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首页> 外文期刊>Medical Physics >Tissue equivalency of phantom materials for neutron dosimetry in proton therapy.
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Tissue equivalency of phantom materials for neutron dosimetry in proton therapy.

机译:在质子治疗中用于中子剂量测定的幻象材料的组织等效性。

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摘要

PURPOSE: Previous Monte Carlo and experimental studies involving secondary neutrons in proton therapy have employed a number of phantom materials that are designed to represent human tissue. In this study, the authors determined the suitability of common phantom materials for dosimetry of secondary neutrons, specifically for pediatric and intracranial proton therapy treatments. METHODS: This was achieved through comparison of the absorbed dose and dose equivalent from neutrons generated within the phantom materials and various ICRP tissues. The phantom materials chosen for comparison were Lucite, liquid water, solid water, and A150 tissue equivalent plastic, These phantom materials were compared to brain, muscle, and adipose tissues. RESULTS: The magnitude of the doses observed were smaller than those reported in previous experimental and Monte Carlo studies, which incorporated neutrons generated in the treatment head. The results show that for both neutron absorbed dose and dose equivalent, no single phantom material gives agreement with tissue within 5% at all the points considered. Solid water gave the smallest mean variation with the tissues out of field where neutrons are the primary contributor to the total dose. CONCLUSIONS: Of the phantom materials considered, solid water shows best agreement with tissues out of field.
机译:目的:以前的蒙特卡洛(Monte Carlo)和涉及质子治疗中的次级中子的实验研究已经使用了许多用于代表人体组织的幻像材料。在这项研究中,作者确定了普通幻象材料对次级中子剂量学的适用性,特别是对儿科和颅内质子疗法的治疗。方法:这是通过比较幻影材料和各种ICRP组织中产生的中子的吸收剂量和等效剂量来实现的。选择用于比较的幻像材料是萤石,液态水,固体水和A150组织等效塑料。将这些幻像材料与脑,肌肉和脂肪组织进行了比较。结果:观察到的剂量大小小于以前的实验和蒙特卡洛研究中报道的剂量,后者纳入了治疗头产生的中子。结果表明,对于中子吸收剂量和当量剂量,在所有考虑的点上,没有单个幻像材料与组织达成一致(在5%以内)。固体水在野外组织中的平均变化最小,其中中子是总剂量的主要贡献者。结论:在考虑的幻象材料中,固态水与野外组织显示出最佳一致性。

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