about
Chase-and-run between adjacent cell populations promotes directional collective migrationNeural crest and placode interaction during the development of the cranial sensory systemGenetic network during neural crest induction: from cell specification to cell survival.A Versatile Mounting Method for Long Term Imaging of Zebrafish Development.Directional cell movements downstream of Gbx2 and Otx2 control the assembly of sensory placodes.Evo-engineering and the cellular and molecular origins of the vertebrate spinal cord.Early neural crest induction requires an initial inhibition of Wnt signals.Mutual repression between Gbx2 and Otx2 in sensory placodes reveals a general mechanism for ectodermal patterning.Species-specific contribution of volumetric growth and tissue convergence to posterior body elongation in vertebrates.Anteroposterior polarity and elongation in the absence of extra-embryonic tissues and of spatially localised signalling in gastruloids: mammalian embryonic organoids.On the nature and function of organizers.A novel human pluripotent stem cell-derived neural crest model of Treacher Collins Syndrome shows defects in cell death and migrationNeuromesodermal progenitors are a conserved source of spinal cord with divergent growth dynamicsThe Chick Caudolateral Epiblast Acts as a Permissive Niche for Generating Neuromesodermal Progenitor BehavioursCorrection: Neuromesodermal progenitors are a conserved source of spinal cord with divergent growth dynamics (doi: 10.1242/dev.166728)
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description
researcher ORCID ID = 0000-0001-7838-839X
@en
wetenschapper
@nl
name
Benjamin Steventon
@ast
Benjamin Steventon
@en
Benjamin Steventon
@es
Benjamin Steventon
@nl
type
label
Benjamin Steventon
@ast
Benjamin Steventon
@en
Benjamin Steventon
@es
Benjamin Steventon
@nl
prefLabel
Benjamin Steventon
@ast
Benjamin Steventon
@en
Benjamin Steventon
@es
Benjamin Steventon
@nl
P108
P106
P31
P496
0000-0001-7838-839X