Department of Radiation Physics, The University of Texas MD Anderson Cancer Center, Houston, Texas 77030, USA.
Med Phys. 2011 Aug;38(8):4575-8. doi: 10.1118/1.3609098.
The isocenter accuracy of a linear accelerator is often assessed with star-shot films. This approach is limited in its ability to quantify three dimensional wobble of radiation field centers (RFCs). The authors report a Winston-Lutz based method to measure the 3D wobble of RFCs during gantry rotation, collimator rotation, and collimator field size change.
A stationary ball-bearing phantom was imaged using multileaf collimator-shaped radiation fields at various gantry angles, collimator angles, and field sizes. The center of the ball-bearing served as a reference point, to which all RFCs were localized using a computer algorithm with sub-pixel accuracy. Then, the gantry rotation isocenter and the collimator rotation axis were derived from the coordinates of these RFCs. Finally, the deviation or wobble of the individual RFC from the derived isocenter or rotation axis was quantified.
The results showed that the RFCs were stable as the field size of the multileaf collimator was varied. The wobble of RFCs depended on the gantry angle and the collimator angle and was reproducible, indicating that the mechanical imperfections of the linac were mostly systematic and quantifiable. It was found that the 3D wobble of RFCs during gantry rotation was reduced after compensating for a constant misalignment of the multileaf collimator.
The 3D wobble of RFCs can be measured with submillimeter precision using the proposed method. This method provides a useful tool for checking and adjusting the radiation isocenter tightness of a linac.
直线加速器的等中心准确性通常通过星状射野片进行评估。这种方法在量化辐射野中心(RFC)三维摆动方面能力有限。作者报告了一种基于 Winston-Lutz 的方法,用于测量在机架旋转、准直器旋转和准直器射野大小变化期间 RFC 的三维摆动。
使用多叶准直器形状的射野,在不同的机架角度、准直器角度和射野大小下对固定的球轴承体模进行成像。球轴承的中心作为参考点,使用具有亚像素精度的计算机算法对所有 RFC 进行定位。然后,从这些 RFC 的坐标中推导出机架旋转等中心和准直器旋转轴。最后,量化每个 RFC 相对于推导出的等中心或旋转轴的偏差或摆动。
结果表明,当多叶准直器的射野大小变化时,RFC 是稳定的。RFC 的摆动取决于机架角度和准直器角度,并且具有可重复性,这表明直线加速器的机械缺陷主要是系统性和可量化的。发现补偿多叶准直器的恒定失准后,机架旋转期间 RFC 的三维摆动减小。
可以使用提出的方法以亚毫米精度测量 RFC 的三维摆动。该方法为检查和调整直线加速器的辐射等中心精度提供了有用的工具。