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Synchrotron radiation micro X-ray fluorescence spectroscopy of thin structures in bone samples: comparison of confocal and color X-ray camera setups

机译:骨骼样品中薄结构的同步辐射微X射线荧光光谱:共焦和彩色X射线照相机设置的比较

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摘要

In the quest for finding the ideal synchrotron-radiation-induced imaging method for the investigation of trace element distributions in human bone samples, experiments were performed using both a scanning confocal synchrotron radiation micro X-ray fluorescence (SR-µXRF) (FLUO beamline at ANKA) setup and a full-field color X-ray camera (BAMline at BESSY-II) setup. As zinc is a trace element of special interest in bone, the setups were optimized for its detection. The setups were compared with respect to count rate, required measurement time and spatial resolution. It was demonstrated that the ideal method depends on the element of interest. Although for Ca (a major constituent of the bone with a low energy of 3.69 keV for its Kα XRF line) the color X-ray camera provided a higher resolution in the plane, for Zn (a trace element in bone) only the confocal SR-µXRF setup was able to sufficiently image the distribution.
机译:为了找到一种理想的同步辐射诱导成像方法来研究人体骨骼样品中的微量元素分布,我们使用了扫描共聚焦同步辐射微X射线荧光(SR-µXRF)(FLUO束线于ANKA)设置和全场彩色​​X射线摄影机(BESSY-II的BAMline)设置。由于锌是骨骼中特别令人关注的微量元素,因此对其设置进行了优化以对其进行检测。比较了设置的计数率,所需的测量时间和空间分辨率。结果表明,理想的方法取决于感兴趣的元素。尽管对于Ca(其KαXRF线的能量低至3.69 keV的骨骼的主要成分),彩色X射线照相机在平面内提供了更高的分辨率,但对于Zn(骨骼中的微量元素)仅共焦SR -µXRF设置能够对分布进行充分成像。

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