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使用非晶硅电子射野影像装置进行补偿器质量控制。

Compensator quality control with an amorphous silicon EPID.

作者信息

Menon Geetha V, Sloboda Ron S

机构信息

Department of Physics, University of Alberta, Edmonton, Alberta, T6G 2E1, Canada.

出版信息

Med Phys. 2003 Jul;30(7):1816-24. doi: 10.1118/1.1584040.

Abstract

The calibration and quality control of compensators is conventionally performed with an ion chamber in a water-equivalent phantom. In our center, the compensator factor and four off-axis fluence ratios are measured to verify the central axis beam modulation and orientation of the compensator. Here we report the investigation of an alternative technique for compensator quality control using an amorphous silicon electronic portal imaging device (a-Si EPID). Preliminary experiments were performed to identify appropriate EPID operating parameters for this relative dosimetric study and also to quantify EPID operation. The pixel value versus energy fluence response of the EPID for both open and compensated fields was then determined, and expressed via calibration curves. For open fields the response was seen to be linear, whereas for compensated fields it exhibited a small quadratic component. To account for field size effects, we measured EPID scatter factors. These exhibited small but non-negligible dependencies on compensator thickness and source-detector distance. Finally, a number of test and clinical compensators were evaluated to assess the suitability of the EPID for compensator quality control. Our results indicate that the a-Si EPID can measure clinical compensator factors and off-axis energy fluence ratios to within 2% of values measured by a Farmer chamber on average, and so is a suitable ion chamber replacement.

摘要

补偿器的校准和质量控制传统上是在水等效体模中使用电离室进行的。在我们中心,测量补偿器因子和四个离轴注量比,以验证补偿器的中心轴束调制和方向。在此,我们报告了一项使用非晶硅电子射野影像装置(a-Si EPID)进行补偿器质量控制的替代技术的研究。进行了初步实验,以确定用于这项相对剂量学研究的合适的EPID操作参数,并对EPID操作进行量化。然后确定了EPID对于开放野和补偿野的像素值与能量注量响应,并通过校准曲线表示。对于开放野,响应呈线性,而对于补偿野,它表现出一个小的二次分量。为了考虑射野大小的影响,我们测量了EPID散射因子。这些因子对补偿器厚度和源-探测器距离表现出小但不可忽略的依赖性。最后,评估了一些测试补偿器和临床补偿器,以评估EPID用于补偿器质量控制的适用性。我们的结果表明,a-Si EPID能够测量临床补偿器因子和离轴能量注量比,平均而言,其测量值与Farmer电离室测量值的偏差在2%以内,因此是一种合适的电离室替代物。

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