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Characterization of a flat-panel detector for ion beam spot measurements

机译:用于离子束斑测量的平板检测器的特性

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摘要

Dynamic beam delivery techniques are being increasingly used for cancer therapy. Scanning ion beams require extensive and time-demanding quality assurance procedures and beam tuning. Accordingly, fast measurement techniques improving the efficiency of the procedures and accommodating the safety requirements are highly desirable. Major requirements for a detector used for beam-shape measurements are high spatial resolution in two dimensions, reusability, online readout and easy handling. At the Heidelberg Ion Beam Therapy Facility (Germany), we examined the performance of the RID 256L flat-panel detector for beam spot measurements. The two-dimensional beam profiles of proton and carbon ion beams measured were compared to measurements with radiographic films at intermediate energies using the index. The difference to the beam width measured with radiographic films of less than 3% demonstrates sufficient accuracy of ion beam width measurements possible with this detector for both proton and carbon ion beams. The beam shapes were also measured at different beam intensities. At both the highest and lowest energies available at the HIT, no beam spot-shape deformation was found with increasing beam intensities, as long as the boundary of the dynamic range was not exceeded. The signal leak along the readout direction was identified as an undesirable effect. However, due to small amplitudes and static beams, this effect is of minor importance for beam spot measurements. Distortion of results due to detector radiation damage was monitored. No detector radiation damage was observed over the experiments. Moreover, the observed short-time detector response stability (within 0.1%) as well as medium term stability (within 0.5% in 15 months) was excellent. This flat-panel detector is compact and easy to use. Together with its low weight, this helps to speed up measurement procedures substantially. All these properties make this an ideal detector for the fast, high-resolution imaging of static ion beam spots needed for constancy measurements in daily beam quality assurance and for accelerator tuning. For daily use, radiation damage has to be monitored continuously and corrected for if necessary.
机译:动态光束传输技术正越来越多地用于癌症治疗。扫描离子束需要大量且时间紧迫的质量保证程序和束调整。因此,非常需要提高测量效率并适应安全性要求的快速测量技术。对用于光束形状测量的检测器的主要要求是二维的高空间分辨率,可重用性,在线读数和易于操作。在海德堡离子束治疗设施(德国),我们检查了用于束斑测量的RID 256L平板探测器的性能。使用该指数,将测得的质子束和碳离子束的二维束轮廓与射线照相胶片在中等能量下的测量值进行比较。用射线照相胶片测得的束宽差异小于3%,表明该探测器对质子和碳离子束的离子束宽度测量具有足够的精度。光束形状也在不同的光束强度下测量。在HIT可用的最高和最低能量下,只要不超出动态范围的边界,就不会发现束强度增加时束斑形状变形。沿读出方向的信号泄漏被识别为不良影响。但是,由于振幅小和静态光束,这种影响对于光束点测量而言意义不大。监测由于探测器辐射损坏而导致的结果失真。在整个实验过程中未观察到检测器辐射损坏。此外,观察到的短时探测器响应稳定性(0.1%以内)和中期稳定性(15个月内0.5%以内)非常好。这款平板探测器结构紧凑,易于使用。加上重量轻,这有助于大大加快测量过程。所有这些特性使它成为快速,高分辨率成像的静态离子束斑的理想检测器,用于日常束质量保证和加速器调谐中的恒定性测量。对于日常使用,必须持续监控辐射损伤并在必要时进行纠正。

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