High-Resolution phase-Contrast imaging of submicron particles in Unstained lung tissue

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Abstract

To access the risks and chances of deposition of submicron particles in the gas-exchange area of the lung, a precise three-dimensional (3D)-localization of the sites of deposition is essential - especially because local peaks of deposition are expected in the acinar tree and in individual alveoli. In this study we developed the workflow for such an investigation. We administered 200-nm gold particles to young adult rats by intratracheal instillation. After fixation and paraffin embedding, their lungs were imaged unstained using synchrotron radiation x-ray tomographic microscopy (SRXTM) at the beamline TOMCAT (Swiss Light Source, Villigen, Switzerland) at sample detector distances of 2.5 mm (absorption contrast) and of 52.5 mm (phase contrast). A segmentation based on a global threshold of grey levels was successfully done on absorption-contrast images for the gold and on the phase-contrast images for the tissue. The smallest spots containing gold possessed a size of 1-2 voxels of 370-nm side length. We conclude that a combination of phase and absorption contrast SRXTM imaging is necessary to obtain the correct segmentation of both tissue and gold particles. This method will be used for the 3D localization of deposited particles in the gas-exchange area of the lung. © 2011 American Institute of Physics.

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Schittny, J. C., Barré, S. F., Mokso, R., Haberthür, D., Semmler-Behnke, M., Kreyling, W. G., … Stampanoni, M. (2010). High-Resolution phase-Contrast imaging of submicron particles in Unstained lung tissue. In AIP Conference Proceedings (Vol. 1365, pp. 384–387). https://doi.org/10.1063/1.3625383

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