Volumetric Nanoscale Imaging: Hard X‐Ray Nanoholotomography: Large‐Scale, Label‐Free, 3D Neuroimaging beyond Optical Limit (Adv. Sci. 6/2018)

In article number 1700694, Bert Müller and co‐workers launch nano‐holotomography for the isotropic 3D imaging of paraffin‐embedded human brain tissues. Nano‐holotomography bridges the spatial resolution gap between optical and electron microscopy, while giving access to 3D data for large tissue volu...

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Veröffentlicht in:Advanced science 2018-06, Vol.5 (6), p.n/a
Hauptverfasser: Khimchenko, Anna, Bikis, Christos, Pacureanu, Alexandra, Hieber, Simone E., Thalmann, Peter, Deyhle, Hans, Schweighauser, Gabriel, Hench, Jürgen, Frank, Stephan, Müller‐Gerbl, Magdalena, Schulz, Georg, Cloetens, Peter, Müller, Bert
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container_issue 6
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container_title Advanced science
container_volume 5
creator Khimchenko, Anna
Bikis, Christos
Pacureanu, Alexandra
Hieber, Simone E.
Thalmann, Peter
Deyhle, Hans
Schweighauser, Gabriel
Hench, Jürgen
Frank, Stephan
Müller‐Gerbl, Magdalena
Schulz, Georg
Cloetens, Peter
Müller, Bert
description In article number 1700694, Bert Müller and co‐workers launch nano‐holotomography for the isotropic 3D imaging of paraffin‐embedded human brain tissues. Nano‐holotomography bridges the spatial resolution gap between optical and electron microscopy, while giving access to 3D data for large tissue volumes with a spatial resolution well below 100 nm. The hierarchical approach will mediate prospering nano‐anatomy.
doi_str_mv 10.1002/advs.201870036
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subjects cerebellum
Frontispiece
hierarchical imaging
human brain
neocortexes
neuroimaging
segmentation
title Volumetric Nanoscale Imaging: Hard X‐Ray Nanoholotomography: Large‐Scale, Label‐Free, 3D Neuroimaging beyond Optical Limit (Adv. Sci. 6/2018)
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