Department of Radiation Oncology and Image-Applied Therapy, Kyoto University, Kyoto, Japan.
Department of Information Technology and Medical Engineering, Human Health Sciences, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
J Appl Clin Med Phys. 2023 Mar;24(3):e13844. doi: 10.1002/acm2.13844. Epub 2022 Nov 24.
This study performed an automatic measurement of the off-axis beam-positioning accuracy at a single isocenter via the TrueBeam Developer mode and evaluated the beam-positioning accuracy considering the effect of couch rotational errors.
TrueBeam STx and the Winston-Lutz test-dedicated phantom, with a 3 mm diameter steel ball, were used in this study. The phantom was placed on the treatment couch, and the Winston-Lutz test was performed at the isocenter for four gantry angles (0°, 90°, 180°, and 270°) using an electronic portal imaging device. The phantom offset positions were at distances of 0, 25, 50, 75, and 100 mm from the isocenter along the superior-inferior, anterior-posterior, and left-right directions. Seventeen patterns of multileaf collimator-shaped square fields of 10 × 10 mm were created at the isocenter and off-axis positions for each gantry angle. The beam-positioning accuracy was evaluated with couch rotation along the yaw-axis (0°, ± 0.5°, and ± 1.0°).
The mean beam-positioning errors at the isocenter and off-isocenter distances (from the isocenter to ±100 mm) were 0.46-0.60, 0.44-0.91, and 0.42-1.11 mm for the couch angles of 0°, ±0.5°, and ±1°, respectively. The beam-positioning errors increased as the distance from the isocenter and couch rotation increased.
These findings suggest that the beam-positioning accuracy at the isocenter and off-isocenter positions can be evaluated quickly and automatically using the TrueBeam Developer mode. The proposed procedure is expected to contribute to an efficient evaluation of the beam-positioning accuracy at off-isocenter positions.
本研究通过 TrueBeam 开发者模式对单个等中心的离轴射束定位精度进行自动测量,并考虑治疗床旋转误差的影响评估射束定位精度。
本研究使用了 TrueBeam STx 和 Winston-Lutz 测试专用体模,体模上带有一个直径为 3 毫米的钢球。将体模放置在治疗床上,在等中心位置,使用电子射野影像装置(EPID)对四个机架角度(0°、90°、180°和 270°)进行 Winston-Lutz 测试。在与等中心沿上下、前后和左右方向距离为 0、25、50、75 和 100 毫米的位置测量体模的偏移位置。在每个机架角度,在等中心和离轴位置创建 17 个 10×10 毫米的多叶准直器形状的方形射野。评估沿偏航轴(0°、±0.5°和±1.0°)旋转治疗床时的射束定位精度。
在等中心和离轴距离(从等中心到±100 毫米)处,治疗床角度为 0°、±0.5°和±1°时,射束定位误差的平均值分别为 0.46-0.60、0.44-0.91 和 0.42-1.11 毫米。射束定位误差随离中心距离和治疗床旋转的增加而增加。
这些发现表明,使用 TrueBeam 开发者模式可以快速自动评估等中心和离轴位置的射束定位精度。该方法有望为离轴位置的射束定位精度的有效评估做出贡献。