Neural fold formation at newly created boundaries between neural plate and epidermis in the axolotl.
about
Neuronal patterning by BMPs: a requirement for GDF7 in the generation of a discrete class of commissural interneurons in the mouse spinal cordTime-lapse analysis and mathematical characterization elucidate novel mechanisms underlying muscle morphogenesisCellular mechanisms of neural fold formation and morphogenesis in the chick embryoTargeted disruption of the tyrosine hydroxylase locus results in severe catecholamine depletion and perinatal lethality in miceZebrafish narrowminded suggests a genetic link between formation of neural crest and primary sensory neuronsCutting, pasting and painting: experimental embryology and neural development.Specification and patterning of neural crest cells during craniofacial development.Bone morphogenetic protein signalling and vertebrate nervous system development.Rohon-Beard sensory neurons are induced by BMP4 expressing non-neural ectoderm in Xenopus laevis.Reconstruction of neural tube-like structures in vitro from primary neural precursor cells.The orphan G protein-coupled receptor, Gpr161, encodes the vacuolated lens locus and controls neurulation and lens development.The genesis of avian neural crest cells: a classic embryonic induction.Specification and regionalisation of the neural plate border.Neural crest specification: tissues, signals, and transcription factors.Delamination of neuroepithelium and nonneural ectoderm and its relation to the convergence step in chick neurulation.The evolution of chicken stem cell culture methods.Hematopoietic Stem Cells in Neural-crest Derived Bone Marrow.Early neural crest induction requires an initial inhibition of Wnt signals.Epidermal ectoderm is required for full elevation and for convergence during bending of the avian neural plate.The cellular basis of the convergence and extension of the Xenopus neural plate.Pigment patterns in adult fish result from superimposition of two largely independent pigmentation mechanisms.Expression of Xenopus snail in mesoderm and prospective neural fold ectoderm.Cooperative model of epithelial shaping and bending during avian neurulation: autonomous movements of the neural plate, autonomous movements of the epidermis, and interactions in the neural plate/epidermis transition zone.
P2860
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P2860
Neural fold formation at newly created boundaries between neural plate and epidermis in the axolotl.
description
1989 nî lūn-bûn
@nan
1989 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
1989 թվականի մայիսին հրատարակված գիտական հոդված
@hy
1989年の論文
@ja
1989年論文
@yue
1989年論文
@zh-hant
1989年論文
@zh-hk
1989年論文
@zh-mo
1989年論文
@zh-tw
1989年论文
@wuu
name
Neural fold formation at newly ...... and epidermis in the axolotl.
@ast
Neural fold formation at newly ...... and epidermis in the axolotl.
@en
Neural fold formation at newly ...... and epidermis in the axolotl.
@nl
type
label
Neural fold formation at newly ...... and epidermis in the axolotl.
@ast
Neural fold formation at newly ...... and epidermis in the axolotl.
@en
Neural fold formation at newly ...... and epidermis in the axolotl.
@nl
prefLabel
Neural fold formation at newly ...... and epidermis in the axolotl.
@ast
Neural fold formation at newly ...... and epidermis in the axolotl.
@en
Neural fold formation at newly ...... and epidermis in the axolotl.
@nl
P1476
Neural fold formation at newly ...... and epidermis in the axolotl.
@en
P2093
P356
10.1016/0012-1606(89)90295-9
P407
P577
1989-05-01T00:00:00Z