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Organ shielding and doses in Low-Earth orbit calculated for spherical and anthropomorphic phantoms

机译:计算球形和拟人幻影的低地球轨道的器官屏蔽和剂量

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Humans in space are exposed to elevated levels of radiation compared to ground. Different sources contribute to the total exposure with galactic cosmic rays being the most important component. The application of numerical and anthropomorphic phantoms in simulations allows the estimation of dose rates from galactic cosmic rays in individual organs and whole body quantities such as the effective dose. The male and female reference phantoms defined by the International Commission on Radiological Protection and the hermaphrodite numerical RANDO phantom are voxel implementations of anthropomorphic phantoms and contain all organs relevant for radiation risk assessment. These anthropomorphic phantoms together with a spherical water phantom were used in this work to translate the mean shielding of organs in the different anthropomorphic voxel phantoms into positions in the spherical phantom. This relation allows using a water sphere as surrogate for the anthropomorphic phantoms in both simulations and measurements. Moreover, using spherical phantoms in the calculation of radiation exposure offers great advantages over anthropomorphic phantoms in terms of computational time. In this work, the mean shielding of organs in the different voxel phantoms exposed to isotropic irradiation is presented as well as the corresponding depth in a water sphere. Dose rates for Low-Earth orbit from galactic cosmic rays during solar minimum conditions were calculated using the different phantoms and are compared to the results for a spherical water phantom in combination with the mean organ shielding. For the spherical water phantom the impact of different aluminium shielding between 1 g/cm~2 and 100 g/cm~2 was calculated. The dose equivalent rates were used to estimate the effective dose rate.
机译:与地面相比,太空中的人类受到的辐射水平较高。银河宇宙射线是最重要的组成部分,它的总辐射量不同。在仿真中使用数字和拟人化体模可以从单个器官的银河宇宙射线和整个身体的数量(例如有效剂量)估算剂量率。国际放射防护委员会定义的男性和女性参考体模和雌雄同体的RANDO体模是拟人体模的体素实现,并且包含与辐射风险评估相关的所有器官。这些拟人化体模与球形水体模一起用于这项工作,以将不同拟人体素体模中器官的平均屏蔽转换为球形体模中的位置。这种关系允许在模拟和测量中都使用水球作为拟人化体模的替代物。而且,在计算辐射量时使用球形体模在计算时间方面比拟人体模具有很大的优势。在这项工作中,展示了暴露于各向同性辐射的不同体素体模中器官的平均屏蔽以及水球中相应的深度。使用不同的体模计算了太阳最低条件下银河系宇宙射线对低地球轨道的剂量率,并将其与球形水体模结合平均器官屏蔽的结果进行了比较。对于球形水体模型,计算了铝屏蔽层在1 g / cm〜2和100 g / cm〜2之间的影响。剂量当量率用于估计有效剂量率。

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