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首页> 外文期刊>European Journal of Radiology >A comparison of rapid-scanning X-ray fluorescence mapping and magnetic resonance imaging to localize brain iron distribution.
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A comparison of rapid-scanning X-ray fluorescence mapping and magnetic resonance imaging to localize brain iron distribution.

机译:快速扫描X射线荧光图和磁共振成像对脑铁分布进行定位的比较。

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摘要

The clinical diagnosis of many neurodegenerative disorders relies primarily or exclusively on observed behaviors rather than measurable physical tests. One of the hallmarks of Alzheimer disease (AD) is the presence of amyloid-containing plaques associated with deposits of iron, copper and/or zinc. Work in other laboratories has shown that iron-rich plaques can be seen in the mouse brain in vivo with magnetic resonance imaging (MRI) using a high-field strength magnet but this iron cannot be visualized in humans using clinical magnets. To improve the interpretation of MRI, we correlated iron accumulation visualized by X-ray fluorescence spectroscopy, an element-specific technique with T1, T2, and susceptibility weighted MR (SWI) in a mouse model of AD. We show that SWI best shows areas of increased iron accumulation when compared to standard sequences.
机译:许多神经退行性疾病的临床诊断主要或完全依靠观察到的行为,而不是可测量的体格检查。阿尔茨海默氏病(AD)的标志之一是存在与铁,铜和/或锌沉积有关的含淀粉样蛋白的斑块。其他实验室的工作表明,使用高场强磁体的磁共振成像(MRI)可以在体内在小鼠大脑中看到富含铁的斑块,但是使用临床磁体无法在人体中看到这种铁。为了改善对MRI的解释,我们将X射线荧光光谱法,T1,T2和磁化率加权MR(SWI)的元素特异性技术在X射线荧光光谱法下观察到的铁蓄积相关联。我们显示,与标准序列相比,SWI最能显示出铁积累增加的区域。

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