantoms.ududMethods ududTwo special holders were designed which allow a dosimeter to be rotated around the center of its sensitive volume. The dosimeter's sensitive volume is a disk, 5 mm in diameter and 0.2 mm thick. The first holder rotates the disk in the traditional way. It positions the disk perpendicular to the beam (gantry pointing to the floor) in the initial position (0°). When the holder is rotated the angle of the disk towards the beam increases until the disk is parallel with the beam (“edge on,” 90°). This is referred to as Setup 1. The second holder offers a new, alternative measurement position. It positions the disk parallel to the beam for all angles while rotating around its center (Setup 2). Measurements with five to ten dosimeters per point were carried out for 6 MV at 3 and 10 cm depth. Monte Carlo simulations using GEANT4 were performed to simulate the response of the active detector material for several angles. Detector and housing were simulated in detail based on microCT data and communications with the manufacturer. Various material compositions and an all-water geometry were considered.ududResultsududFor the traditional Setup 1 the response of the OSLD dropped on average by 1.4% ± 0.7% (measurement) and 2.1% ± 0.3% (Monte Carlo simulation) for the 90° orientation compared to 0°. Monte Carlo simulations also showed a strong dependence of the effect on the composition of the sensitive layer. Assuming the layer to completely consist of the active material (Al2O3) results in a 7% drop in response for 90° compared to 0°. Assuming the layer to be completely water, results in a flat response within the simulation uncertainty of about 1%. For the new Setup 2, measurements and Monte Carlo simulations found the angular dependence of the dosimeter to be below 1% and within the measurement uncertainty. ududConclusions ududThe dosimeter system exhibits a small angular dependence of approximately 2% which needs to be considered for measurements involving other than normal incident beams angles. This applies in particular to clinicalin vivo measurements where the orientation of the dosimeter is dictated by clinical circumstances and cannot be optimized as otherwise suggested here. When measuring in a phantom, the proposed new setup should be considered. It changes the orientation of the dosimeter so that a coplanar beam arrangement always hits the disk shaped detector material from the thin side and thereby reduces the angular dependence of the response to within the measurement uncertainty of about 1%. This improvement makes the dosimeter more attractive for clinical measurements with multiple coplanar beams in phantoms, as the overall measurement uncertainty is reduced. Similarly, phantom based postal audits can transition from the traditional TLD to the more accurate and convenient OSLD.
机译:目的本研究的目的是评估MV X射线束中商用光学激发剂量计(OSLD)剂量学系统在超过最大深度处的角度依赖性,并找到减轻这种依赖性以进行幻像测量的方法。 ud udMethods ud ud设计了两个特殊的支架,可以使剂量计绕其敏感体积的中心旋转。剂量计的敏感体积是一个直径为5毫米,厚度为0.2毫米的圆盘。第一支架以传统方式旋转磁盘。它将磁盘垂直于梁(龙门指向地板)放置在初始位置(0°)。旋转支架后,圆盘相对于横梁的角度会增加,直到圆盘与横梁平行(“边上”为90°)。这称为设置1。第二个支架提供了新的替代测量位置。围绕圆盘的中心旋转时,圆盘在所有角度都平行于光束定位(设置2)。在3和10 cm深度对6 MV进行每点5至10剂量计的测量。进行了使用GEANT4的蒙特卡洛模拟,以模拟有源检测器材料在多个角度下的响应。检测器和外壳是根据microCT数据和与制造商的通讯进行详细模拟的。 ud ud结果 ud ud对于传统设置1,OSLD的响应平均下降了1.4%±0.7%(测量值)和2.1%±0.3%(蒙特卡罗)相对于0°,则为90°。蒙特卡洛模拟还表明,效应对敏感层组成的依赖性很大。假设该层完全由活性材料(Al2O3)组成,与0°相比,90°的响应下降了7%。假设该层完全是水,则在大约1%的模拟不确定性范围内会产生平坦的响应。对于新的设置2,测量和蒙特卡洛模拟发现剂量计的角度依赖性低于1%,并且在测量不确定度之内。 ud ud结论 ud ud剂量计系统表现出大约2%的小角度依赖性,对于涉及法向入射光束角度以外的测量需要考虑。这尤其适用于体内剂量的临床测定,其中剂量计的方向由临床情况决定,不能如此处另外建议的那样进行优化。在幻像中进行测量时,应考虑建议的新设置。它改变了剂量计的方向,以使共面光束装置总是从薄侧击中盘形检测器材料,从而将响应的角度依赖性减小到约1%的测量不确定度内。这种改进使剂量计对于幻影中具有多个共面光束的临床测量更具吸引力,因为降低了整体测量的不确定性。同样,基于幻像的邮政审核也可以从传统的TLD过渡到更准确,更方便的OSLD。

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