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Fluence-to-dose conversion coefficients from monoenergetic neutrons below 20 MeV based on the VIP-man anatomical model.

机译:低于20 MeV的单能中子的通量-剂量转换系数基于VIP-man解剖模型。

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摘要

A new set of fluence-to-absorbed dose and fluence-to-effective dose conversion coefficients have been calculated for neutrons below 20 MeV using a whole-body anatomical model, VIP-Man, developed from the high-resolution transverse colour photographic images of the National Library of Medicine's Visible Human Project. Organ dose calculations were performed using the Monte Carlo code MCNP for 20 monoenergetic neutron beams between 1 x 10(-9) MeV and 20 MeV under six different irradiation geometries: anterior-posterior, posterior-anterior, right lateral, left lateral, rotational and isotropic. The absorbed dose for 24 major organs and effective dose results based on the realistic VIP-Man are presented and compared with those based on the simplified MIRD-based phantoms reported in the literature. Effective doses from VIP-Man are not significantly different from earlier results for neutrons in the energy range studied. There are, however, remarkable deviations in organ doses due to the anatomical differences between the image-based and the earlier mathematical models.
机译:使用全身解剖模型VIP-Man,根据高分辨率的横向彩色摄影图像,计算出20 MeV以下中子的一组新的通量-吸收剂量和通量-有效剂量转换系数。国家医学图书馆的可见人类项目。使用Monte Carlo代码MCNP在六种不同的照射几何结构下对20个单能中子束在1 x 10(-9)MeV和20 MeV之间进行器官剂量计算:前后,前后,右侧,外侧,左侧,旋转和各向同性。提出了基于实际VIP-Man的24种主要器官的吸收剂量和有效剂量结果,并将其与文献中报道的基于简化的基于MIRD的体模的吸收剂量进行了比较。 VIP-Man的有效剂量与所研究能量范围内中子的早期结果没有显着差异。但是,由于基于图像的模型与较早的数学模型之间的解剖差异,器官剂量存在显着差异。

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