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A proposed method for linear accelerator photon beam steering using EPID

机译:一种使用EPID的线性加速器光子束转向的建议方法

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Beam steering is the process of calibrating the angle and translational position with which a linear accelerator's (linac's) electron beam strikes the x‐ray target with respect to the collimator rotation axis. The shape of the dose profile is highly dependent on accurate beam steering and is essential for ensuring correct delivery of the radiotherapy treatment plan. Traditional methods of beam steering utilize a scanning water tank phantom that makes the process user‐dependent. This study is the first to provide a methodology for both beam angle steering and beam translational position steering based on EPID imaging of the beam and does not require a phantom. Both the EPID‐based beam angle steering and beam translational steering methods described have been validated against IC Profiler measurement. Wide field symmetry agreement was found between the EPID and IC Profiler to within 0.06?±?0.14% (1 SD) and 0.32?±?0.11% (1?SD) for flattened and flattening‐filter‐free (FFF) beams, respectively. For a 1.1% change in symmetry measured by IC Profiler the EPID method agreed to within 0.23%. For beam translational position steering, the EPID method agreed with IC Profiler method to within 0.03?±?0.05?mm (1 SD) at isocenter. The EPID‐based methods presented are quick to perform, simple, accurate and could easily be integrated with the linac, potentially via the MPC application. The methods have the potential to remove user variability and to standardize the process of beam steering throughout the radiotherapy community.
机译:光束控制是校准直线加速器(直线加速器)电子束相对于准直仪旋转轴撞击X射线目标的角度和平移位置的过程。剂量分布图的形状高度依赖于精确的射束转向,对于确保正确放疗计划至关重要。传统的光束转向方法利用扫描水箱体模,使过程取决于用户。这项研究是第一个基于光束的EPID成像提供光束角度转向和光束平移位置转向的方法的方法,并且不需要模型。所描述的基于EPID的光束角转向和光束平移转向方法均已针对IC Profiler测量进行了验证。在平坦和无平坦滤波器的光束中,EPID和IC Profiler之间的宽场对称一致性分别在0.06±0.14%(1 SD)和0.32±0.11%(1SD)之间。 。对于通过IC Profiler测量的1.1%的对称性变化,EPID方法同意在0.23%之内。对于光束平移位置转向,EPID方法与IC Profiler方法一致,等角点在0.03?±?0.05?mm(1 SD)范围内。所介绍的基于EPID的方法执行起来快速,简单,准确,并且可以很容易地通过MPC应用程序与直线加速器集成。这些方法有可能消除用户的可变性,并使整个放疗界的光束转向过程标准化。

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