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Low-energy X-ray fluorescence microscopy opening new opportunities for bio-related research

机译:低能X射线荧光显微镜为生物相关研究开辟了新机遇

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摘要

Biological systems are unique matter with very complex morphology and highly heterogeneous chemical composition dominated by light elements. Discriminating qualitatively at the sub-micrometer level the lateral distribution of constituent elements, and correlating it to the sub-cellular biological structure, continues to be a challenge. The low-energy X-ray fluorescence microspectroscopy, recently implemented in TwinMic scanning transmission mode, has opened up new opportunities for mapping the distribution of the light elements, complemented by morphology information provided by simultaneous acquisition of absorption and phase contrast images. The important new information that can be obtained in bio-related research domains is demonstrated by two pilot experiments with specimens of interest for marine biology and food science. They demonstrate the potential to yield important insights into the structural and compositional enrichment, distribution and correlation of essential trace elements in the lorica of Tintinnopsis radix, and the lateral distribution of trace nutrients in the seeds of wheat Triticum aestivum.
机译:生物系统是独特的物质,具有非常复杂的形态和高度异质的化学成分,主要是轻元素。在亚微米水平上定性区分组成元素的横向分布,并将其与亚细胞生物学结构相关联,仍然是一个挑战。最近以TwinMic扫描透射模式实施的低能X射线荧光显微技术为映射光元素的分布开辟了新的机遇,同时获得了吸收和相衬图像的形态信息,从而补充了形态信息。在两个与海洋生物学和食品科学有关的标本中,通过两个试验性实验证明了可以在生物相关研究领域获得的重要新信息。他们证明了潜在的潜力,可用于研究丁香叶中的必需微量元素的结构和成分富集,分布和相关性,以及小麦小麦种子中微量营养素的侧向分布。

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