Yang B, Wong W K R, Geng H, Lam W W, Ho Y W, Kwok W M, Cheung K Y, Yu S K
Medical Physics and Research Department, Hong Kong Sanatorium & Hospital, 2 Village Road, Happy Valley, Hong Kong.
Biomedical Engineering Department, Hong Kong Sanatorium & Hospital, 2 Village Road, Happy Valley, Hong Kong.
Med Phys. 2017 Jan;44(1):7-16. doi: 10.1002/mp.12009. Epub 2017 Jan 3.
Tomotherapy delivers an intensity-modulated radiation therapy (IMRT) treatment by the synchronization of gantry rotation, multileaf collimator (MLC), and couch movement. This dynamic nature makes the quality assurance (QA) important and challenging. The purpose of this study is to develop some methodologies using an ArcCHECK for accurate QA measurements of the gantry angle and speed, MLC synchronization and leaf open time, couch translation per gantry rotation, couch speed and uniformity, and constancy of longitudinal beam profile for a Tomotherapy unit.
Four test plans recommended by AAPM Task Group 148 (TG148) and the manufacturer were chosen for this study. Helical and static star shot tests are used for checking the leaves opened at the expected gantry angles. Another helical test is to verify the couch traveled the expected distance per gantry rotation. The final test is for checking the couch speed constancy with a static gantry. ArcCHECK can record the detector signal every 50 ms as a movie file, and has a virtual inclinometer for gantry angle measurement. These features made the measurement of gantry angle and speed, MLC synchronization and leaf open time, and longitudinal beam profile possible. A shaping parameter was defined for facilitating the location of the beam center during the plan delivery, which was thereafter used to calculate the couch translation per gantry rotation and couch speed. The full width at half maximum (FWHM) was calculated for each measured longitudinal beam profile and then used to evaluate the couch speed uniformity. Furthermore, a mean longitudinal profile was obtained for constancy check of field width. The machine trajectory log data were also collected for comparison. Inhouse programs were developed in MATLAB to process both the ArcCHECK and machine log data.
The deviation of our measurement results from the log data for gantry angle was calculated to be less than 0.4°. The percentage differences between measured and planned leaf open time were found to be within 0.5% in all the tests. Our results showed mean values of MLC synchronization of 0.982, 0.983, and 0.995 at static gantry angle 0°, 45°, and 135°, respectively. The mean value of measured couch translation and couch speed by ArcCHECK had less than 0.1% deviation from the planned values. The variation in the value of FWHM suggested the couch speed uniformity was better than 1%. The mean of measured longitudinal profiles was suitable for constancy check of field width.
Precise and efficient methods for measuring the gantry angle and speed, leaf open time, couch translation per gantry rotation, couch speed and uniformity, and constancy of longitudinal beam profile of Tomotherapy using ArcCHECK have been developed and proven to be accurate compared with machine log data. Estimation of the Tomotherapy binary MLC leaf open time is proven to be precise enough to verify the leaf open time as small as 277.8 ms. Our method also makes the observation and quantification of the synchronization of leaves possible.
断层放射治疗通过机架旋转、多叶准直器(MLC)和治疗床运动的同步来实施调强放射治疗(IMRT)。这种动态特性使得质量保证(QA)既重要又具有挑战性。本研究的目的是开发一些使用ArcCHECK的方法,用于对断层放射治疗设备的机架角度和速度、MLC同步和叶片打开时间、每机架旋转的治疗床平移、治疗床速度和均匀性以及纵向射束轮廓的稳定性进行准确的QA测量。
本研究选择了美国医学物理师协会任务组148(TG148)和制造商推荐的四个测试计划。螺旋和静态星射测试用于检查在预期机架角度打开的叶片。另一个螺旋测试是验证每机架旋转治疗床行进的预期距离。最后一个测试是使用静止机架检查治疗床速度的稳定性。ArcCHECK可以每50毫秒记录一次探测器信号作为电影文件,并且有一个用于测量机架角度的虚拟测斜仪。这些特性使得测量机架角度和速度、MLC同步和叶片打开时间以及纵向射束轮廓成为可能。定义了一个整形参数以方便在计划执行期间确定射束中心的位置,此后用于计算每机架旋转的治疗床平移和治疗床速度。为每个测量的纵向射束轮廓计算半高全宽(FWHM),然后用于评估治疗床速度均匀性。此外,获得平均纵向轮廓以检查射野宽度的稳定性。还收集了机器轨迹日志数据用于比较。在MATLAB中开发了内部程序来处理ArcCHECK和机器日志数据。
计算得出我们测量的机架角度结果与日志数据的偏差小于0.4°。在所有测试中,测量的和计划的叶片打开时间之间的百分比差异在0.5%以内。我们的结果显示,在静态机架角度0°、45°和135°时,MLC同步的平均值分别为0.982、0.983和0.995。通过ArcCHECK测量的治疗床平移和治疗床速度的平均值与计划值的偏差小于0.1%。FWHM值的变化表明治疗床速度均匀性优于1%。测量的纵向轮廓平均值适用于射野宽度稳定性的检查。
已经开发出使用ArcCHECK测量断层放射治疗的机架角度和速度、叶片打开时间、每机架旋转的治疗床平移、治疗床速度和均匀性以及纵向射束轮廓稳定性的精确且高效的方法,并且与机器日志数据相比已证明是准确的。事实证明,断层放射治疗二进制MLC叶片打开时间的估计足够精确,能够验证小至277.8毫秒的叶片打开时间。我们的方法还使得观察和量化叶片同步成为可能。