Program in Radiological and Medical Laboratory Sciences, Nagoya University Graduate School of Medicine, Nagoya, Japan. m
Phys Med Biol. 2010 Jun 7;55(11):3101-13. doi: 10.1088/0031-9155/55/11/008. Epub 2010 May 12.
The purpose of the study is to evaluate the limiting velocity (LV) of a multileaf collimator and the leaf position in various collimator and gantry angles. Both leading leaves and trailing leaves began to move with a constant acceleration from 0 to 4 cm s(-1). When the beam hold occurred, the leaf velocity was defined as the leaf LV. Dynamic irradiation was performed at eight gantry angles of every 45 degrees with three different collimator angles. The analysis of the LV and the leaf position was performed with a log file from a leaf motion controller. The mean LVs for Varian Clinac 21EX (21EX) ranged from 2.51 to 3.10 cm s(-1). The mean LVs for Clinac 600C ranged from 2.91 to 3.12 cm s(-1). When only central 5 mm leaves of 21EX moved, LVs were significantly higher than those when all 60 pairs of leaf moved, while the leaf position inconsistencies of the two accelerators were within 1 mm at the leaf velocities from 0.5 to 2.0 cm s(-1). It was recognized that the LV was affected by gravity. This measurement method can be utilized as routine quality assurance for a dynamic multileaf collimator (DMLC) is and easily reproducible.
本研究旨在评估多叶准直器的限速 (LV) 和在各种准直器和机架角度下叶片的位置。前、后叶片均以 0 至 4 cm/s 的恒定加速度开始运动。当光束保持时,叶片速度定义为叶片 LV。在八个机架角度每 45 度进行动态照射,使用三个不同的准直器角度。使用叶片运动控制器的日志文件对 LV 和叶片位置进行分析。瓦里安 Clinac 21EX(21EX)的平均 LV 范围为 2.51 至 3.10 cm/s。Clinac 600C 的平均 LV 范围为 2.91 至 3.12 cm/s。当仅移动 21EX 的中央 5 毫米叶片时,LV 明显高于所有 60 对叶片移动时的 LV,而两个加速器在叶片速度为 0.5 至 2.0 cm/s 时,叶片位置的不一致性在 1 毫米以内。认识到 LV 受重力影响。这种测量方法可作为动态多叶准直器 (DMLC) 的常规质量保证方法,并且易于重现。