X-ray Tomography

X-ray tomography is a noninvasive imaging method that reconstructs the internal structure of an object from multiple X-ray projections, making it valuable for studying complex materials and biological systems. During scanning, an object rotates relative to an X-ray source and detector, while differences in X-ray attenuation are recorded and computationally reconstructed into cross-sectional or three-dimensional images. In bioengineering, X-ray tomography can characterize bone architecture, tissue scaffolds, implants, and engineered constructs without sectioning or destroying them. The resulting measurements reveal features such as porosity, density, connectivity, and structural defects, supporting research in biomechanics, regenerative medicine, device development, and quality assessment.

X-ray Tomography - Related Videos

Research

JoVE Journal - Environment

Tree Core Analysis with X-ray Computed Tomography

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Cited by 10 •

2023

Here we show how to process tree cores with an X-ray computed tomography toolchain. Except for chemical extraction for some purposes, no further physical lab treatment is needed. The toolchain can be used for biomass estimations, for obtaining MXD/tree-ring width data as well as for obtaining quantitative wood anatomy data.

Research

JoVE Journal - Engineering
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Energy Dispersive X-ray Tomography for 3D Elemental Mapping of Individual Nanoparticles

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Cited by 11 •

2016

The use of energy dispersive X-ray tomography in the scanning transmission electron microscope to characterize elemental distributions within single nanoparticles in three dimensions is described.

Non-invasive 3D-Visualization with Sub-micron Resolution Using Synchrotron-X-ray-tomography

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Cited by 9 •

2008

We used synchrotron X-ray tomography at the European Synchrotron Radiation Facility (ESRF) to non-invasively produce 3D tomographic datasets with a pixel-resolution of 0.7µm. Using volume rendering software, this allows the reconstruction of internal structures in their natural state without the artefacts produced by histological sectioning.

Measurement of X-ray Beam Coherence along Multiple Directions Using 2-D Checkerboard Phase Grating

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Cited by 10 •

2016

The measurement protocol and data analysis procedure are given for obtaining transverse coherence of a synchrotron radiation X-ray source along four directions simultaneously using a single 2-D checkerboard phase grating. This simple technique can be applied for complete transverse coherence characterization of X-ray sources and X-ray optics.

Preparing Adherent Cells for X-ray Fluorescence Imaging by Chemical Fixation

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Cited by 14 •

2015

Here, we present a protocol on how to determine the quantity and distribution of metals in a sample using synchrotron X-ray fluorescence. We focus on adherent cells, and describe the chemical fixation method to prepare this sample. We then describe how to mount and image the sample using synchrotron X-rays.

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