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硬X射线显微(光谱)学:地质微生物学家的有力工具。

Hard X-ray micro(spectro)scopy: a powerful tool for the geomicrobiologists.

作者信息

Kemner K M

机构信息

Biosciences Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Geobiology. 2008 Jun;6(3):270-7. doi: 10.1111/j.1472-4669.2008.00145.x. Epub 2008 Apr 3.

Abstract

During the past few decades, the use of electron microscopy approaches - many developed by Terry Beveridge - to probe the physiology of microorganisms has become a mainstay in fields including microbiology, human health, and geomicrobiology. Recent developments of third-generation synchrotron X-ray sources and X-ray-based microscopy approaches for studying microbial systems have proved their utility as complements to the very powerful approaches regularly employed by electron microscopists. In addition, in recent geomicrobiological studies, researchers have begun to take advantage of the strengths of each technique by using the superior spatial resolution of the electron microscope (relative to the X-ray microscope) and the superior elemental sensitivity of the X-ray microscope (relative to the electron microscope), along with the ability of the X-ray microscope to spatially probe the chemical speciation of elements. The benefits of integrating these two nanoprobes for investigating the same microenvironments within a geomicrobial system are far superior to those of independent studies separately employing each probe.

摘要

在过去几十年里,利用电子显微镜方法——其中许多是由特里·贝弗里奇开发的——来探究微生物生理学,已成为微生物学、人类健康和地球微生物学等领域的一项主要手段。用于研究微生物系统的第三代同步加速器X射线源和基于X射线的显微镜方法的最新进展,已证明它们作为电子显微镜学家经常使用的非常强大的方法的补充手段的效用。此外,在最近的地球微生物学研究中,研究人员已开始通过利用电子显微镜(相对于X射线显微镜)的卓越空间分辨率、X射线显微镜(相对于电子显微镜)的卓越元素灵敏度,以及X射线显微镜在空间上探测元素化学形态的能力,来发挥每种技术的优势。将这两种纳米探针整合起来用于研究地球微生物系统内的相同微环境,其好处远远优于分别单独使用每种探针进行的独立研究。

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