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Investigations of a flat-panel detector for quality assurance measurements in ion Beam Therapy

机译:用于离子束治疗质量保证测量的平板探测器的研究

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摘要

Increased accuracy in radiation delivery to a patient provided by scanning particle beams leads to high demands on quality assurance (QA). To meet the requirements, an extensive quality assurance programme has been implemented at the Heidelberg Ion Beam Therapy Center. Currently, high-resolution radiographic films are used for beam spot position measurements and homogeneity measurements for scanned fields. However, given that using this film type is time and equipment demanding, considerations have been made to replace the radiographic films in QA by another appropriate device. In this study, the suitability of the flat-panel detector RID 256 L based on amorphous silicon was investigated as an alternative method. The currently used radiographic films were taken as a reference. Investigations were carried out for proton and carbon ion beams. The detectors were irradiated simultaneously to allow for a direct comparison. The beam parameters (e.g. energy, focus, position) currently used in the daily QA procedures were applied. Evaluation of the measurements was performed using newly implemented automatic routines. The results for the flat-panel detector were compared to the standard radiographic films. Additionally, a field with intentionally decreased homogeneity was applied to test the detector's sensitivities toward possible incorrect scan parameters. For the beam position analyses, the flat-panel detector results showed good agreement with radiographic films. For both detector types, deviations between measured and planned spot distances were found to be below 1% (1 mm). In homogeneously irradiated fields, the flat-panel detector showed a better dose response homogeneity than the currently used radiographic film. Furthermore, the flat-panel detector is sensitive to field irregularities. The flat-panel detector was found to be an adequate replacement for the radiographic film in QA measurements. In addition, it saves time and equipment because no post-exposure treatment and no developer and darkroom facilities are needed.
机译:通过扫描粒子束提高了向患者的放射线传输的准确性,从而导致对质量保证(QA)的高要求。为了满足要求,海德堡离子束治疗中心已实施了广泛的质量保证计划。当前,高分辨率射线照相胶片用于束斑位置测量和扫描场的均匀性测量。但是,考虑到使用这种胶片类型需要时间和设备,已经考虑了用另一种合适的设备来代替QA中的射线照相胶片。在这项研究中,作为替代方法,研究了基于非晶硅的平板探测器RID 256 L的适用性。以目前使用的射线照相胶片为参考。对质子和碳离子束进行了研究。同时照射检测器以进行直接比较。应用了日常质量检查程序中当前使用的光束参数(例如能量,焦点,位置)。使用新近实现的自动例程对测量值进行评估。将平板探测器的结果与标准射线照相胶片进行比较。另外,使用故意降低的同质性的场来测试检测器对可能不正确的扫描参数的敏感性。对于光束位置分析,平板探测器的结果与射线照相胶片显示出良好的一致性。对于这两种探测器类型,测得的和计划的光点距离之间的偏差均小于1%(1 mm)。在均匀照射的区域中,平板检测器显示出比目前使用的射线照相胶片更好的剂量响应均匀性。此外,平板检测器对场不规则敏感。发现平板检测器可以在QA测量中替代射线照相胶片。此外,由于不需要后期处理,也不需要显影剂和暗室设施,因此节省了时间和设备。

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