Three-dimensional hard and soft tissue imaging of the human cochlea by scanning laser optical tomography (SLOT)

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Tinne, N.; Antonopoulos, G.C.; Mohebbi, S.; Andrade, J.; Nolte, L. et al.: Three-dimensional hard and soft tissue imaging of the human cochlea by scanning laser optical tomography (SLOT). In: PLoS ONE 12 (2017), Nr. 9, e0184069. DOI: https://doi.org/10.1371/journal.pone.0184069

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The present study focuses on the application of scanning laser optical tomography (SLOT) for visualization of anatomical structures inside the human cochlea ex vivo. SLOT is a laser-based highly efficient microscopy technique which allows for tomographic imaging of the internal structure of transparent specimens. Thus, in the field of otology this technique is best convenient for an ex vivo study of the inner ear anatomy. For this purpose, the preparation before imaging comprises decalcification, dehydration as well as optical clearing of the cochlea samples in toto. Here, we demonstrate results of SLOT imaging visualizing hard and soft tissue structures with an optical resolution of down to 15 μm using extinction and autofluorescence as contrast mechanisms. Furthermore, the internal structure can be analyzed nondestructively and quantitatively in detail by sectioning of the three-dimensional datasets. The method of X-ray Micro Computed Tomography (μCT) has been previously applied to explanted cochlea and is solely based on absorption contrast. An advantage of SLOT is that it uses visible light for image formation and thus provides a variety of contrast mechanisms known from other light microscopy techniques, such as fluorescence or scattering. We show that SLOT data is consistent with μCT anatomical data and provides additional information by using fluorescence. We demonstrate that SLOT is applicable for cochlea with metallic cochlear implants (CI) that would lead to significant artifacts in μCT imaging. In conclusion, the present study demonstrates the capability of SLOT for resolution visualization of cleared human cochleae ex vivo using multiple contrast mechanisms and lays the foundation for a broad variety of additional studies. © 2017 Tinne et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2017
Appears in Collections:Fakultät für Mathematik und Physik

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1 image of flag of Germany Germany 157 80.93%
2 image of flag of United States United States 21 10.82%
3 image of flag of China China 7 3.61%
4 image of flag of No geo information available No geo information available 3 1.55%
5 image of flag of Taiwan Taiwan 1 0.52%
6 image of flag of Turkey Turkey 1 0.52%
7 image of flag of Indonesia Indonesia 1 0.52%
8 image of flag of United Kingdom United Kingdom 1 0.52%
9 image of flag of Switzerland Switzerland 1 0.52%
10 image of flag of Canada Canada 1 0.52%

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