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LocalZProjector and DeProj: A toolbox for local 2D projection and accurate morphometrics of large 3D microscopy images

View ORCID ProfileSébastien Herbert, Léo Valon, Laure Mancini, View ORCID ProfileNicolas Dray, Paolo Caldarelli, View ORCID ProfileJérôme Gros, View ORCID ProfileElric Esposito, View ORCID ProfileSpencer L. Shorte, View ORCID ProfileLaure Bally-Cuif, View ORCID ProfileRomain Levayer, Nathalie Aulner, View ORCID ProfileJean-Yves Tinevez
doi: https://doi.org/10.1101/2021.01.15.426809
Sébastien Herbert
1Image Analysis Hub, C2RT / DTPS, Institut Pasteur, Paris, France
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  • ORCID record for Sébastien Herbert
Léo Valon
2Cell death and epithelial homeostasis unit, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France
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Laure Mancini
3Zebrafish Neurogenetics unit, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France. Team supported by the Ligue Nationale Contre le Cancer
4Sorbonne Université, Collège doctoral, F-75005 Paris, France
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Nicolas Dray
3Zebrafish Neurogenetics unit, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France. Team supported by the Ligue Nationale Contre le Cancer
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Paolo Caldarelli
5Dynamic Regulation of Morphogenesis, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France; Paris, France
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Jérôme Gros
5Dynamic Regulation of Morphogenesis, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France; Paris, France
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Elric Esposito
6UTechS PBI, C2RT / DTPS, Institut Pasteur, Paris, France
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  • ORCID record for Elric Esposito
Spencer L. Shorte
6UTechS PBI, C2RT / DTPS, Institut Pasteur, Paris, France
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  • ORCID record for Spencer L. Shorte
Laure Bally-Cuif
3Zebrafish Neurogenetics unit, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France. Team supported by the Ligue Nationale Contre le Cancer
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Romain Levayer
2Cell death and epithelial homeostasis unit, Developmental and Stem Cell Biology Department, UMR3738 CNRS, Institut Pasteur, Paris, France
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  • ORCID record for Romain Levayer
Nathalie Aulner
6UTechS PBI, C2RT / DTPS, Institut Pasteur, Paris, France
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Jean-Yves Tinevez
1Image Analysis Hub, C2RT / DTPS, Institut Pasteur, Paris, France
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  • ORCID record for Jean-Yves Tinevez
  • For correspondence: jean-yves.tinevez@pasteur.fr
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Abstract

Background Quantitative imaging of epithelial tissues prompts for bioimage analysis tools that are widely applicable and accurate. In the case of imaging 3D tissues, a common pre-processing step consists in projecting the acquired 3D volume on a 2D plane mapping the tissue surface. Indeed, while segmenting the tissue cells is amenable on 2D projections, it is still very difficult and cumbersome in 3D. However, for many specimen and models used in Developmental and Cell Biology, the complex content of the image volume surrounding the epithelium in a tissue often reduces the visibility of the biological object in the projection, compromising its subsequent analysis. In addition, the projection may distort the geometry of the tissue and can lead to strong artifacts in the morphology measurement.

Results Here we introduce a user-friendly toolbox built to robustly project epithelia on their 2D surface from 3D volumes, and to produce accurate morphology measurement corrected for the projection distortion, even for very curved tissues. Our toolbox is built upon two components. LocalZProjector is a user-friendly and configurable Fiji plugin that generates 2D projections and height-maps from potentially large 3D stacks (larger than 40 GB per time-point) by only incorporating signal of the planes with local highest variance/mean intensity, despite a possibly complex image content. DeProj is a MATLAB tool that generates correct morphology measurements by combining the height-map output (such as the one offered by LocalZProjector) and the results of a cell segmentation on the 2D projection, hence effectively deprojecting the 2D segmentation in 3D. In this paper we demonstrate their effectiveness over a wide range of different biological samples. We then compare its performance and accuracy against similar existing tools.

Conclusions We find that LocalZProjector performs well even in situations where the volume to project also contains un-wanted signal in other layers. We show that it can process large images without a pre-processing step. We study the impact of geometrical distortions on morphological measurements induced by the projection. We measured very large distortions which are then corrected by DeProj, providing accurate outputs.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Incorporate reviewers points, comments and suggestions.

  • https://gitlab.pasteur.fr/iah-public/LocalZProjector

  • https://gitlab.pasteur.fr/iah-public/DeProj

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted April 05, 2021.
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LocalZProjector and DeProj: A toolbox for local 2D projection and accurate morphometrics of large 3D microscopy images
Sébastien Herbert, Léo Valon, Laure Mancini, Nicolas Dray, Paolo Caldarelli, Jérôme Gros, Elric Esposito, Spencer L. Shorte, Laure Bally-Cuif, Romain Levayer, Nathalie Aulner, Jean-Yves Tinevez
bioRxiv 2021.01.15.426809; doi: https://doi.org/10.1101/2021.01.15.426809
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LocalZProjector and DeProj: A toolbox for local 2D projection and accurate morphometrics of large 3D microscopy images
Sébastien Herbert, Léo Valon, Laure Mancini, Nicolas Dray, Paolo Caldarelli, Jérôme Gros, Elric Esposito, Spencer L. Shorte, Laure Bally-Cuif, Romain Levayer, Nathalie Aulner, Jean-Yves Tinevez
bioRxiv 2021.01.15.426809; doi: https://doi.org/10.1101/2021.01.15.426809

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