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3D virtual pathohistology of lung tissue from Covid-19 patients based on phase contrast X-ray tomography

Marina Eckermann, Jasper Frohn, Marius Reichardt, Markus Osterhoff, Michael Sprung, Fabian Westermeier, Alexandar Tzankov, Christopher Werlein, Mark Kühnel, Danny Jonigk, Tim Salditt

2020eLife61 citationsDOIOpen Access PDF

Abstract

We present a three-dimensional (3D) approach for virtual histology and histopathology based on multi-scale phase contrast x-ray tomography, and use this to investigate the parenchymal architecture of unstained lung tissue from patients who succumbed to Covid-19. Based on this first proof-of-concept study, we propose multi-scale phase contrast x-ray tomography as a tool to unravel the pathophysiology of Covid-19, extending conventional histology by a third dimension and allowing for full quantification of tissue remodeling. By combining parallel and cone beam geometry, autopsy samples with a maximum cross section of 8 mm are scanned and reconstructed at a resolution and image quality, which allows for the segmentation of individual cells. Using the zoom capability of the cone beam geometry, regions-of-interest are reconstructed with a minimum voxel size of 167 nm. We exemplify the capability of this approach by 3D visualization of diffuse alveolar damage (DAD) with its prominent hyaline membrane formation, by mapping the 3D distribution and density of lymphocytes infiltrating the tissue, and by providing histograms of characteristic distances from tissue interior to the closest air compartment.

Topics & Concepts

TomographyHistologyVoxelX-ray microtomography3D reconstructionPathologyMaterials scienceMedicineRadiologyComputer scienceArtificial intelligenceAdvanced X-ray Imaging TechniquesDigital Holography and MicroscopyAI in cancer detection
3D virtual pathohistology of lung tissue from Covid-19 patients based on phase contrast X-ray tomography | Litcius