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Propagation-based phase-contrast tomography of a guinea pig inner ear with cochlear implant using a model-based iterative reconstruction algorithm

Authors :
Benedikt Günther
Joerg Hammel
Lorenz Hehn
Werner Hemmert
Kaye S. Morgan
Christoph Jud
Regine Gradl
Martin Dierolf
Sebastian Allner
Konstantin Willer
Julia Herzen
Andrej Voss
Franz Pfeiffer
Roland Hessler
Source :
Biomedical optics express 9(11), 5330-5339 (2018). doi:10.1364/BOE.9.005330, Hehn, L.; Gradl, R.; Voss, A.; Guenther, B.; Dierolf, M.; Jud, C.; Willer, K.; Allner, S.; Hammel, J.U.; Hessler, R.; Morgan, K.S.; Herzen, J.; Hemmert, W.; Pfeiffer, F.: Propagation-based phase-contrast tomography of a guinea pig inner ear with cochlear implant using a model-based iterative reconstruction algorithm. In: Biomedical Optics Express. Vol. 9 (2018) 11, 5330-5339. (DOI: /10.1364/BOE.9.005330), Biomedical Optics Express
Publication Year :
2018
Publisher :
The Optical Society, 2018.

Abstract

Biomedical optics express 9(11), 5330 - 5339 (2018). doi:10.1364/BOE.9.005330<br />Propagation-based phase-contrast computed tomography has become a valuable tool for visualization of three-dimensional biological samples, due to its high contrast between materials with similar attenuation properties. However, one of the most-widely used phase-retrieval algorithms imposes a homogeneity assumption onto the sample, which leads to artifacts for numerous applications where this assumption is violated. Prominent examples are biological samples with highly-absorbing implants. Using synchrotron radiation, we demonstrate by the example of a guinea pig inner ear with a cochlear implant electrode, how a recently developed model-based iterative algorithm for propagation-based phase-contrast computed tomography yields distinct benefits for such a task. We find that the model-based approach improves the overall image quality, removes the detrimental influence of the implant and accurately visualizes the cochlea.<br />Published by OSA, Washington, DC

Details

ISSN :
21567085
Volume :
9
Database :
OpenAIRE
Journal :
Biomedical Optics Express
Accession number :
edsair.doi.dedup.....c69ce17afadd9e596f6fcb033870475a
Full Text :
https://doi.org/10.1364/boe.9.005330