Ligne de temps

Raphaël Etournay
Chercheur(euse) Permanent(e)
19 juil. 2024
publication

In utero adeno-associated virus (AAV)-mediated gene delivery targeting sensory and supporting cells in the embryonic mouse inner ear.

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06 mai 2024
software

DNABarcodeCompatibility bioconductor R-package

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06 mai 2024
software

Zellige

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04 déc. 2023
publication

SCRIB controls apical contractility during epithelial differentiation.

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23 août 2022
publication

Extracting multiple surfaces from 3D microscopy images in complex biological tissues with the Zellige software tool.

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13 août 2021
team

Développement Cochléaire et perspectives Thérapeutiques

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16 juil. 2021
publication

SARS-CoV-2 infection induces the dedifferentiation of multiciliated cells and impairs mucociliary clearance.

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07 oct. 2020
project

Organoid-on-chip: controlling the spatial organization of inner ear organoids

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01 août 2019
publication

DNABarcodeCompatibility: an R-package for optimizing DNA-barcode combinations in multiplex sequencing experiments

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16 oct. 2017
publication

Cell dynamics underlying oriented growth of the wing imaginal disc

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19 janv. 2017
publication

Triangles bridge the scales: Quantifying cellular contributions to tissue deformation

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06 janv. 2017
publication

Active dynamics of tissue shear flow

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09 juin 2016
software

TissueMiner

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02 juin 2016
event

Santa Barbara Advanced School of Quantitative Biology

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26 mai 2016
publication

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

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23 juin 2015
publication

Interplay of cell dynamics and epithelial tension during morphogenesis of the Drosophila pupal wing

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04 sept. 2014
publication

The balance of prickle/spiny-legs isoforms controls the amount of coupling between core and fat PCP systems

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08 mars 2011
publication

[Cell flow reorients planar polarity in the wing of Drosophila]

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01 avr. 2010
publication

Cochlear outer hair cells undergo an apical circumference remodeling constrained by the hair bundle shape

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01 juil. 2005
publication

PHR1, an integral membrane protein of the inner ear sensory cells, directly interacts with myosin 1c and myosin VIIa.

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