首页> 外文期刊>Australasian physical & engineering sciences in medicine >Practical beam steering of X‑ray beams on Elekta accelerators: The effect of focal spot alignment on beam (symmetry and position) and radiation isocentre (size and position)
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Practical beam steering of X‑ray beams on Elekta accelerators: The effect of focal spot alignment on beam (symmetry and position) and radiation isocentre (size and position)

机译:ELEKTA加速器X射线梁的实用梁转向:焦点对准对梁(对称性和位置)和辐射Isocentre(尺寸和位置)的影响

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Acceptance and commissioning of a linear accelerator is the process of preparing it for clinical use. One of the initial important dosimetric tasks for X-ray beam set-up and use is to optimise the trajectory of the electron beam before it hits the target (focal spot). The main purpose of this study is to characterise the effect of the focal spot position (offset) on the photon beam symmetry and centre position, as well as on linac radiation isocentre size and position for an Elekta Synergy (R) linac. For this machine, the initial electron beam steering control items2TandBending Fwere altered to steer the beam in both transverse and radial directions respectively. The IC Profiler (TM) was utilised to measure the photon beam symmetry and centre position; the electronic portal imaging device (EPID) and the authors' published ready-to-go procedure were used to measure the focal spot offset; and the radiation isocentre size and position were measured using the EPID, the Elekta ball-bearing phantom and in-house software. It was observed that for the 6MV beam investigated, beam symmetry shows a high dependency on the focal spot position, with correlation coefficients of 8.6%/mm and 5.6%/mm in transverse and radial directions respectively. The radiation isocentre size shows dependency of 1.7 mm/mm on focal spot position in the transverse direction only. The radiation isocentre longitudinal position shows dependency of - 1.8 mm/mm on the focal spot position in the radial direction only. The beam centre position is directly correlated with the focal spot position in both directions, but the correlation coefficient depends on the collimation used in a given direction i.e. MLC (- 1.5 mm/mm) or diaphragms (- 0.8 mm/mm). Based on the results, a fast beam steering method was proposed and used successfully on an Elekta Versa HD (TM) linac, utilizing the IC Profiler (TM) and its associated Gantry Mounting Fixture (TM) (GMF) to efficiently and effectively optimise beam steering parameters for clinical use. Independent validation of the method showed that focal spot offsets and beam symmetries in terms of absolute deviations were on average 0.08 +/- 0.05 mm (1SD) and 0.70 +/- 0.27% (1SD) respectively.
机译:接受和调试线性加速器是准备临床使用的过程。 X射线束设置和使用的初始重要剂量任务之一是在击中目标(焦点)之前优化电子束的轨迹。本研究的主要目的是表征焦点位置(偏移)对光子束对称和中心位置的影响,以及LINAC辐射Isocentre大小和Elekta Synergy(R)Linac的位置。对于该机器,初始电子束转向控制项目2tand结案FWERE分别改变以分别以横向和径向的方式转向光束。 IC分析仪(TM)用于测量光子波束对称和中心位置;电子门户映像设备(EPID)和作者发表的即时程序用于测量焦点偏移;使用EPID,ELEKTA滚珠丝体和内部软件测量辐射isocentre尺寸和位置。观察到,对于6MV光束研究,光束对称性显示出对焦点位置的高依赖性,横向和径向分别具有8.6%/ mm和5.6%/ mm的相关系数。辐射isocentre大小仅示出了仅在横向方向上的焦点位置对1.7mm / mm的依赖性。辐射IsocentRe纵向位置仅在径向方向上显示焦点位置的依赖性 - 1.8mm / mm。光束中心位置与两个方向上的焦点位置直接相关,但相关系数取决于给定方向上使用的准直,即MLC( - 1.5mm / mm)或隔膜( - 0.8mm / mm)。基于结果,提出了一种快速光束转向方法,并在Elekta Versa HD(TM)LinaC上成功地使用,利用IC分析器(TM)及其相关的龙门安装夹具(TM)(GMF),以有效且有效地优化光束用于临床用途的转向参数。该方法的独立验证表明,在绝对偏差方面的焦点偏移和光束对称分别平均为0.08 +/- 0.05 mm(1SD)和0.70 +/- 0.27%(1SD)。

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