van Appeldoorn Adriaan Abraham, Kok Johannes Gerardus Maria, Wolthaus Jochem Willem Heiko
Department of Radiotherapy, University Medical Center Utrecht, Utrecht, Netherlands.
J Appl Clin Med Phys. 2025 Mar;26(3):e14598. doi: 10.1002/acm2.14598. Epub 2025 Jan 8.
This paper describes a method to improve gantry-dependent beam steering for Elekta traveling wave linear accelerators by applying the measured and filtered beam servo corrections to the existing lookup table (LUT). Beam steering has a direct influence on the treatment accuracy by affecting the beam symmetry and position. The presented method provides an improved LUT with respect to the default Elekta method to reduce treatment delivery interruptions. These interruptions are known to contribute to unwanted intrafraction motion and longer treatment times.
Compared to the default method of the manufacturer, this new method takes both clockwise and counterclockwise rotation to compensate for magnetic hysteresis as well as previous configuration and noise filtering into account. The improved method to determine the lookup table uses service graphing information from the linac without the need for additional symmetry information. The clinical configuration of the flattened beam energies remains untouched during the data record.
This method results in a configuration where the gantry-dependent steering is optimized over the full arc with optimal balance in the hysteresis and minimizing the effect of errors in the steering values. This method is a less error-prone process compared to the methodology described in previous research, still achieving a reduction of interruption of about 60 percent compared to the Elekta method.
This study shows a simplified way to optimize linac stability with improved LUT. The optimized LUT results in a lower number of interruptions, preventing downtime, and a lower risk of intrafraction motion due to longer treatment time.
本文描述了一种通过将测量并滤波后的束流伺服校正应用于现有查找表(LUT)来改进医科达行波直线加速器中机架相关束流转向的方法。束流转向通过影响束流对称性和位置对治疗精度有直接影响。所提出的方法相对于医科达的默认方法提供了一个改进的查找表,以减少治疗过程中的中断。已知这些中断会导致不必要的分次内运动和更长的治疗时间。
与制造商的默认方法相比,这种新方法同时考虑顺时针和逆时针旋转以补偿磁滞以及先前的配置和噪声滤波。确定查找表的改进方法使用直线加速器的服务绘图信息,而无需额外的对称性信息。在数据记录期间,扁平束能量的临床配置保持不变。
该方法产生了一种配置,其中机架相关的转向在整个弧上得到优化,磁滞达到最佳平衡,并且转向值误差的影响最小化。与先前研究中描述的方法相比,该方法出错的可能性较小,与医科达方法相比,仍能减少约60%的中断次数。
本研究展示了一种通过改进查找表来优化直线加速器稳定性的简化方法。优化后的查找表可减少中断次数,避免停机,并降低因治疗时间延长导致的分次内运动风险。