首页> 外文期刊>Journal of applied clinical medical physics / >Beam focal spot position: The forgotten linac QA parameter. An EPID‐based phantomless method for routine Stereotactic linac QA
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Beam focal spot position: The forgotten linac QA parameter. An EPID‐based phantomless method for routine Stereotactic linac QA

机译:光束焦点位置:直线加速器QA遗忘的参数。常规立体定向直线加速器质量保证的基于EPID的无幻像方法

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Modern day Stereotactic treatments require high geometric accuracy of the delivered treatment. To achieve the required accuracy the IGRT imaging isocenter needs to closely coincide with the treatment beam isocenter. An influence on this isocenter coincidence and on the spatial positioning of the beam itself is the alignment of the treatment beam focal spot with collimator rotation axis. The positioning of the focal spot is dependent on the linac beam steering and on the stability of the monitor chamber and beam steering servo system. As such, there is the potential for focal spot misalignment and this should be checked on a regular basis. Traditional methods for measuring focal spot position are either indirect, inaccurate, or time consuming and hence impractical for routine use. In this study a novel, phantomless method has been developed using the EPID (Electronic Portal Imaging Device) that utilizes the different heights of the MLC and jaws. The method has been performed on four linear accelerators and benchmarked against an alternate ion chamber-based method. The method has been found to be reproducible to within ±0.012 mm (1 SD) and in agreement with the ion chamber-based method to within 0.001 ± 0.015 mm (1 SD). The method could easily be incorporated into a departmental routine linac QA (Quality Assurance) program.
机译:现代立体定向治疗要求所提供治疗的几何精度高。为了达到所需的精度,IGRT成像等角点必须与治疗束等角点紧密一致。对这种等中心点重合以及对光束本身的空间定位的影响是治疗光束焦点与准直仪旋转轴的对准。焦点的位置取决于直线加速器光束转向以及监视室和光束转向伺服系统的稳定性。因此,可能会出现焦点未对准的情况,应定期检查。测量焦点位置的传统方法是间接的,不准确的或费时的,因此对于常规使用是不切实际的。在这项研究中,使用EPID(电子门户成像设备)开发了一种新颖的无幻影方法,该方法利用了MLC和颌骨的不同高度。该方法已在四个线性加速器上执行,并且以基于替代离子室的方法作为基准。已发现该方法的重现性在±0.012 mm(1 SD)之内,并且与基于离子室的方法一致,在0.001±0.015 mm(1 SD)之内。该方法可以轻松地纳入部门常规直线加速器质量保证程序中。

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