The neurogenic cranial placodes are a unique transient epithelial niche of neural progenitor cells that give rise to multiple derivatives of the peripheral nervous system, particularly, the sensory neurons. Placode neurogenesis occurs throughout an extended period of time with epithelial cells continually recruited as neural progenitor cells. Sensory neuron development in the trigeminal, epibranchial, otic, and olfactory placodes coincides with detachment of these neuroblasts from the encompassing epithelial sheet, leading to delamination and ingression into the mesenchyme where they continue to differentiate as neurons. Multiple signaling pathways are known to direct placodal development. This review defines the signaling pathways working ...
International audienceCranial placodes are transient ectodermal structures contributing to the paire...
Cranial placodes are focal regions of thickened ectoderm in the head of vertebrate embryos that give...
Fundamental to the complexity of the nervous system is the precise regulation in space and time of t...
AbstractWhereas neural crest cells are the source of the peripheral nervous system in the trunk of v...
Neurogenic placodes are specialized regions of embryonic ectoderm that generate the majority of the ...
AbstractSensory placodes are unique columnar epithelia with neurogenic potential that develop in the...
The neural crest (NC) cells and cranial placodes are two ectoderm-derived innovations in vertebrates...
International audienceKey to morphogenesis is the orchestration of cell movements in the embryo, whi...
Whereas neural crest cells are the source of the peripheral nervous system in the trunk of vertebrat...
AbstractKey to morphogenesis is the orchestration of cell movements in the embryo, which requires fi...
AbstractSpecialized sensory organs in the vertebrate head originate from thickenings in the embryoni...
AbstractNeurons of the vertebrate cranial sensory ganglia arise from both neural crest and a series ...
SummaryCranial placodes are embryonic structures essential for sensory and endocrine organ developme...
Cranial placodes are a uniquely vertebrate characteristic; they form the paired sense organs of the ...
The developing distal cranial sensory ganglia of the chick present an interesting and tractable mode...
International audienceCranial placodes are transient ectodermal structures contributing to the paire...
Cranial placodes are focal regions of thickened ectoderm in the head of vertebrate embryos that give...
Fundamental to the complexity of the nervous system is the precise regulation in space and time of t...
AbstractWhereas neural crest cells are the source of the peripheral nervous system in the trunk of v...
Neurogenic placodes are specialized regions of embryonic ectoderm that generate the majority of the ...
AbstractSensory placodes are unique columnar epithelia with neurogenic potential that develop in the...
The neural crest (NC) cells and cranial placodes are two ectoderm-derived innovations in vertebrates...
International audienceKey to morphogenesis is the orchestration of cell movements in the embryo, whi...
Whereas neural crest cells are the source of the peripheral nervous system in the trunk of vertebrat...
AbstractKey to morphogenesis is the orchestration of cell movements in the embryo, which requires fi...
AbstractSpecialized sensory organs in the vertebrate head originate from thickenings in the embryoni...
AbstractNeurons of the vertebrate cranial sensory ganglia arise from both neural crest and a series ...
SummaryCranial placodes are embryonic structures essential for sensory and endocrine organ developme...
Cranial placodes are a uniquely vertebrate characteristic; they form the paired sense organs of the ...
The developing distal cranial sensory ganglia of the chick present an interesting and tractable mode...
International audienceCranial placodes are transient ectodermal structures contributing to the paire...
Cranial placodes are focal regions of thickened ectoderm in the head of vertebrate embryos that give...
Fundamental to the complexity of the nervous system is the precise regulation in space and time of t...