Optimization of Energy for Proton Therapy with Pencil Beam Collimator Model in Craniopharyngioma Tumor Using MCNP6 Code

Weni Antari Putri, R. Riyatun, D. Darmanto, S. Suharyana, Fajar Arianto
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Abstract

Computational simulations of proton therapy with a pencil beam collimator for craniopharyngioma have been done using MCNP6. A pencil beam was radiated towards cube shaped tumor cells in size 1.2 cm, located at a 5.4 cm depth from the surface of the scalp. A 0.1 cm pencil beam was radiated from the left 19.6 cm from the scalp. The cube of tumor cell is divided into the front layer, middle layer, and back layer. Each layer of the tumor cell is divided into 9 cubicles, thus there are 27 cubicles. Using various energy from 108 MeV to 115 MeV and various intensity of energy for each irradiation, it produces the dose for each cubicle in unit MeV/gram per proton. The best isodoses occurred in 5 variations of energy which is 108.2; 111.2; 113.4; 114.7 and 115 MeV. The healthy organ that received the largest dose of the proton is the brain, it is (7.38±0.01)×10-2 MeV/gram per proton, or only 0.412% compared to the tumor cell dose.
利用 MCNP6 代码优化采用铅笔束准直器模型的颅咽管瘤质子治疗能量
利用 MCNP6 对使用铅笔束准直器治疗颅咽管瘤的质子疗法进行了计算模拟。一束铅笔束射向距离头皮表面 5.4 厘米深、大小为 1.2 厘米的立方体肿瘤细胞。一束 0.1 厘米的铅笔光束从距离头皮 19.6 厘米的左侧照射。肿瘤细胞立方体分为前层、中层和后层。肿瘤细胞的每一层分为 9 个小室,因此共有 27 个小室。利用 108 兆电子伏至 115 兆电子伏的不同能量和每次照射的不同能量强度,得出每个小室的剂量,单位为兆电子伏/克/质子。最佳等剂量出现在 108.2、111.2、113.4、114.7 和 115 MeV 五种能量变化中。接受质子剂量最大的健康器官是大脑,其剂量为(7.38±0.01)×10-2 MeV/克/个质子,仅为肿瘤细胞剂量的0.412%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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