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Beam perturbation characteristics of a 2D transmission silicon diode array Magic Plate

机译:2D透射硅二极管阵列Magic Plate的光束摄动特性

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摘要

The main objective of this study is to demonstrate the performance characteristics of the Magic Plate (MP) system when operated upstream of the patient in transmission mode (MPTM). The MPTM is an essential component of a real‐time QA system designed for operation during radiotherapy treatment. Of particular interest is a quantitative study into the influence of the MP on the radiation beam quality at several field sizes and linear accelerator potential differences. The impact is measured through beam perturbation effects such as changes in the skin dose and/or percentage depth dose (PDD) (both in and out of field). The MP was placed in the block tray of a Varian linac head operated at 6, 10 and 18 MV beam energy. To optimize the MPTM operational setup, two conditions were investigated and each setup was compared to the case where no MP is positioned in place (i.e., open field): (i) MPTM alone and (ii) MPTM with a thin passive contamination electron filter. The in‐field and out‐of‐field surface doses of a solid water phantom were investigated for both setups using a Markus plane parallel (Model ) and Attix parallel‐plate, MRI model 449 ionization chambers. In addition, the effect on the 2D dose distribution measured by the Delta4 QA system was also investigated. The transmission factor for both of these MPTM setups in the central axis was also investigated using a Farmer ionization chamber (Model 2571A) and an Attix ionization chamber. Measurements were performed for different irradiation field sizes of 5 × 5 cm2 and 10 × 10 cm2. The change in the surface dose relative to dmax was measured to be less than 0.5% for the 6 MV, 10 MV, and 18 MV energy beams. Transmission factors measured for both set ups (i & ii above) with 6 MV, 10 MV, and 18 MV at a depth of dmax and a depth of 10 cm were all within 1.6% of open field. The impact of both the bare MPTM and the MPTM with 1 mm buildup on 3D dose distribution in comparison to the open field investigated using the Delta4 system and both the MPTM versions passed standard clinical gamma analysis criteria. Two MPTM operational setups were studied and presented in this article. The results indicate that both versions may be suitable for the new real‐time megavoltage photon treatment delivery QA system under development. However, the bare MPTM appears to be slightly better suited of the two MP versions, as it minimally perturbs the radiation field and does not lead to any significant increase in skin dose to the patient.PACS number(s): 87.50.up, 87.53.Bn, 87.55.N, 87.55.Qr, 87.56.Fc.
机译:这项研究的主要目的是证明魔术板(MP)系统在以传输模式(MPTM)在患者上游操作时的性能特征。 MPTM是实时质量保证系统的重要组成部分,旨在在放射治疗期间进行操作。特别令人感兴趣的是在几个场尺寸和线性加速器电势差下,MP对辐射束质量的影响的定量研究。通过束扰动效应(例如皮肤剂量和/或深度百分比剂量(PDD)的变化(在场内和场外))来测量影响。将MP放置在以6、10和18 MV束能量运行的Varian直线加速器头部的块状托盘中。为了优化MPTM操作设置,研究了两个条件,并将每个设置与没有MP放置到位的情况(即开场)进行了比较:(i)仅MPTM和(ii)带有薄型无源污染电子滤波器的MPTM 。使用Markus平行平面(Model)和Attix平行平板MRI 449型电离室对两种设置的固体水体模的场内和场外剂量进行了研究。此外,还研究了对Delta 4 QA系统测量的二维剂量分布的影响。还使用Farmer电离室(2571A型)和Attix电离室研究了这两种MPTM设置在中心轴上的传输系数。对5×5 cm 2 和10×10 cm 2 的不同照射场大小进行测量。对于6 MV,10 MV和18 MV能量束,相对dmax的表面剂量变化测得小于0.5%。在dmax深度和10 cm深度使用6 MV,10 MV和18 MV的两种设置(上述i和ii)测得的传输系数都在开放视野的1.6%之内。与使用Delta 4 系统研究的开阔野外相比,裸露的MPTM和堆积1 mm的MPTM对3D剂量分布的影响,并且两个MPTM版本均通过了标准的临床伽马分析标准。本文研究并介绍了两种MPTM操作设置。结果表明,这两种版本均适用于正在开发的新型实时兆伏光子治疗交付质量保证系统。然而,裸露的MPTM似乎更适合两种MP版本,因为它最小程度地干扰了辐射场,并且不会导致对患者的皮肤剂量有任何显着增加.PACS数量:87.50.up,87.53 .Bn,87.55.N,87.55.Qr,87.56.Fc。

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