Fiona Francis

Affiliations: 
Institut du Fer-à-Moulin  
Google:
"Fiona Francis"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Romero DM, Zaidi D, Cifuentes-Diaz C, et al. (2023) A human dynein heavy chain mutation impacts cortical progenitor cells causing developmental defects, reduced brain size and altered brain architecture. Neurobiology of Disease. 180: 106085
Zaidi D, Chinnappa K, Francis F. (2022) Primary Cilia Influence Progenitor Function during Cortical Development. Cells. 11
Romero DM, Poirier K, Belvindrah R, et al. (2022) Novel role of the synaptic scaffold protein Dlgap4 in ventricular surface integrity and neuronal migration during cortical development. Nature Communications. 13: 2746
Jabali A, Hoffrichter A, Uzquiano A, et al. (2022) Human cerebral organoids reveal progenitor pathology in EML1-linked cortical malformation. Embo Reports. e54027
Penisson M, Jin M, Wang S, et al. (2021) Lis1 mutation prevents basal radial glia-like cell production in the mouse. Human Molecular Genetics
Klingler E, Francis F, Jabaudon D, et al. (2021) Mapping the molecular and cellular complexity of cortical malformations. Science (New York, N.Y.). 371
Ferent J, Zaidi D, Francis F. (2020) Extracellular Control of Radial Glia Proliferation and Scaffolding During Cortical Development and Pathology. Frontiers in Cell and Developmental Biology. 8: 578341
Francis F, Cappello S. (2020) Neuronal migration and disorders - an update. Current Opinion in Neurobiology. 66: 57-68
Ferent J, Zaidi D, Francis F. (2020) Extracellular Control of Radial Glia Proliferation and Scaffolding During Cortical Development and Pathology Frontiers in Cell and Developmental Biology. 8
Penisson M, Ladewig J, Belvindrah R, et al. (2019) Genes and Mechanisms Involved in the Generation and Amplification of Basal Radial Glial Cells. Frontiers in Cellular Neuroscience. 13: 381
See more...