Fast automatic multiscale electron tomography for sensitive materials under environmental conditions.

Louis-Marie Lebas, Karine Masenelli-Varlot, Victor Trillaud, Cédric Messaoudi, Mimoun Aouine, Laurence Burel, Valentine Noblesse, Clémentine Fellah, Erwan Allain, Christophe Goudin, José Ferreira, Matthieu Amor, Lucian Roiban
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Abstract

The demand for characterisation of beam-sensitive samples at the nanoscale in environmental conditions is increasing for applications in materials science and biology. Here we communicate a protocol with custom software, enabling precise control over the electron microscope, and a custom sample holder, facilitating automated acquisition of fast 3D data from a single object under environmental conditions. This method enables imaging with a controlled electron dose and multi-modal electron signals. The method can be used in environmental scanning or transmission electron microscopes for easy sample preparation and to benefit from high spatial resolution, respectively. To demonstrate its effectiveness, we investigate the porosity of Al(OH)3 hydrogels, and the penetration ability and distribution of gold nanoparticles. Unfixed, hydrated magnetotactic bacteria producing intracellular iron oxide nanoparticles were also characterized in 3D in their native state. This methodological and technical development serves as a milestone in the study of various samples at any humidity level, offering easier sample preparation compared to cryo-TEM techniques, while maintaining a similar or even lower dose level.

环境条件下敏感材料的快速自动多尺度电子断层扫描。
在材料科学和生物学的应用中,对环境条件下纳米级光束敏感样品表征的需求正在增加。在这里,我们与定制软件通信协议,实现对电子显微镜的精确控制,以及定制样品支架,促进在环境条件下从单个对象自动获取快速3D数据。该方法能够使用受控的电子剂量和多模态电子信号进行成像。该方法可用于环境扫描显微镜或透射电子显微镜,样品制备方便,空间分辨率高。为了证明其有效性,我们研究了Al(OH)3水凝胶的孔隙率,以及金纳米颗粒的渗透能力和分布。在原生状态下,产生细胞内氧化铁纳米颗粒的不固定的水合趋磁细菌也被三维表征。这种方法和技术的发展是在任何湿度水平下研究各种样品的里程碑,与冷冻透射电镜技术相比,提供更容易的样品制备,同时保持相似甚至更低的剂量水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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