Papieza Lech
Department of Radiation Oncology, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.
Med Phys. 2004 Oct;31(10):2742-54. doi: 10.1118/1.1779358.
In dynamic multileaf collimation (DMLC), pairs of servo-controlled leaves sweep across the target to deliver the modulated radiation intensity map while the beam is on continuously. The mathematical model for dynamic, optimal control of a single leaf pair has been developed for the case of a rigid target, translating parallel to the leaf trajectories. This mathematical model ensures delivery of the modulated intensity map while minimizing beam-on time. Numerical solutions of the model are presented here for optimal IMRT delivery for stationary and oscillating targets, together with a discussion of the results. Comparisons between solutions for stationary and mobile targets, as well as comparisons between optimal and suboptimal algorithms, are provided. These comparisons allow us to estimate potential gains in the effectiveness of DMLC IMRT delivery when it is based on optimal algorithms.
在动态多叶准直器(DMLC)中,成对的伺服控制叶片扫过靶区,在束流持续开启时传递调制后的辐射强度图。针对刚性靶平行于叶片轨迹平移的情况,已开发出单个叶片对的动态最优控制数学模型。该数学模型可确保传递调制后的强度图,同时将束流开启时间减至最短。本文给出了该模型的数值解,用于静止和振荡靶区的最优调强放射治疗(IMRT),并对结果进行了讨论。还提供了静止和移动靶区解之间的比较,以及最优和次优算法之间的比较。这些比较使我们能够估计基于最优算法的DMLC IMRT治疗有效性的潜在提升。