Department of Information Engineering, I-Shou University, Taiwan.
J Appl Clin Med Phys. 2012 Nov 8;13(6):3937. doi: 10.1120/jacmp.v13i6.3937.
We present an analytical and experimental study of split shape dose calculation correction by adjusting the position of the round leaf end position in an intensity-modulated radiation therapy treatment planning system. The precise light field edge position (Xtang.p ) was derived from 50% of the central axis dose created by nominal light field using geometry and mathematical methods. Leaf position (Xmlc.p), defined in the treatment planning system for monitor unit calculation, could be derived from Xtang.p. Offset (correction) could be obtained by the position corresponding to 50% of the central axis dose minus the Xmlc.p position. For SSD from 90 cm to 120 cm at 6 MV and 10 MV, the 50% dose position was located outside of Xmlc,p in the MLC leaf position range of +8 cm to -8 cm, where the offset correction positively increased, whereas the offset correction negatively increased when the MLC leaf position was in the range of -12 cm to -8 cm and +20 cm to +8 cm when the 50% position was located inside Xmlc,p. The monitor unit calculation could provide underdosage or overdosage of 7.5% per mm without offset correction. Calibration could be performed at a certain SSD to fit all SSD offset corrections. With careful measurement and an accurate offset correction, it is possible to achieve the dose calculation with 0.5% error for the adjusted MLC leaf edge location in the treatment planning system.
我们提出了一种通过调整调强放射治疗计划系统中圆形叶片末端位置来校正分割形状剂量计算的分析和实验研究。精确的光场边缘位置(Xtang.p)是通过几何和数学方法从标称光场产生的中央轴剂量的 50%中得出的。叶片位置(Xmlc.p),在治疗计划系统中定义为用于监测单位计算,可从 Xtang.p 得出。偏移(校正)可以通过与 50%中央轴剂量对应的位置减去 Xmlc.p 位置来获得。对于 6 MV 和 10 MV 的 90 cm 至 120 cm 的 SSD,50%剂量位置位于+8 cm 至-8 cm 的 MLC 叶片位置范围内之外,其中偏移校正正向增加,而当 MLC 叶片位置在-12 cm 至-8 cm 和+20 cm 至+8 cm 范围内时,50%位置位于 Xmlc.p 内时,偏移校正负向增加。在没有偏移校正的情况下,监测单位计算可能会导致每毫米 7.5%的剂量不足或过量。可以在特定 SSD 上进行校准以适应所有 SSD 偏移校正。通过仔细测量和准确的偏移校正,可以实现治疗计划系统中调整后的 MLC 叶片边缘位置的剂量计算误差为 0.5%。