Pages that link to "Q36856688"
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The following pages link to Proposal of a model of mammalian neural induction (Q36856688):
Displaying 50 items.
- FGF signalling: diverse roles during early vertebrate embryogenesis (Q24630591) (← links)
- Neural Conversion and Patterning of Human Pluripotent Stem Cells: A Developmental Perspective (Q26749087) (← links)
- Current perspectives of the signaling pathways directing neural crest induction (Q27024905) (← links)
- From pluripotency to forebrain patterning: an in vitro journey astride embryonic stem cells (Q27030826) (← links)
- An otx/nodal regulatory signature for posterior neural development in ascidians (Q27314530) (← links)
- Multi-compartmental biomaterial scaffolds for patterning neural tissue organoids in models of neurodevelopment and tissue regeneration (Q27928032) (← links)
- Organoids and the genetically encoded self-assembly of embryonic stem cells (Q28271001) (← links)
- Increased β‐catenin activity in the anterior neural plate induces ectopic mid‐hindbrain characteristics (Q28504690) (← links)
- Molecular characterization of the gastrula in the turtle Emys orbicularis: an evolutionary perspective on gastrulation (Q33352042) (← links)
- Induced neuronal reprogramming (Q33904255) (← links)
- Pax6 is a human neuroectoderm cell fate determinant (Q33996031) (← links)
- Pluripotent Stem Cells for the Study of CNS Development (Q34226123) (← links)
- Neural transcription factors: from embryos to neural stem cells (Q34424298) (← links)
- Modeling human cortical development in vitro using induced pluripotent stem cells (Q34639912) (← links)
- Selective roles of normal and mutant huntingtin in neural induction and early neurogenesis (Q34731481) (← links)
- Direct development of neurons within foregut endoderm of sea urchin embryos (Q35021836) (← links)
- The evolution of nervous system patterning: insights from sea urchin development (Q35154980) (← links)
- Growth differentiation factor 11 is an encephalic regionalizing factor in neural differentiated mouse embryonic stem cells. (Q35373611) (← links)
- Zinc finger homeobox is required for the differentiation of serotonergic neurons in the sea urchin embryo (Q35782944) (← links)
- Undersulfation of heparan sulfate restricts differentiation potential of mouse embryonic stem cells (Q35879512) (← links)
- Geminin Is Required for Epithelial to Mesenchymal Transition at Gastrulation (Q36181811) (← links)
- Human pluripotent stem cells: applications and challenges in neurological diseases. (Q36193696) (← links)
- A novel role for Ascl1 in the regulation of mesendoderm formation via HDAC-dependent antagonism of VegT. (Q36597401) (← links)
- On becoming neural: what the embryo can tell us about differentiating neural stem cells (Q37003138) (← links)
- Neural transcription factors bias cleavage stage blastomeres to give rise to neural ectoderm (Q37018464) (← links)
- The evolution of nervous system centralization (Q37055970) (← links)
- The sea urchin animal pole domain is a Six3-dependent neurogenic patterning center (Q37201429) (← links)
- Bone morphogenetic protein 15 (BMP15) acts as a BMP and Wnt inhibitor during early embryogenesis (Q37377768) (← links)
- SnoN in regulation of embryonic development and tissue morphogenesis (Q37498907) (← links)
- Pathogenesis of holoprosencephaly (Q37504549) (← links)
- Lacking of palladin leads to multiple cellular events changes which contribute to NTD. (Q37720976) (← links)
- Making senses development of vertebrate cranial placodes (Q37783809) (← links)
- From stem cells to neural networks: recent advances and perspectives for neurodevelopmental disorders (Q37810612) (← links)
- Evo-devo: Hydra raises its Noggin (Q37907737) (← links)
- Developmental Origin of Neural Stem Cells: The Glial Cell That Could (Q37986550) (← links)
- In vitro recapitulation of neural development using embryonic stem cells: From neurogenesis to histogenesis (Q37992132) (← links)
- Developmental mechanisms directing early anterior forebrain specification in vertebrates (Q38080448) (← links)
- Neural induction and early patterning in vertebrates. (Q38135361) (← links)
- Interaction of Notch and gp130 signaling in the maintenance of neural stem and progenitor cells (Q38153210) (← links)
- Setting appropriate boundaries: fate, patterning and competence at the neural plate border. (Q38169872) (← links)
- Establishing the pre-placodal region and breaking it into placodes with distinct identities (Q38191727) (← links)
- In Vitro Models for Neurogenesis. (Q38599803) (← links)
- Species-specific developmental timing is maintained by pluripotent stem cells ex utero. (Q38717265) (← links)
- A reduction in Npas4 expression results in delayed neural differentiation of mouse embryonic stem cells. (Q38989224) (← links)
- SMAD7 directly converts human embryonic stem cells to telencephalic fate by a default mechanism. (Q39266474) (← links)
- Calcineurin signaling regulates neural induction through antagonizing the BMP pathway (Q39288437) (← links)
- Longitudinal RNA sequencing of the deep transcriptome during neurogenesis of cortical glutamatergic neurons from murine ESCs. (Q39290386) (← links)
- Dopaminergic differentiation using pluripotent stem cells (Q39584237) (← links)
- Manipulation of cell:cell contacts and mesoderm suppressing activity direct lineage choice from pluripotent primitive ectoderm-like cells in culture. (Q39851837) (← links)
- FGF dependent regulation of Zfhx1b gene expression promotes the formation of definitive neural stem cells in the mouse anterior neurectoderm. (Q40994861) (← links)