Larsson Emanuel, Gürsoy Doğa, De Carlo Francesco, Lilleodden Erica, Storm Malte, Wilde Fabian, Hu Kaixiong, Müller Martin, Greving Imke
Institute of Materials Research, Helmholtz-Zentrum Geesthacht, Max-Planck-Straße 1, Geesthacht 21502, Germany.
Advanced Photon Source, Argonne National Laboratory, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2019 Jan 1;26(Pt 1):194-204. doi: 10.1107/S1600577518015242.
Full-field transmission X-ray microscopy (TXM) is a well established technique, available at various synchrotron beamlines around the world as well as by laboratory benchtop devices. One of the major TXM challenges, due to its nanometre-scale resolution, is the overall instrument stability during the acquisition of the series of tomographic projections. The ability to correct for vertical and horizontal distortions of each projection image during acquisition is necessary in order to achieve the effective 3D spatial resolution. The effectiveness of such an image alignment is also heavily influenced by the absorption properties and strong contrast of specific features in the scanned sample. Here it is shown that nanoporous gold (NPG) can be used as an ideal 3D test pattern for evaluating and optimizing the performance of a TXM instrument for hard X-rays at a synchrotron beamline. Unique features of NPG, such as hierarchical structures at multiple length scales and high absorbing capabilities, makes it an ideal choice for characterization, which involves a combination of a rapid-alignment algorithm applied on the acquired projections followed by the extraction of a set of both 2D- and 3D-descriptive image parameters. This protocol can be used for comparing the efficiency of TXM instruments at different synchrotron beamlines in the world or benchtop devices, based on a reference library of scanned NPG samples, containing information about the estimated horizontal and vertical alignment values, 2D qualitative parameters and quantitative 3D parameters. The possibility to tailor the ligament sizes of NPG to match the achievable resolution in combination with the high electron density of gold makes NPG an ideal 3D test pattern for evaluating the status and performance of a given synchrotron-based or benchtop-based TXM setup.
全场透射X射线显微镜(TXM)是一项成熟的技术,在世界各地的各种同步加速器光束线以及实验室台式设备上均可使用。由于其纳米级分辨率,TXM面临的主要挑战之一是在采集一系列断层投影时仪器的整体稳定性。为了实现有效的三维空间分辨率,在采集过程中校正每个投影图像的垂直和水平畸变的能力是必要的。这种图像对齐的有效性还受到扫描样品中特定特征的吸收特性和强对比度的严重影响。本文表明,纳米多孔金(NPG)可作为一种理想的三维测试图案,用于评估和优化同步加速器光束线硬X射线TXM仪器的性能。NPG的独特特征,如多尺度的层次结构和高吸收能力,使其成为表征的理想选择,这涉及到对采集的投影应用快速对齐算法,然后提取一组二维和三维描述性图像参数。基于包含估计的水平和垂直对齐值、二维定性参数和定量三维参数信息的扫描NPG样品参考库,该协议可用于比较世界上不同同步加速器光束线或台式设备上TXM仪器的效率。将NPG的韧带尺寸定制为与可实现的分辨率相匹配的可能性,再加上金的高电子密度,使得NPG成为评估给定的基于同步加速器或台式TXM装置的状态和性能的理想三维测试图案。