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首页> 外文期刊>Journal of synchrotron radiation >Energy spectra considerations for synchrotron radiotherapy trials on the ID17 bio-medical beamline at the European Synchrotron Radiation Facility
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Energy spectra considerations for synchrotron radiotherapy trials on the ID17 bio-medical beamline at the European Synchrotron Radiation Facility

机译:欧洲同步加速器辐射设施在ID17生物医学射线线上进行同步加速器放疗试验的能谱注意事项

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The aim of this study was to validate the kilovoltage X-ray energy spectrum on the ID17 beamline at the European Synchrotron Radiation Facility (ESRF). The purpose of such validation was to provide an accurate energy spectrum as the input to a computerized treatment planning system, which will be used in synchrotron microbeam radiotherapy trials at the ESRF. Calculated and measured energy spectra on ID17 have been reported previously but recent additions and safety modifications to the beamline for veterinary trials warranted a fresh investigation. The authors used an established methodology to compare X-ray attenuation measurements in copper sheets (referred to as half value layer measurements in the radiotherapy field) with the predictions of a theoretical model. A cylindrical ionization chamber in air was used to record the relative attenuation of the X-ray beam intensity by increasing thicknesses of high-purity copper sheets. The authors measured the half value layers in copper for two beamline configurations, which corresponded to differing spectral conditions. The authors obtained good agreement between the measured and predicted half value layers for the two beamline configurations. The measured first half value layer was 1.754 +/- 0.035 mm Cu and 1.962 +/- 0.039 mm Cu for the two spectral conditions, compared with theoretical predictions of 1.763 +/- 0.039 mm Cu and 1.984 +/- 0.044 mm Cu, respectively. The calculated mean energies for the two conditions were 105 keV and 110 keVand there was not a substantial difference in the calculated percentage depth dose curves in water between the different spectral conditions. The authors observed a difference between their calculated energy spectra and the spectra previously reported by other authors, particularly at energies greater than 100 keV. The validation of the beam spectrum by the copper half value layer measurements means the authors can provide an accurate spectrum as an input to a treatment planning system for the forthcoming veterinary trials of microbeam radiotherapy to spontaneous tumours in cats and dogs.
机译:这项研究的目的是验证欧洲同步辐射装置(ESRF)在ID17光束线上的千伏X射线能谱。这种验证的目的是提供准确的能谱作为计算机化治疗计划系统的输入,该系统将用于ESRF的同步加速器微束放射治疗试验中。先前已经报道了在ID17上计算和测量的能谱,但是最近对兽用射线束的增加和安全性修改值得重新研究。作者使用一种既定的方法将铜片中的X射线衰减测量值(在放射治疗领域称为半值层测量值)与理论模型的预测值进行比较。空气中的圆柱电离室用于通过增加高纯度铜片的厚度来记录X射线束强度的相对衰减。作者测量了两种光束线配置的铜的半值层,这对应于不同的光谱条件。作者在两种光束线配置的测量值半值层和预测值半值层之间取得了良好的一致性。在两个光谱条件下,测得的上半值层分别为1.754 +/- 0.035 mm Cu和1.962 +/- 0.039 mm Cu,而理论预测分别为1.763 +/- 0.039 mm Cu和1.984 +/- 0.044 mm Cu 。两种条件下计算出的平均能量分别为105 keV和110 keV,并且在不同光谱条件下水中计算出的深度剂量百分比曲线没有实质性差异。作者观察到他们计算出的能谱与其他作者先前报道的谱之间存在差异,特别是在能量大于100 keV的情况下。通过铜半值层测量对射束光谱进行验证,意味着作者可以为即将进行的猫和狗自发性肿瘤微束放射疗法兽医试验的治疗计划系统提供准确的光谱。

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