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Dynamic characteristics of ~(56)Fe-particle radiation-induced alterations in the rat brain: Magnetic resonance imaging and histological assessments

机译:〜(56)Fe粒子辐射诱发的大鼠大脑动态变化的动态特征:磁共振成像和组织学评估

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摘要

~(56)Fe-particle radiation-induced brain disturbances are a major health concern for astronauts during long-term space travel. The present study investigated temporal modifications within the brain after ~(56)Fe- particle exposure using in vivo magnetic resonance imaging (MRI) correlated to histology. Male Sprague-Dawley rats were exposed to brain-only ~(56)Fe-particle radiation. MRI including T2-weighted, diffusion-weighted, pre/postcontrast enhanced T1-weighted imaging was performed 0.2518 months after exposure. T2 relaxation times and the apparent diffusion coefficient were quantified within the hippocampus, entorhinal cortex, retrosplenial cortex and thalamus, and correlative histopathology was then performed at each time. In the absence of visible lesions on MR images, the apparent diffusion coefficient and T2 relaxation times revealed ~(56)Fe-particle-induced dynamic changes in all ROIs over the 18-month time course. The patterns of MR changes were spatially similar within the different regions. The temporal alterations in the apparent diffusion coefficient corresponded to the glial cell changes within the brain. Quantitative MRI provides a non-invasive approach to monitor spatio-temporal brain alterations after ~(56)Fe-particle irradiation. The apparent diffusion coefficient appears to be a sensitive metric to reveal ongoing tissue modifications involving multiple cellular components in vivo.
机译:〜(56)铁粒子辐射引起的脑部疾病是航天员长期太空旅行中的主要健康问题。本研究使用与组织学相关的体内磁共振成像(MRI)研究了〜(56)Fe颗粒暴露后大脑内的时间变化。将雄性Sprague-Dawley大鼠暴露于仅大脑的〜(56)Fe粒子辐射。暴露后0.2518个月进行MRI,包括T2加权,弥散加权,对比前/后增强T1加权成像。在海马,内嗅皮层,脾后皮层和丘脑内定量T2弛豫时间和表观扩散系数,然后每次进行相关的组织病理学检查。在MR图像上不存在可见病变的情况下,表观扩散系数和T2弛豫时间揭示了在18个月的时间过程中,所有ROI中都有〜(56)Fe颗粒诱导的动态变化。 MR变化的模式在不同区域内在空间上相似。表观扩散系数的时间变化与大脑内神经胶质细胞的变化相对应。定量MRI提供了一种非侵入性方法来监测〜(56)Fe粒子辐照后的时空大脑变化。表观扩散系数似乎是揭示体内正在进行的涉及多个细胞成分的组织修饰的敏感指标。

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