AbstractIn this review, we outline the gene-regulatory interactions driving neural crest development and compare these to a hypothetical network operating in the embryonic ectoderm of the cephalochordate amphioxus. While the early stages of ectodermal patterning appear conserved between amphioxus and vertebrates, later activation of neural crest-specific factors at the neural plate border appears to be a vertebrate novelty. This difference may reflect co-option of genetic pathways which conferred novel properties upon the evolving vertebrate neural plate border, potentiating the evolution of definitive neural crest
AbstractThe neural crest is a multipotent and migratory cell type that forms transiently in the deve...
AbstractNeural crest development is orchestrated by a complex and still poorly understood gene regul...
[[sponsorship]]細胞與個體生物學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gatewa...
In this review, we outline the gene-regulatory interactions driving neural crest development and com...
AbstractIn this review, we outline the gene-regulatory interactions driving neural crest development...
The emergence of the neural crest has been proposed to play a key role in early vertebrate evolution...
AbstractNeural crest cells are unique to vertebrates and generate many of the adult structures that ...
AbstractThe neural crest is unique to vertebrates and has allowed the evolution of their complicated...
The neural crest is unique to vertebrates and has allowed the evolution of their complicated craniof...
The origin of vertebrates was accompanied by the advent of a novel cell type: the neural crest. Emer...
The neural crest is a multipotent migratory embryonic cell population that is present in all vertebr...
Neural crest cells are a fascinating embryonic cell type, unique to vertebrates, which arise within ...
The neural crest is a stem/progenitor cell population that contributes to a wide variety of derivat...
The neural crest is a multipotent stem cell–like population that gives rise to a wide range of deriv...
We have investigated the molecular interactions underlying neural crest formation in Xenopus. Using ...
AbstractThe neural crest is a multipotent and migratory cell type that forms transiently in the deve...
AbstractNeural crest development is orchestrated by a complex and still poorly understood gene regul...
[[sponsorship]]細胞與個體生物學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gatewa...
In this review, we outline the gene-regulatory interactions driving neural crest development and com...
AbstractIn this review, we outline the gene-regulatory interactions driving neural crest development...
The emergence of the neural crest has been proposed to play a key role in early vertebrate evolution...
AbstractNeural crest cells are unique to vertebrates and generate many of the adult structures that ...
AbstractThe neural crest is unique to vertebrates and has allowed the evolution of their complicated...
The neural crest is unique to vertebrates and has allowed the evolution of their complicated craniof...
The origin of vertebrates was accompanied by the advent of a novel cell type: the neural crest. Emer...
The neural crest is a multipotent migratory embryonic cell population that is present in all vertebr...
Neural crest cells are a fascinating embryonic cell type, unique to vertebrates, which arise within ...
The neural crest is a stem/progenitor cell population that contributes to a wide variety of derivat...
The neural crest is a multipotent stem cell–like population that gives rise to a wide range of deriv...
We have investigated the molecular interactions underlying neural crest formation in Xenopus. Using ...
AbstractThe neural crest is a multipotent and migratory cell type that forms transiently in the deve...
AbstractNeural crest development is orchestrated by a complex and still poorly understood gene regul...
[[sponsorship]]細胞與個體生物學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gatewa...