AbstractHow does the vertebrate embryo make a nervous system? This complex question has been at the center of developmental biology for many years. The earliest step in this process – the induction of neural tissue – is intimately linked to patterning of the entire early embryo, and the molecular and embryological of basis these processes are beginning to emerge. Here, we analyze classic and cutting-edge findings on neural induction in the mouse. We find that data from genetics, tissue explants, tissue grafting, and molecular marker expression support a coherent framework for mammalian neural induction. In this model, the gastrula organizer of the mouse embryo inhibits BMP signaling to allow neural tissue to form as a default fate—in the ab...
AbstractResearch on the mechanisms of embryonic induction had a great setback in the 1940s when Bart...
Induction of neural differentiation from embryonic pluripotent stem cells (ES/EpiSc), both of mouse ...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...
AbstractHow does the vertebrate embryo make a nervous system? This complex question has been at the ...
AbstractThe organizer of vertebrate embryos represents the major regulatory center for the formation...
AbstractThe signals which induce vertebrate neural tissue and pattern it along the anterior–posterio...
AbstractThe question of how the vertebrate embryo gives rise to a nervous system is of paramount int...
The question of how the vertebrate embryo gives rise to a nervous system is of paramount interest in...
AbstractRecent molecular insights on how the ectodermal layer is patterned in vertebrates are review...
During development of the mammalian embryo, there is a complex relation between formation of the mes...
Textbook accounts of vertebrate embryonic development have been based largely upon experiments on am...
Neural crest cells form at the border between the neural plate and the epidermis. The tissue interac...
The neural crest is an embryonic cell population that originates at the border between the neural pl...
The specification of a subset of epiblast cells to acquire a neural fate constitutes the first step ...
AbstractLittle is known about how neural stem cells are formed initially during development. We inve...
AbstractResearch on the mechanisms of embryonic induction had a great setback in the 1940s when Bart...
Induction of neural differentiation from embryonic pluripotent stem cells (ES/EpiSc), both of mouse ...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...
AbstractHow does the vertebrate embryo make a nervous system? This complex question has been at the ...
AbstractThe organizer of vertebrate embryos represents the major regulatory center for the formation...
AbstractThe signals which induce vertebrate neural tissue and pattern it along the anterior–posterio...
AbstractThe question of how the vertebrate embryo gives rise to a nervous system is of paramount int...
The question of how the vertebrate embryo gives rise to a nervous system is of paramount interest in...
AbstractRecent molecular insights on how the ectodermal layer is patterned in vertebrates are review...
During development of the mammalian embryo, there is a complex relation between formation of the mes...
Textbook accounts of vertebrate embryonic development have been based largely upon experiments on am...
Neural crest cells form at the border between the neural plate and the epidermis. The tissue interac...
The neural crest is an embryonic cell population that originates at the border between the neural pl...
The specification of a subset of epiblast cells to acquire a neural fate constitutes the first step ...
AbstractLittle is known about how neural stem cells are formed initially during development. We inve...
AbstractResearch on the mechanisms of embryonic induction had a great setback in the 1940s when Bart...
Induction of neural differentiation from embryonic pluripotent stem cells (ES/EpiSc), both of mouse ...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...