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国际空间站载人辐射剂量和风险评估的航天局特定标准。

Space agency-specific standards for crew dose and risk assessment of ionising radiation exposures for the International Space Station.

机构信息

KBR Human Health and Performance, NASA Johnson Space Centre, Houston, TX, USA.

NASA Space Radiation Analysis Group-Johnson Space Centre, Houston, TX, USA.

出版信息

Z Med Phys. 2024 Feb;34(1):14-30. doi: 10.1016/j.zemedi.2023.06.005. Epub 2023 Jul 27.

Abstract

The Partner Agencies of the International Space Station (ISS) maintain separate career exposure limits and shared Flight Rules that control the ionising radiation exposures that crewmembers can experience due to ambient environments throughout their space missions. In low Earth orbit as well as further out in space, energetic ions referred to as galactic cosmic radiation (GCR) easily penetrate spacecraft and spacecraft contents and consequently are always present at low dose rates. Protons and electrons that are trapped in the Earth's geomagnetic field are encountered intermittently, and a rare energetic solar particle event (SPE) may expose crew to (mostly) energetic protons. Space radiation protection goals are to optimize radiation exposures to maintain deleterious late effects at known and acceptable levels and to prevent any early effects that might compromise crew health and mission success. The conventional radiation protection metric effective dose provides a basic framework for limiting exposures associated with human spaceflight and can be communicated to all stakeholders. Additional metrics and uncertainty analyses are required to understand more completely and to convey nuanced information about potential impacts to an individual astronaut or to a space mission. Missions to remote destinations well beyond low Earth orbit (BLEO) are upcoming and bestow additional challenges that shape design and radiation protection needs. NASA has recently adopted a more permissive career exposure limit based upon effective dose and new restrictions on mission exposures imposed by nuclear technologies. This manuscript reviews the exposure limits that apply to the ISS crewmembers. This work was performed in collaboration with the advisory and guidance efforts of International Commission on Radiological Protection (ICRP) Task Group 115 and will be summarized in an upcoming ICRP Report.

摘要

国际空间站(ISS)的合作机构分别制定了职业照射限值和共同的飞行规则,以控制机组人员在整个太空任务中因周围环境而受到的电离辐射照射。在近地轨道以及更远的太空,被称为银河宇宙辐射(GCR)的高能离子很容易穿透航天器及其内部设备,因此始终以低剂量率存在。在地球磁场中被捕获的质子和电子则是间歇性出现的,而罕见的太阳高能粒子事件(SPE)可能会使机组人员暴露于高能质子之下。空间辐射防护目标是优化辐射暴露,将有害的晚期效应保持在已知和可接受的水平,并防止任何可能损害机组人员健康和任务成功的早期效应。传统的辐射防护有效剂量指标为限制与人类太空飞行相关的暴露提供了一个基本框架,并可以传达给所有利益相关者。需要进行额外的指标和不确定性分析,以更全面地了解和传达对个体宇航员或太空任务可能产生的潜在影响的细微信息。前往远地目的地,远超出近地轨道(BLEO)的任务即将到来,这给设计和辐射防护需求带来了额外的挑战。美国国家航空航天局(NASA)最近根据有效剂量指标采用了更宽松的职业照射限值,并对核技术施加了新的任务照射限制。本文审查了适用于国际空间站机组人员的照射限值。这项工作是与国际辐射防护委员会(ICRP)第 115 工作组的咨询和指导工作合作完成的,并将在即将发布的 ICRP 报告中进行总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5822/10919966/a51c2937c6f5/gr1.jpg

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