High-Energy X-Ray Microprobe System with Submicron Resolution for X-Ray Fluorescence Analysis of Uranium in Biological Specimens

Y. Terada, S. Homma-Takeda, A. Takeuchi, Yoshio Suzuki
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引用次数: 14

Abstract

Total-external-reflection Kirkpatrick-Baez mirror optics for high-energy X-rays have been applied to the X-ray microprobe at beamline 37XU of SPring-8. A focused beam size of 1.0 μm (V)×0.83 μm (H) has been achieved at an X-ray energy of 30 keV, and a total photon flux of the focused beam was about 5×109 photons/s. Micro-X-ray fluorescence (μ-XRF) analysis of the uranium distribution in rat kidneys has been performed with the mirror-focused beam. The sensitivity of uranium was evaluated from the XRF intensity of thin standard samples, and the minimum detection limit was estimated at 10 μg/g. The high-spatial-resolution analysis revealed that uranium was concentrated in the epithelium of the proximal tubules in the inner cortex. The maximum concentration of uranium in the tubule was estimated to be 503 μg/g using a semiquantitative evaluation.
亚微米分辨率高能x射线微探针系统用于生物样品中铀的x射线荧光分析
将全外反射Kirkpatrick-Baez镜面光学技术应用于SPring-8光束线37XU处的x射线微探头。在x射线能量为30 keV的条件下,获得了尺寸为1.0 μm (V)×0.83 μm (H)的聚焦光束,聚焦光束的总光子通量约为5×109光子/s。采用镜面聚焦光束对大鼠肾脏中铀的分布进行了微x射线荧光(μ-XRF)分析。通过薄标准样品的XRF强度评价铀的灵敏度,估计最低检出限为10 μg/g。高空间分辨率分析显示,铀集中于内皮层近端小管上皮。采用半定量评价方法,估计小管中铀的最大浓度为503 μg/g。
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