Multi-resolution X-ray phase-contrast and dark-field tomography of human cerebellum with near-field speckles

Author:

Savatović Sara1ORCID,Zdora Marie-Christine23,De Marco Fabio1ORCID,Bikis Christos45,Olbinado Margie3,Rack Alexander6ORCID,Müller Bert5ORCID,Thibault Pierre1ORCID,Zanette Irene1

Affiliation:

1. Elettra-Sincrotrone Trieste

2. ETH Zürich

3. Paul Scherrer Institut

4. Psychiatric Hospital in Winterthur

5. University of Basel

6. ESRF – The European Synchrotron

Abstract

In this study, we use synchrotron-based multi-modal X-ray tomography to examine human cerebellar tissue in three dimensions at two levels of spatial resolution (2.3 µm and 11.9 µm). We show that speckle-based imaging (SBI) produces results that are comparable to propagation-based imaging (PBI), a well-established phase-sensitive imaging method. The different SBI signals provide complementary information, which improves tissue differentiation. In particular, the dark-field signal aids in distinguishing tissues with similar average electron density but different microstructural variations. The setup’s high resolution and the imaging technique’s excellent phase sensitivity enabled the identification of different cellular layers and additionally, different cell types within these layers. We also correlated this high-resolution phase-contrast information with measured dark-field signal levels. These findings demonstrate the viability of SBI and the potential benefit of the dark-field modality for virtual histology of brain tissue.

Funder

HORIZON EUROPE European Research Council

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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