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Evaluation of dose dependent structural changes in 3D brain micro-vasculature in response to heavy particle radiation exposure

机译:评估3D脑微脉管系统对重粒子辐射暴露的剂量依赖性结构变化

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Space radiation with high energy particles (cosmic rays) presents a significant hazard to spaceflight crews. Recent reviews of the health risk to astronauts from ionizing radiation concluded that there is a need to establish a level of risk which may indicate the possible performance decrements and decreased latency of late dysfunction syndromes of the brain. A hierarchical imaging approach developed at ETH Zurich and PSI, which relies on synchrotron based X-ray Tomographic Microscopy (SRXTM), was used to visualize and analyze 3D vascular structures down to the capillary level. Various morphological parameters, such as overall vessel volume, thickness and spacing, are extracted to characterize the vascular structure within a region of interest. Three weeks after irradiation a first quantification of the effect of high energy particles on the vasculature was done on a set of 14 animals, all the same age. The animals were irradiated head-only with lGy, 2Gy and 4Gy of 600MeV ~(86)Fe heavy particles simulating the space radiation environment. We found that with increasing dose the diameter of vessels and the overall vessel volume are decreased whereas the vessel spacing is increased. As these parameters reflect blood flow in three-dimensional space they can be used as indicators for the degree of vascular efficiency which is thought to have an impact on the function and development of the central nervous system.
机译:具有高能粒子(宇宙射线)的空间辐射对航天员构成了重大危害。最近对电离辐射对宇航员的健康风险的审查得出结论,认为有必要确定一定的风险水平,这可能表明大脑晚期功能障碍综合症的可能表现降低和潜伏期缩短。苏黎世联邦理工学院和PSI开发的分层成像方法依赖于基于同步加速器的X射线断层扫描显微镜(SRXTM),用于可视化和分析直至毛细血管水平的3D血管结构。提取各种形态学参数,例如总血管体积,厚度和间距,以表征感兴趣区域内的血管结构。辐照后三周,对一组相同年龄的14只动物进行了高能粒子对脉管系统影响的首次量化。用模拟空间辐射环境的600MeV / n〜(86)Fe重粒子的1Gy,2Gy和4Gy仅对动物进行头照射。我们发现,随着剂量的增加,血管的直径和总的血管体积会减少,而血管的间隔则会增加。由于这些参数反映了三维空间中的血流,因此它们可以用作指示血管效率程度的指标,血管效率的程度被认为会影响中枢神经系统的功能和发育。

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