University of North Carolina at Chapel Hill.
J Appl Clin Med Phys. 2014 Mar 6;15(2):4545. doi: 10.1120/jacmp.v15i2.4545.
Direct aperture optimization (DAO) has been used to produce high dosimetric quality intensity-modulated radiotherapy (IMRT) treatment plans with fast treatment delivery by directly modeling the multileaf collimator segment shapes and weights. To improve plan quality and reduce treatment time for our in-house treatment planning system, we implemented a new DAO approach without using a global objective function (GFO). An index concept is introduced as an inverse form of back-projection used in the CT multiplicative algebraic reconstruction technique (MART). The index, introduced for IMRT optimization in this work, is analogous to the multiplicand in MART. The index is defined as the ratio of the optima over the current. It is assigned to each voxel and beamlet to optimize the fluence map. The indices for beamlets and segments are used to optimize multileaf collimator (MLC) segment shapes and segment weights, respectively. Preliminary data show that without sacrificing dosimetric quality, the implementation of the DAO reduced average IMRT treatment time from 13 min to 8 min for the prostate, and from 15 min to 9 min for the head and neck using our in-house treatment planning system PlanUNC. The DAO approach has also shown promise in optimizing rotational IMRT with burst mode in a head and neck test case.
直接适形调强优化(DAO)已经被用于通过直接模拟多叶准直器的形状和权重来产生具有高剂量学质量的调强放疗(IMRT)治疗计划,从而实现快速的治疗交付。为了提高我们内部治疗计划系统的计划质量并减少治疗时间,我们实现了一种新的 DAO 方法,而不使用全局目标函数(GFO)。引入了一种索引概念,作为在 CT 乘法代数重建技术(MART)中使用的反向投影的一种形式。在这项工作中,引入的索引用于 IMRT 优化,类似于 MART 中的被乘数。索引定义为最优值与当前值的比值。它被分配给每个体素和射束来优化剂量图。射束和段的索引用于分别优化多叶准直器(MLC)段的形状和段的权重。初步数据表明,在不牺牲剂量学质量的情况下,在使用我们的内部治疗计划系统 PlanUNC 时,对于前列腺,DAO 的实施将平均 IMRT 治疗时间从 13 分钟缩短到 8 分钟,对于头颈部,将平均 IMRT 治疗时间从 15 分钟缩短到 9 分钟。在头颈部测试案例中,DAO 方法在优化旋转调强放疗与突发模式方面也显示出了潜力。