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Cosmic Radiation Exposure of Biological Test Systems During the EXPOSE-E Mission

机译:EXPOSE-E任务期间生物测试系统的宇宙辐射暴露

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摘要

In the frame of the EXPOSE-E mission on the Columbus external payload facility EuTEF on board the International Space Station, passive thermoluminescence dosimeters were applied to measure the radiation exposure of biological samples. The detectors were located either as stacks next to biological specimens to determine the depth dose distribution or beneath the sample carriers to determine the dose levels for maximum shielding. The maximum mission dose measured in the upper layer of the depth dose part of the experiment amounted to 238 ±10 mGy, which relates to an average dose rate of 408 ± 16 μGy/d. In these stacks of about 8 mm height, the dose decreased by 5-12% with depth. The maximum dose measured beneath the sample carriers was 215 ± 16 mGy, which amounts to an average dose rate of 368 ±27 μGy/d. These values are close to those assessed for the interior of the Columbus module and demonstrate the high shielding of the biological experiments within the EXPOSE-E facility. Besides the shielding by the EXPOSE-E hardware itself, additional shielding was experienced by the external structures adjacent to EXPOSE-E, such as EuTEF and Columbus. This led to a dose gradient over the entire exposure area, from 215 + 16 mGy for the lowest to 121 ±6 mGy for maximum shielding. Hence, the doses perceived by the biological samples inside EXPOSE-E varied by 70% (from lowest to highest dose). As a consequence of the high shielding, the biological samples were predominantly exposed to galactic cosmic heavy ions, while electrons and a significant fraction of protons of the radiation belts and solar wind did not reach the samples.
机译:在国际空间站上哥伦布外部有效载荷设施EuTEF的EXPOSE-E任务框架中,采用了被动式热致发光剂量计来测量生物样品的辐射暴露。这些检测器要么作为堆叠放置在生物样本旁边以确定深度剂量分布,要么在样品载体下方确定最大屏蔽的剂量水平。在实验的深度剂量部分的上层中测得的最大任务剂量为238±10 mGy,这与408±16μGy/ d的平均剂量率有关。在这些大约8毫米高的堆栈中,剂量随深度降低了5-12%。在样品载体下方测得的最大剂量为215±16 mGy,相当于368±27μGy/ d的平均剂量率。这些值接近于哥伦布模块内部评估的值,并证明了EXPOSE-E设施内生物学实验的高度屏蔽。除了通过EXPOSE-E硬件本身进行屏蔽之外,与EXPOSE-E相邻的外部结构(例如EuTEF和Columbus)还经历了其他屏蔽。这导致了整个曝光区域的剂量梯度,从最低的215 + 16 mGy到最大屏蔽的121±6 mGy。因此,EXPOSE-E内部的生物样品所感知的剂量相差70%(从最低剂量到最高剂量)。由于高屏蔽性,生物样品主要暴露于银河系宇宙重离子,而辐射带的电子和大部分质子和太阳风并未到达样品。

著录项

  • 来源
    《Astrobiology》 |2012年第5期|387-392|共6页
  • 作者单位

    German Aerospace Center (DLR) Institute of Aerospace Medicine Radiation Biology Department Research Group "Biophysics" Under Hoehe D-51147 Cologne (Koeln) Germany;

    Institute of Atomic and Subatomic Physics (ATI), Vienna University of Technology, Vienna, Austria;

    Department of Radiation Physics and Dosimetry, Institute of Nuclear Physics (IFJ), Krakow, Poland;

    Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR), Cologne, Germany;

    Belgian Nuclear Research Centre (SCKCEN), Mol, Belgium;

    Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR), Cologne, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    space radiation; dosimetry; passive radiation detectors; thermoluminescence; EXPOSE-E;

    机译:空间辐射;剂量学无源辐射探测器;热致发光曝光;
  • 入库时间 2022-08-17 13:08:35

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