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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Astronaut's Organ Doses Inferred from Measurements in a Human Phantom Outside the International Space Station
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Astronaut's Organ Doses Inferred from Measurements in a Human Phantom Outside the International Space Station

机译:根据国际空间站外人体幻影的测量结果推断出宇航员的器官剂量

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Reitz, G., Berger, T., Bilski, P., Facius, R., Hajek, M., Petrov, V., Puchalska, M., Zhou, D., Bossler,.J., Akatov, Y., Shurshakov, V., Olko, P., Ptaszkiewiez, M., Bergmann, R., Fugger, M., Vana, N., Beaujean, It., Burmeister, S., Bartlett, D., Hager, L., Palfalvi, 1, Szabo, 1, O'Sullivan, D., Kitamura, H., Uchiliori, Y., Yasuda, N., Nagamatsu, A., Tawara, H., Benton, E., Gaza, R., McKeever, S.. Sawakuchi, G., Yukihara, E., Cucinotta, F., Semones, E., Zapp, N., Miller, J. and Dettmann, J. Astronaut's Organ Doses Inferred from Measurements in a Human Phantom Outside the International Space Station. Radiat. Res. 171. 225-235 (2009). Space radiation hazards are recognized as a key concern for human space flight. For long-term interplanetary missions, they constitute a potentially limiting factor since current protection limits for low-Earth orbit missions may be approached or even exceeded. In such a situation, an accurate risk assessment requires knowledge of equivalent doses in critical radiosensitive organs rather than only skin doses or ambient doses from area monitoring. To achieve this, the MATROSHKA experiment uses a human phantom torso equipped with dedicated detector systems. We measured for the first time the doses from the diverse components of ionizing space radiation at the surface and at different locations inside the phantom positioned outside the International Space Station, thereby simulating an extravehicular activity of an astronaut. The relationships between the skin and organ absorbed doses obtained in such an exposure show it steep gradient between the doses in the uppermost layer of the skin and the deep organs with a ratio close to 20. This decrease due to the body self-shielding and a concomitant increase or the radiation quality factor by 1.7 highlight the complexities of an adequate dosimetry or space radiation. The depth-dose distributions established by MATROSHKA serve as benchmarks for space radiation models and radiation transport calculations that are needed for mission planning. (C) 2009 by Radiation Research Society
机译:Reitz,G.,Berger,T.,Bilski,P.,Facius,R.,Hajek,M.,Petrov,V.,Puchalska,M.,Zhou,D.,Bossler,J。,Akatov,Y. ,Shurshakov,V.,Olko,P.Ptaszkiewiez,M.,Bergmann,R.,Fugger,M.,Vana,N.,Beaujean,It。,Burmeister,S.,Bartlett,D.,Hager,L. ,Palfalvi,1,Szabo,1,O'Sullivan,D。,北村,H.Uchiliori,Y.,Yasuda,N。,长松,A.,Tawara,H.,Benton,E.,Gaza,R。 ,McKeever,S.。Sawakuchi,G.,Yukihara,E.,Cucinotta,F.,Semones,E.,Zapp,N.,Miller,J。和Dettmann,J。宇航员从人体幻影中的测量推断出的器官剂量。国际空间站外。辐射。 Res。 171. 225-235(2009)。空间辐射危害被认为是人类太空飞行的关键问题。对于长期的星际飞行任务,它们构成了潜在的限制因素,因为低空轨道飞行任务的当前保护极限可能会接近甚至超过。在这种情况下,准确的风险评估需要了解关键放射敏感性器官中的等效剂量,而不仅仅是区域监测中的皮肤剂量或环境剂量。为了达到这个目的,MATROSHKA实验使用了配备专用探测器系统的人体幻影躯干。我们首次测量了位于国际空间站外部的体模表面和不同位置的电离空间辐射的各种成分的剂量,从而模拟了宇航员的舱外活动。在这种暴露下,皮肤与器官吸收剂量之间的关系表明,在皮肤的最上层与深层器官之间的剂量之间的梯度陡峭,比率接近20。这是由于人体自我屏蔽和皮肤吸收所致。辐射质量因数的同时增加1.7突显了适当剂量学或空间辐射的复杂性。 MATROSHKA建立的深度剂量分布可作为任务计划所需的空间辐射模型和辐射传输计算的基准。 (C)2009年,放射研究学会

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