Dai J R, Hu Y M
Department of Radiation Oncology, Cancer Hospital, Chinese Academy of Medical Science, Beijing.
Med Phys. 1999 Dec;26(12):2562-70. doi: 10.1118/1.598794.
The purpose of this work is to investigate algorithms for the delivery of intensity-modulated fields using independent collimators (IC). Two heuristic algorithms are proposed to calculate jaw-setting sequences for arbitrary 2D intensity distributions. The first algorithm is based on searching the whole intensity matrix to find the largest nonzero rectangular area as a segment while the second algorithm is to find a nonzero rectangular area as a segment which makes the complexity of the remaining intensity matrix minimum. After a sequence is obtained, the delivery order of all its segments is optimized with the technique of simulated annealing to minimize the total jaw-moving time. To evaluate these two algorithms, randomly generated intensity matrices and three clinical cases of different complexity have been tested, and the results have been compared with one algorithm proposed for MLC technique. It is shown that the efficiency of IC technique becomes increasingly lower than that of MLC technique, and the relative efficiency of two algorithms proposed here is related to machine dose rate and jaw speed. Assuming the prescribed dose is 200 cGY per fraction, machine dose rate is 250 MU/min, and jaw speed is 1.5 cm/s, the treatment can be delivered within about 20 min for all three cases with the first algorithm. The second algorithm requires longer delivery time under such assumptions. The delivery time can be further reduced through increasing machine dose rate and jaw speed, and developing more efficient algorithms. The use of IC for intensity-modulation radiotherapy has some potential advantages over other techniques.
这项工作的目的是研究使用独立准直器(IC)进行调强射野照射的算法。提出了两种启发式算法来计算任意二维强度分布的射野挡铅序列。第一种算法是通过搜索整个强度矩阵来找到最大的非零矩形区域作为一个射野单元,而第二种算法是找到一个能使剩余强度矩阵复杂度最小的非零矩形区域作为一个射野单元。在获得一个序列后,利用模拟退火技术对其所有射野单元的照射顺序进行优化,以使总的射野移动时间最小化。为了评估这两种算法,对随机生成的强度矩阵以及三个不同复杂度的临床病例进行了测试,并将结果与一种针对多叶准直器(MLC)技术提出的算法进行了比较。结果表明,IC技术的效率相对于MLC技术越来越低,这里提出的两种算法的相对效率与机器剂量率和射野移动速度有关。假设每分次规定剂量为200 cGY,机器剂量率为250 MU/min,射野移动速度为1.5 cm/s,使用第一种算法,所有三个病例的治疗时间均可在约20分钟内完成。在这样的假设下,第二种算法需要更长的治疗时间。通过提高机器剂量率和射野移动速度以及开发更高效的算法,治疗时间可以进一步缩短。与其他技术相比,使用IC进行调强放射治疗具有一些潜在优势。