Ranganathan Vaitheeswaran, Sathiya Narayanan V K, Bhangle Janhavi R, Gupta Kamlesh K, Basu Sumit, Maiya Vikram, Joseph Jolly, Nirhali Amit
Healthcare Sector, Siemens Ltd, 403A, Senapati Bapat Road, Pune- 411 016, India.
J Med Phys. 2010 Apr;35(2):104-12. doi: 10.4103/0971-6203.62203.
This study aims to evaluate the performance of a new algorithm for optimization of beam weights in anatomy-based intensity modulated radiotherapy (IMRT). The algorithm uses a numerical technique called Gaussian-Elimination that derives the optimum beam weights in an exact or non-iterative way. The distinct feature of the algorithm is that it takes only fraction of a second to optimize the beam weights, irrespective of the complexity of the given case. The algorithm has been implemented using MATLAB with a Graphical User Interface (GUI) option for convenient specification of dose constraints and penalties to different structures. We have tested the numerical and clinical capabilities of the proposed algorithm in several patient cases in comparison with KonRad((R)) inverse planning system. The comparative analysis shows that the algorithm can generate anatomy-based IMRT plans with about 50% reduction in number of MUs and 60% reduction in number of apertures, while producing dose distribution comparable to that of beamlet-based IMRT plans. Hence, it is clearly evident from the study that the proposed algorithm can be effectively used for clinical applications.
本研究旨在评估一种用于基于解剖结构的调强放射治疗(IMRT)中优化射束权重的新算法的性能。该算法使用一种称为高斯消元法的数值技术,以精确或非迭代的方式得出最佳射束权重。该算法的显著特点是,无论给定病例的复杂程度如何,它只需几分之一秒就能优化射束权重。该算法已使用MATLAB实现,并带有图形用户界面(GUI)选项,以便于指定对不同结构的剂量约束和惩罚。与KonRad®逆向计划系统相比,我们在多个患者病例中测试了所提出算法的数值和临床能力。对比分析表明,该算法可以生成基于解剖结构的IMRT计划,同时使机器跳数减少约50%,射野数减少60%,同时产生与基于子野的IMRT计划相当的剂量分布。因此,从该研究中可以明显看出,所提出的算法可有效地用于临床应用。