Optimization Technique using Ideal Target Model and Database in SRS

  • Oh, Seung-Jong (Dept. of Biomedical Engineering, The Catholic university of Korea) ;
  • Suh, Tae-Suk (Dept. of Biomedical Engineering, The Catholic university of Korea) ;
  • Song, Ju-Young (Dept. of Biomedical Engineering, The Catholic university of Korea) ;
  • Choe, Bo-Young (Dept. of Biomedical Engineering, The Catholic university of Korea) ;
  • Lee, Hyoung-Koo (Dept. of Biomedical Engineering, The Catholic university of Korea)
  • 발행 : 2002.09.01

초록

The aim of stereotactic radiosurgery(SRS) is to deliver a high dose to a target region and a low dose to critical organ through only one or a few irradiation. To satisfy this aim, optimized irradiating conditions must be searched in the planning. Thus, many mathematical methods such as gradient method, simulated annealing and genetic algorithm had been proposed to find out the conditions automatically. There were some limitations using these methods: the long calculation time, and the difficulty of unique solution due to the different shape of tumor. In this study, optimization protocol using ideal models and data base was proposed. Proposed optimization protocol constitutes two steps. First step was a preliminary work. Some possible ideal geometry shapes, such as sphere, cylinder, cone shape or the combination, were assumed to approximate the real tumor shapes. Optimum variables such as isocenter position or collimator size, were determined so that the high dose region could be shaped to fit ideal models with the arrangement of multiple isocenter. Data base were formed with those results. Second, any shaped real targets were approximated to these models using geometry comparison. Then, optimum variables for ideal geometry were chosen from the data base predetermined, and final parameters were obtained by adjusting these data. Although the results of applying the data base to patients were not superior to the result of optimization in each case, it can be acceptable as a starting point of plan.

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