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Development (Cambridge, England)|October 3, 2019
Cellular senescence in development, regeneration and diseaseMuriel Rhinn, Birgit Ritschka, William M KeyesThe FEBS Journal|March 1, 2023
Cellular senescence and developmental defectsAnnabelle Klein, Muriel Rhinn, William M KeyesPlos Biology|June 14, 2022
Aberrant induction of p19Arf-mediated cellular senescence contributes to neurodevelopmental defectsMuriel Rhinn, Irene Zapata-Bodalo, Annabelle Klein, et al.Development (Cambridge, England)|February 10, 2012
Retinoic acid signalling during developmentMuriel Rhinn, Pascal DolléGenes & Development|February 2, 2017
The senescence-associated secretory phenotype induces cellular plasticity and tissue regenerationBirgit Ritschka, Mekayla Storer, Alba Mas, et al.Current Opinion in Neurobiology|January 19, 2006
Global and local mechanisms of forebrain and midbrain patterningMuriel Rhinn, Alexander Picker, Michael BrandBiology Open|December 25, 2016
Meningeal retinoic acid contributes to neocortical lamination and radial migration during mouse brain developmentCarole Haushalter, Brigitte Schuhbaur, Pascal Dollé, et al.Proceedings of the National Academy of Sciences of the United States of America|September 21, 2011
Involvement of retinol dehydrogenase 10 in embryonic patterning and rescue of its loss of function by maternal retinaldehyde treatmentMuriel Rhinn, Brigitte Schuhbaur, Karen Niederreither, et al.Genes & Development|March 7, 2020
The senotherapeutic drug ABT-737 disrupts aberrant p21 expression to restore liver regeneration in adult miceBirgit Ritschka, Tania Knauer-Meyer, Daniel Sampaio Gonçalves, et al.Neural Development|April 4, 2009
Zebrafish gbx1 refines the midbrain-hindbrain boundary border and mediates the Wnt8 posteriorization signalMuriel Rhinn, Klaus Lun, Reiner Ahrendt, et al.Pageof 5