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Imaging intact human organs with local resolution of cellular structures using hierarchical phase-contrast tomography
by
Boller, E
, Werlein, C
, Bellier, A
, Brown, E
, Jonigk, D. D
, Jafree, D. J
, Marussi, S
, Wagner, W. L
, Long, D. A
, Walsh, C. L
, Holroyd, N
, Lee, P. D
, Walker-Samuel, S
, Robertus, J. L
, Tafforeau, P
, Jacob, J
, Ackermann, M
, Kühnel, M. P
in
Cellular structure
/ Computed tomography
/ Coronaviruses
/ COVID-19
/ Kidneys
/ Lungs
/ Medical imaging
/ Morphometry
/ Neuroimaging
/ Organs
/ Sample preparation
/ Spleen
/ Structural hierarchy
/ Synchrotron radiation
/ Synchrotrons
/ Tomography
/ Viral diseases
2021
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Imaging intact human organs with local resolution of cellular structures using hierarchical phase-contrast tomography
by
Boller, E
, Werlein, C
, Bellier, A
, Brown, E
, Jonigk, D. D
, Jafree, D. J
, Marussi, S
, Wagner, W. L
, Long, D. A
, Walsh, C. L
, Holroyd, N
, Lee, P. D
, Walker-Samuel, S
, Robertus, J. L
, Tafforeau, P
, Jacob, J
, Ackermann, M
, Kühnel, M. P
in
Cellular structure
/ Computed tomography
/ Coronaviruses
/ COVID-19
/ Kidneys
/ Lungs
/ Medical imaging
/ Morphometry
/ Neuroimaging
/ Organs
/ Sample preparation
/ Spleen
/ Structural hierarchy
/ Synchrotron radiation
/ Synchrotrons
/ Tomography
/ Viral diseases
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Imaging intact human organs with local resolution of cellular structures using hierarchical phase-contrast tomography
by
Boller, E
, Werlein, C
, Bellier, A
, Brown, E
, Jonigk, D. D
, Jafree, D. J
, Marussi, S
, Wagner, W. L
, Long, D. A
, Walsh, C. L
, Holroyd, N
, Lee, P. D
, Walker-Samuel, S
, Robertus, J. L
, Tafforeau, P
, Jacob, J
, Ackermann, M
, Kühnel, M. P
in
Cellular structure
/ Computed tomography
/ Coronaviruses
/ COVID-19
/ Kidneys
/ Lungs
/ Medical imaging
/ Morphometry
/ Neuroimaging
/ Organs
/ Sample preparation
/ Spleen
/ Structural hierarchy
/ Synchrotron radiation
/ Synchrotrons
/ Tomography
/ Viral diseases
2021
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Imaging intact human organs with local resolution of cellular structures using hierarchical phase-contrast tomography
Journal Article
Imaging intact human organs with local resolution of cellular structures using hierarchical phase-contrast tomography
2021
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Overview
Imaging intact human organs from the organ to the cellular scale in three dimensions is a goal of biomedical imaging. To meet this challenge, we developed hierarchical phase-contrast tomography (HiP-CT), an X-ray phase propagation technique using the European Synchrotron Radiation Facility (ESRF)’s Extremely Brilliant Source (EBS). The spatial coherence of the ESRF-EBS combined with our beamline equipment, sample preparation and scanning developments enabled us to perform non-destructive, three-dimensional (3D) scans with hierarchically increasing resolution at any location in whole human organs. We applied HiP-CT to image five intact human organ types: brain, lung, heart, kidney and spleen. HiP-CT provided a structural overview of each whole organ followed by multiple higher-resolution volumes of interest, capturing organotypic functional units and certain individual specialized cells within intact human organs. We demonstrate the potential applications of HiP-CT through quantification and morphometry of glomeruli in an intact human kidney and identification of regional changes in the tissue architecture in a lung from a deceased donor with coronavirus disease 2019 (COVID-19).Hierarchical phase-contrast tomography (HiP-CT) enables multiscale imaging of any region within an intact human organ down to cellular resolution. HiP-CT of five organ types revealed 3D morphological features in healthy and diseased tissue.
Publisher
Nature Publishing Group
Subject
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