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Systematic Studies on the Beam Stability and the Transient Effect of a Siemens ONCOR Impression Accelerator

机译:西门子ONCOR印象加速器的光束稳定性和瞬态效应的系统研究

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The measurements described here were performed in preparation of an electron linear accelerator ONCOR Impression (Siemens, Concord, USA) for gated irradiation. The gating signal was derived from the system based on a pressure sensor belt (AZ-733V, Anzai Medical, Tokyo, Japan). In a first series of measurements, the stability of the gated beam was studied. For this, dose distributions delivered to a phantom at rest in gated as well as in static accelerator mode were compared. The duty cycles, field sizes and radiation modalities were varied in a wide range. The experiments revealed a maximum depth dose deviation (on the central beam) of less than 0.8 % and a maximum deviation in the lateral dose distribution of 3 %.The transient effect during switching on and off the beam influences the duration of the irradiation, in particular for gated treatment with low duty cycle. This effect is a special feature of each accelerator and depends on the radiation modality. Therefore, the transient effect of the used accelerator was measured and analyzed. A pronounced delay between switching on the irradiation and reaching the dose equilibrium was found for 6 MV X-rays.For periodically moving targets, dose blurring depends on the amplitude of the movement and on the duty cycle. The latter influences substantially the treatment time, thus it is required to find a compromise between precision and duration of the irradiation. Using a moving phantom the dose blurring was analyzed in dependence on the duty cycle.
机译:此处描述的测量是在制备用于门控辐射的电子线性加速器ONCOR Impression(Siemens,Concord,美国)时进行的。选通信号是从基于压力传感器带(AZ-733V,日本安扎伊医疗公司,日本东京)的系统中得出的。在第一系列的测量中,研究了选通光束的稳定性。为此,比较了在门控和静态加速器模式下静止时传送到体模的剂量分布。占空比,场大小和辐射模态在很宽的范围内变化。实验表明,最大深度剂量偏差(在中心光束上)小于0.8%,横向剂量分布的最大偏差为3%。 在打开和关闭光束期间的瞬态效应会影响辐照的持续时间,特别是对于低占空比的门控治疗。这种效果是每个加速器的特殊功能,并取决于辐射模态。因此,对使用过的促进剂的瞬态效应进行了测量和分析。对于6 MV X射线,发现在开启辐照和达到剂量平衡之间存在明显的延迟。 对于周期性移动的目标,剂量模糊取决于运动的幅度和占空比。后者实质上影响了治疗时间,因此需要在照射的精确度和持续时间之间找到折衷方案。使用移动体模,根据占空比分析剂量模糊。

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