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PORTAL DOSE MEASUREMENT IN RADIOTHERAPY USING AN ELECTRONIC PORTAL IMAGING DEVICE (EPID)

机译:使用电子门影像设备(EPID)进行放射治疗中的门剂量测量

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Physical characteristics of a commercially available electronic portal imaging device (EPID), relevant to dosimetric applications in high-energy photon beams, have been investigated. The EPID basically consists of a fluorescent screen, mirrors and a CCD camera. Image acquisition for portal dose measurement has been performed with a special procedure, written in the command language that comes with the system The observed day-to-day variation in local EPID responses, i.e. measured grey scale value (EPID signal) per unit of delivered portal dose, is 0.4% (1 SD); day-to-day variations in relative EPID responses (e.g. normalized to the on-axis response) are within 0.2% (1 SD). Measured grey scale values are linearly proportional to transmitted portal doses with a proportionality constant which is independent of the thickness of a flat, water-equivalent absorber in the beam, but which does significantly depend on the size of the applied x-ray beam. It is shown that the observed increase in EPID response with increasing field size is mainly due to contributions to the EPID signals from scattered light: visible photons produced by the x-ray beam in a point of the fluorescent screen not only generate a grey scale value in the corresponding point of the EPID image, but also lead (due to scatter from components of the EPID structure onto the CCD chip) to an increased grey scale value at all other points of the image. A point spread function, derived from measured data and describing the increase in EPID response at the beam axis due to off-axis irradiation of the fluorescent screen, has been successfully applied to connect portal doses with grey scale values measured with the EPID. [References: 16]
机译:已经研究了与高能光子束中的剂量学应用有关的市售电子门禁成像设备(EPID)的物理特性。 EPID主要由荧光屏,镜子和CCD摄像机组成。用于门禁剂量测量的图像采集已通过特殊程序执行,该程序以系统随附的命令语言编写。观察到的本地EPID响应的每日变化,即,每交付单位所测得的灰度值(EPID信号)门禁剂量为0.4%(1 SD);相对EPID响应的每日变化(例如标准化为同轴响应)在0.2%(1 SD)以内。测得的灰度值与发射的门剂量线性比例成比例,其比例常数与光束中平坦的等效水吸收体的厚度无关,但在很大程度上取决于所施加的X射线束的大小。结果表明,随着场大小的增加,观察到的EPID响应的增加主要是由于散射光对EPID信号的贡献:X射线束在荧光屏的某个点产生的可见光子不仅会产生灰度值在EPID图像的相应点上,它还会导致(由于从EPID结构的组件散射到CCD芯片上)在图像的所有其他点上的灰度值增加。从测得的数据得出的点扩散函数描述了由于荧光屏的偏轴辐照而导致的光束轴在EPID响应上的增加,该点扩展函数已成功应用于连接门禁剂量和用EPID测量的灰度值。 [参考:16]

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