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Performance in hippocampus- and PFC-dependent cognitive domains are not concomitantly impaired in rats exposed to 20 cGy of 1 GeV ~(56)Fe particles

机译:在暴露于20 cGy的1 GeV / n〜(56)Fe颗粒的大鼠中,海马依赖和PFC依赖的认知域的功能不会同时受损

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摘要

NASA is currently conducting ground based experiments to determine whether the radiation environment that astronauts will encounter on deep space missions will have an impact on their long-term health and their ability to complete the various tasks during the mission. Emerging data suggest that exposure of rodents to mission-relevant HZE radiation doses does result in the impairment of various neurocognitive processes. An essential part of mission planning is a probabilistic risk assessment process that takes into account the likely incidence and severity of a problem. To date few studies have reported the impact of space radiation in a format that is amenable to PRA, and those that have only reported data for a single cognitive process. This study has established the ability of individual male Wistar rats to conduct a hippocampus-dependent (spatial memory) task and a cortex-dependent (attentional set shifting task) 90 days after exposure to 20 cGy 1 GeV ~(56)Fe particles. Radiation-induced impairment of performance in one cognitive domain was not consistently associated with impaired performance in the other domain. Thus sole reliance upon a single measure of cognitive performance may substantially under-estimate the risk of cognitive impairment, and ultimately it may be necessary to establish the likelihood that mission-relevant HZE doses will impair performance in the three or four cognitive domains that NASA considers to be most critical for mission success, and build a PRA using the composite data from such studies.
机译:美国宇航局目前正在进行地面实验,以确定宇航员在深空任务中会遇到的辐射环境是否会影响他们的长期健康以及在任务期间完成各种任务的能力。新兴数据表明,将啮齿动物暴露于与任务相关的HZE辐射剂量确实会导致各种神经认知过程的损害。任务计划的重要部分是概率风险评估过程,该过程应考虑问题的可能发生率和严重性。迄今为止,很少有研究以适合PRA的格式报告空间辐射的影响,而那些仅报告单个认知过程数据的研究。这项研究已经建立了雄性Wistar大鼠个体在暴露于20 cGy 1 GeV / n〜(56)Fe颗粒90天后执行海马依赖(空间记忆)任务和皮质依赖(注意定格转移任务)的能力。 。在一个认知领域中,辐射诱发的性能损害与在另一领域中的表现受损并不一致。因此,仅依靠单一的认知表现测量可能会大大低估认知障碍的风险,最终可能有必要确定与任务相关的HZE剂量会损害NASA认为的三或四个认知领域的表现的可能性。对任务成功至关重要,并使用此类研究的综合数据构建PRA。

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  • 来源
    《Life Sciences in Space Research》 |2016年第8期|17-22|共6页
  • 作者单位

    Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, United States,Department of Microbiology and Molecular Cell Biology, Eastern Virginia Medical School, Norfolk, VA 23507, United States,Leroy T Canoles Jr. Cancer Center, Eastern Virginia Medical School, Norfolk, VA 23507, United States;

    Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, United States;

    Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, United States;

    Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, United States;

    Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, United States;

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