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  TissueMiner: a multiscale analysis toolkit to quantify how cellular processes create tissue dynamics.

Etournay, R., Merkel, M., Popović, M., Brandl, H., Dye, N., Aigouy, B., et al. (2016). TissueMiner: a multiscale analysis toolkit to quantify how cellular processes create tissue dynamics. eLife, 5: e14334.

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 Creators:
Etournay, Raphael1, Author           
Merkel, Matthias, Author
Popović, Marko, Author
Brandl, Holger2, Author           
Dye, Natalie2, Author           
Aigouy, Benoit1, Author           
Salbreux, Guillaume, Author
Eaton, Suzanne2, Author           
Jülicher, Frank, Author
Affiliations:
1External Organizations, ou_persistent22              
2Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              

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 Abstract: Segmentation and tracking of cells in long-term time-lapse experiments has emerged as a powerful method to understand how tissue shape changes emerge from the complex choreography of constituent cells. However, methods to store and interrogate the large datasets produced by these experiments are not widely available. Furthermore, recently developed methods for relating tissue shape changes to cell dynamics have not yet been widely applied by biologists because of their technical complexity. We therefore developed a database format that stores cellular connectivity and geometry information of deforming epithelial tissues, and computational tools to interrogate it and perform multi-scale analysis of morphogenesis. We provide tutorials for this computational framework, called TissueMiner, and demonstrate its capabilities by comparing cell and tissue dynamics in vein and inter-vein subregions of the Drosophila pupal wing. These analyses reveal an unexpected role for convergent extension in shaping wing veins.

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 Dates: 2016
 Publication Status: Issued
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 Identifiers: eDoc: 732434
Other: 6556
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Title: eLife
Source Genre: Journal
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Pages: - Volume / Issue: 5 Sequence Number: e14334 Start / End Page: - Identifier: -