Stain-free virtual histology of Bombus terrestris compound eyes by laboratory phase-contrast nano-CT

Author(s):  
Jenny Romell ◽  
Vun Wen Jie ◽  
Arttu Miettinen ◽  
Emily Baird ◽  
Hans M. Hertz
2021 ◽  
Author(s):  
Jenny Romell ◽  
Vun Wen Jie ◽  
Arttu Miettinen ◽  
Emily Baird ◽  
Hans M. Hertz

2021 ◽  
Author(s):  
Matthieu Chourrout ◽  
Margaux Roux ◽  
Carlie Boisvert ◽  
Coralie Gislard ◽  
David Legland ◽  
...  

While numerous transgenic mouse strains have been produced to model the formation of amyloid-β (Aβ) plaques in the brain, efficient methods for whole-brain 3D analysis of Aβ deposits are lacking. Moreover, standard immunohistochemistry performed on brain slices precludes any shape analysis of Aβ plaques. The present study shows how in-line (propagation-based) X-ray phase-contrast tomography (XPCT) combined with ethanol-induced brain sample dehydration enables hippocampus-wide detection and morphometric analysis of Aβ plaques. Performed in three distinct Alzheimer mouse strains, the proposed workflow identified differences in signal intensity and 3D shape parameters: 3xTg displayed a different type of Aβ plaques, with a larger volume and area, greater elongation, flatness and mean breadth, and more intense average signal than J20 and APP/PS1. As a label-free non-destructive technique, XPCT can be combined with standard immunohistochemistry. XPCT virtual histology could thus become instrumental in quantifying the 3D spreading and the morphological impact of seeding when studying prion-like properties of Aβ aggregates in animal models of Alzheimer's disease. This is Part II of a series of two articles reporting the value of in-line XPCT for virtual histology of the brain; Part I shows how in-line XPCT enables 3D myelin mapping in the whole rodent brain and in human autopsy brain tissue.


Author(s):  
Mariele Romano ◽  
Dr. Alberto Bravin ◽  
Dr. Michael D. Wright ◽  
Laurent Jacques ◽  
Dr. Arttu Miettinen ◽  
...  

2018 ◽  
Vol 25 (4) ◽  
pp. 1153-1161 ◽  
Author(s):  
Mara Saccomano ◽  
Jonas Albers ◽  
Giuliana Tromba ◽  
Marina Dobrivojević Radmilović ◽  
Srećko Gajović ◽  
...  

Synchrotron radiation micro-computed tomography (SRµCT) based virtual histology, in combination with dedicated ex vivo staining protocols and/or phase contrast, is an emerging technology that makes use of three-dimensional images to provide novel insights into the structure of tissue samples at microscopic resolution with short acquisition times of the order of minutes or seconds. However, the high radiation dose creates special demands on sample preparation and staining. As a result of the lack of specific staining in virtual histology, it can supplement but not replace classical histology. Therefore, the aim of this study was to establish and compare optimized ex vivo staining and acquisition protocols for SRµCT-based virtual histology of soft-tissue samples, which could be integrated into the standard workflow of classical histology. The high grade of coherence of synchrotron radiation allows the application of propagation-based phase contrast imaging (PBI). In this study, PBI yielded a strong increase in image quality even at lower radiation doses and consequently prevented any damage to the tissue samples or the embedding material. This work has demonstrated that the improvement in contrast-to-noise ratio by PBI enabled label-free virtual histology of soft-tissue specimens embedded in paraffin to a level of detail that exceeds that achieved with staining protocols.


2021 ◽  
Author(s):  
Marina Eckermann ◽  
Franziska van der Meer ◽  
Peter Cloetens ◽  
Torben Ruhwedel ◽  
Wiebke Moebius ◽  
...  

2016 ◽  
Author(s):  
Mareike Töpperwien ◽  
Martin Krenkel ◽  
Felix Quade ◽  
Tim Salditt

Author(s):  
Lorenzo Massimi ◽  
Tamara Suaris ◽  
Charlotte K. Hagen ◽  
Marco Endrizzi ◽  
Peter R. T. Munro ◽  
...  

2018 ◽  
Vol 24 (S2) ◽  
pp. 24-25
Author(s):  
Mareike Töpperwien ◽  
Marina Eckermann ◽  
Anna-Lena Robisch ◽  
Christine Stadelmann ◽  
Tim Salditt

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