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      Six-dimensional real and reciprocal space small-angle X-ray scattering tomography.

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          Abstract

          When used in combination with raster scanning, small-angle X-ray scattering (SAXS) has proven to be a valuable imaging technique of the nanoscale, for example of bone, teeth and brain matter. Although two-dimensional projection imaging has been used to characterize various materials successfully, its three-dimensional extension, SAXS computed tomography, poses substantial challenges, which have yet to be overcome. Previous work using SAXS computed tomography was unable to preserve oriented SAXS signals during reconstruction. Here we present a solution to this problem and obtain a complete SAXS computed tomography, which preserves oriented scattering information. By introducing virtual tomography axes, we take advantage of the two-dimensional SAXS information recorded on an area detector and use it to reconstruct the full three-dimensional scattering distribution in reciprocal space for each voxel of the three-dimensional object in real space. The presented method could be of interest for a combined six-dimensional real and reciprocal space characterization of mesoscopic materials with hierarchically structured features with length scales ranging from a few nanometres to a few millimetres--for example, biomaterials such as bone or teeth, or functional materials such as fuel-cell or battery components.

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          Author and article information

          Journal
          Nature
          Nature
          Springer Nature
          1476-4687
          0028-0836
          Nov 19 2015
          : 527
          : 7578
          Affiliations
          [1 ] Lehrstuhl für Biomedizinische Physik, Physik-Department &Institut für Medizintechnik, Technische Universität München, 85748 Garching, Germany.
          [2 ] Department of Medical Radiation Physics, Clinical Sciences, Lund, Lund University, 22185 Lund, Sweden.
          [3 ] Julius Wolff Institute, Charité - Universitätsmedizin Berlin, 13353 Berlin, Germany.
          [4 ] Paul Scherrer Institut, 5232 Villigen PSI, Switzerland.
          [5 ] Institut für diagnostische und interventionelle Radiologie, Klinikum rechts der Isar, Technische Universität München, 81675 München, Germany.
          Article
          nature16060
          10.1038/nature16060
          26581292
          d585fec7-d654-4896-9f2d-5553ecc075ff
          History

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