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使用电子射野影像装置(EPID)对直线加速器的机械等中心和辐射等中心进行评估。

The linear accelerator mechanical and radiation isocentre assessment with an electronic portal imaging device (EPID).

作者信息

Liu G, van Doorn T, Bezak E

机构信息

Department of Medical Physics, Royal Adelaide Hospital, Adelaide, Australia.

出版信息

Australas Phys Eng Sci Med. 2004 Sep;27(3):111-7. doi: 10.1007/BF03178670.

Abstract

Regular checks on the performance of radiotherapy treatment units are essential and a variety of protocols has been published. These protocols identify that the determination of isocentre must be accurate and unambiguous since both the localization of a radiation field on a patient and positioning aids are referenced to it. An EPID (BIS 710) with a combined light and radiation scintillation detector screen was used to assess mechanical and radiation isocentres for different collimator and gantry angles. Crosshair positions within light field images were determined from fitted Gaussian intensity profiles and then used to calculate the displacement of the mechanical isocentre. For comparison, the position of the crosshair was also recorded on a graph paper. The radiation field centre was first calculated from the set up geometry for given gantry/collimator angles and then compared with measured values to assess the displacement of the radiation isocentre. The radiation isocentre was also checked by locating a marker, positioned on the couch, on the EPID radiation images for different treatment couch angles. The mechanical and radiation isocentres were determined from the EPID light field and radiation images respectively with an accuracy of 0.3 mm using simple PC based programs. The study has demonstrated the feasibility of using the EPID to assess mechanical and radiation isocentres of a linear accelerator in a quick and efficient way with a higher degree of accuracy achieved as compared to more conventional methods, e.g. the star shot.

摘要

定期检查放射治疗设备的性能至关重要,并且已经发布了各种协议。这些协议表明,等中心的确定必须准确无误,因为辐射野在患者身上的定位以及定位辅助装置均以此为参考。使用带有组合光和辐射闪烁探测器屏幕的电子射野影像装置(EPID,BIS 710)来评估不同准直器和机架角度下的机械等中心和辐射等中心。从拟合的高斯强度分布确定光野图像内的十字线位置,然后用于计算机械等中心的位移。为作比较,十字线的位置也记录在坐标纸上。首先根据给定机架/准直器角度的设置几何形状计算辐射野中心,然后与测量值进行比较,以评估辐射等中心的位移。还通过在不同治疗床角度的EPID辐射图像上定位位于治疗床上的标记来检查辐射等中心。使用基于简单PC的程序,分别从EPID光野和辐射图像确定机械等中心和辐射等中心,精度为0.3毫米。该研究证明了使用EPID以快速有效的方式评估直线加速器的机械等中心和辐射等中心的可行性,与更传统的方法(例如星射法)相比,实现了更高的精度。

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