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Three-dimensional micro-XRF under cryogenic conditions: a pilot experiment for spatially resolved trace analysis in biological specimens

机译:低温条件下的三维微型XRF:生物样品中空间分辨痕量分析的试验性实验

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摘要

Three-dimensional micro-XRF is a recently developed microprobe which facilitates three-dimensional resolved chemical analyses with a resolution of around 20 μm. Arbitrary sites or sections of samples can be investigated without the need to section specimens physically. In this paper we demonstrate the use of the microprobe in combination with a cold nitrogen gas stream for the cryogenic fixation of specimens. A 3D micro-XRF setup at the new microfocus beamline at BESSY II was equipped with a nitrogen cryogenic stream. The distribution of Ca, Fe, Zn and Cu across virtual cross sections of a water-rich sample, the root of common duckweed, could be investigated without further sample preparation. This paper demonstrates the capabilities of 3D micro-XRF under cryogenic conditions for investigations of biological specimens.
机译:三维微型XRF是最近开发的微探针,可促进分辨率约为20μm的三维分辨化学分析。可以对任意位置或样品切片进行调查,而无需对样品进行物理切片。在本文中,我们演示了将微探针与冷氮气流结合使用以进行标本的低温固定。在BESSY II新的微聚焦光束线上的3D micro-XRF装置配备了氮气低温流。无需进一步制备样品即可研究富水样品(普通浮萍的根)的虚拟横截面中Ca,Fe,Zn和Cu的分布。本文演示了在低温条件下3D微型XRF用于生物学标本研究的能力。

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  • 来源
    《Analytical and Bioanalytical Chemistry》 |2007年第4期|1171-1176|共6页
  • 作者单位

    Institute for Optic and Atomic Physics Technical University of Berlin Hardenbergstr. 36 10623 Berlin Germany;

    Institute for Optic and Atomic Physics Technical University of Berlin Hardenbergstr. 36 10623 Berlin Germany;

    Institute for Optic and Atomic Physics Technical University of Berlin Hardenbergstr. 36 10623 Berlin Germany;

    Institute for Optic and Atomic Physics Technical University of Berlin Hardenbergstr. 36 10623 Berlin Germany;

    Institute for Applied Physical Chemistry University of Heidelberg Im Neuenheimer Feld 253 69120 Heidelberg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D micro-XRF; Duckweed; Lemna minor; Cryogenic cooling; Trace elements;

    机译:3D micro-XRF;浮萍;Lemna minor;低温冷却;痕量元素;

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