Ling C Clifton, Zhang Pengpeng, Archambault Yves, Bocanek Jiri, Tang Grace, Losasso Thomas
Varian Medical Systems, Palo Alto, CA, USA.
Int J Radiat Oncol Biol Phys. 2008 Oct 1;72(2):575-81. doi: 10.1016/j.ijrobp.2008.05.060.
The Varian RapidArc is a system for intensity-modulated radiotherapy (IMRT) treatment planning and delivery. RapidArc incorporates capabilities such as variable dose-rate, variable gantry speed, and accurate and fast dynamic multileaf collimators (DMLC), to optimize dose conformality, delivery efficiency, accuracy and reliability. We developed RapidArc system commissioning and quality assurance (QA) procedures.
Tests have been designed that evaluate RapidArc performance in a stepwise manner. First, the accuracy of DMLC position during gantry rotation is examined. Second, the ability to vary and control the dose-rate and gantry speed is evaluated. Third, the combined use of variable DMLC speed and dose-rate is studied.
Adapting the picket fence test for RapidArc, we compared the patterns obtained with stationary gantry and in RapidArc mode, and showed that the effect of gantry rotation on leaf accuracy was minimal (< or =0.2 mm). We then combine different dose-rates (111-600 MU/min), gantry speeds (5.5-4.3 degrees /s), and gantry range (Deltatheta = 90-12.9 degrees ) to give the same dose to seven parts of a film. When normalized to a corresponding open field (to account for flatness and asymmetry), the dose of the seven portions show good agreement, with a mean deviation of 0.7%. In assessing DMLC speed (0.46, 0.92, 1.84, and 2.76 cm/s) during RapidArc, the analysis of designed radiation pattern indicates good agreement, with a mean deviation of 0.4%.
The results of these tests provide strong evidence that DMLC movement, variable dose-rates and gantry speeds can be precisely controlled during RapidArc.
瓦里安快速弧形放疗系统是一种用于调强放射治疗(IMRT)治疗计划与实施的系统。快速弧形放疗系统具备可变剂量率、可变机架速度以及精确快速的动态多叶准直器(DMLC)等功能,以优化剂量适形度、治疗实施效率、准确性和可靠性。我们制定了快速弧形放疗系统的调试和质量保证(QA)程序。
已设计出逐步评估快速弧形放疗系统性能的测试。首先,检查机架旋转过程中DMLC位置的准确性。其次,评估改变和控制剂量率及机架速度的能力。第三,研究可变DMLC速度和剂量率的联合使用情况。
采用适用于快速弧形放疗系统的栅栏测试,我们比较了固定机架模式和快速弧形放疗模式下获得的图案,结果表明机架旋转对叶片精度的影响极小(≤0.2毫米)。然后,我们结合不同的剂量率(111 - 600 MU/分钟)、机架速度(5.5 - 4.3度/秒)以及机架旋转范围(Δθ = 90 - 12.9度),使胶片的七个部分获得相同剂量。当归一化为相应的开放野(以考虑平坦度和不对称性)时,这七个部分的剂量显示出良好的一致性,平均偏差为0.7%。在评估快速弧形放疗过程中的DMLC速度(0.46、0.92、1.84和2.76厘米/秒)时,对设计的辐射图案进行分析表明一致性良好,平均偏差为0.4%。
这些测试结果提供了有力证据,表明在快速弧形放疗过程中,DMLC运动、可变剂量率和机架速度能够得到精确控制。