Tsai J S, Curran B H, Sternick E S, Engler M J
Department of Radiation Oncology, Tufts University School of Medicine and New England Medical Center, Boston, MA 02111, USA.
Int J Radiat Oncol Biol Phys. 1996 Jan 1;34(1):189-95. doi: 10.1016/0360-3016(95)02085-3.
The small motions of the major axes of a linear accelerator observed during gantry and treatment table rotation were measured to improve beam-target alignment during stereotactic radiosurgery (SRS).
Measurements of gantry isocenter motion and table rotational axis wobble were performed with an adjustable front pointer and a three-micrometer device. Nominal gantry and table isocenters were specified. The gantry motion path and table isocenter coordinates were then applied to offset simulated treatment target coordinates so as to compensate for gantry sag. Target simulation films were examined to document improvement of beam-target alignment.
The overall precision of the measurement of gantry and table isocenter coordinates was 0.2 mm. Over gantry rotation of 0 to 360 degrees, the gantry isocenter was found to follow a pinched loop with a maximum point to point distance of 1 mm. Table axis motion was found to be negligible relative to the reproducibility of gantry isocenter motion. Thus, a table isocenter was defined that was invariant to table rotation.
Results indicate that the three-micrometer device and adjustable front pointer are useful tools for three-dimensional (3D) mapping of gantry, collimator and table isocenters and their motions. It is suggested that such measurements may be useful in the quality assurance of linear accelerators, particularly to improve beam-target alignment during SRS and other high dose external beam therapy.
测量直线加速器在机架和治疗床旋转过程中观察到的长轴微小运动,以改善立体定向放射外科(SRS)期间的射束-靶区对准。
使用可调节的前指针和三微米装置测量机架等中心运动和治疗床旋转轴摆动。指定了标称的机架和治疗床等中心。然后将机架运动路径和治疗床等中心坐标应用于偏移模拟治疗靶区坐标,以补偿机架下垂。检查靶区模拟胶片以记录射束-靶区对准的改善情况。
机架和治疗床等中心坐标测量的总体精度为0.2毫米。在机架0至360度旋转过程中,发现机架等中心遵循一个收缩环,最大点对点距离为1毫米。相对于机架等中心运动的可重复性,发现治疗床轴运动可忽略不计。因此,定义了一个对治疗床旋转不变的治疗床等中心。
结果表明,三微米装置和可调节的前指针是用于机架、准直器和治疗床等中心及其运动的三维(3D)映射的有用工具。建议此类测量可能在线性加速器的质量保证中有用,特别是在SRS和其他高剂量外照射治疗期间改善射束-靶区对准。