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通过源剔除优化伽玛刀的计算机治疗计划

Optimizing computerized treatment planning for the Gamma Knife by source culling.

作者信息

Luo L, Shu H, Yu W, Yan Y, Bao X, Fu Y

机构信息

Department of Biology and Medical Engineering, Southeast University, Nanjing, China.

出版信息

Int J Radiat Oncol Biol Phys. 1999 Dec 1;45(5):1339-46. doi: 10.1016/s0360-3016(99)00341-7.

Abstract

PURPOSE

A good plan is crucial to the success of gamma knife treatment, which depends not only on parameters such as the number of shots, shot position, collimator sizes, and shot weight, but also on the number of blocked cobalt sources. However, during treatment, a plug is generally used to block those cobalt sources, so the beam cannot reach critical tissues. We present here an automated method to optimize all of those parameters, and to choose a source set, although the beams of some blocked sources do not hit any critical tissue. This strategy is used to achieve a high dose that better conforms to the tumor shape, and at the same time, avoids healthy tissue.

METHODS AND MATERIALS

Using a workstation that integrates the gamma knife treatment planning system, we developed a two-step optimization algorithm. First, we used a modified Powell's method to optimize the location of the shot, collimator size, and shot weight; we used simulated annealing to determine if the number of shots was adequate using this parameter. Then, simulated annealing was used to determine which cobalt sources we needed to block.

RESULTS

Application of this optimization method in two cases showed that the treatment plan can be much improved when the set of blocked cobalt sources has been taken into consideration.

CONCLUSION

Determining the set of blocked sources is necessary in certain cases. This technique better conforms the desired isodose curves to the outline of the target volume and minimizes damage to the surrounding normal tissues.

摘要

目的

一个好的计划对于伽玛刀治疗的成功至关重要,这不仅取决于诸如照射次数、照射位置、准直器尺寸和照射剂量等参数,还取决于被阻挡钴源的数量。然而,在治疗过程中,通常使用一个塞子来阻挡那些钴源,这样射线就无法到达关键组织。我们在此提出一种自动化方法,用于优化所有这些参数,并选择一组源,尽管一些被阻挡源的射线不会照射到任何关键组织。该策略用于实现更好地符合肿瘤形状的高剂量,同时避免损伤健康组织。

方法和材料

使用一个集成了伽玛刀治疗计划系统的工作站,我们开发了一种两步优化算法。首先,我们使用改进的鲍威尔方法来优化照射位置、准直器尺寸和照射剂量;我们使用模拟退火算法,根据此参数确定照射次数是否足够。然后,使用模拟退火算法来确定需要阻挡哪些钴源。

结果

在两个病例中应用这种优化方法表明,当考虑被阻挡钴源组时,治疗计划可以得到很大改善。

结论

在某些情况下,确定被阻挡源组是必要的。该技术能使所需的等剂量曲线更好地符合靶区轮廓,并将对周围正常组织的损伤降至最低。

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