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journalStr:"Development (Cambridge, England)"
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PubPharm (10)
1
16p11.2 deletion accelerates subpallial maturation and increases variability in human iPSC-derived ventral telencephalic organoids
enthalten in:
Development (Cambridge, England)
| 2023
von
Fetit, R.
|
Barbato, M.
|
Theil, T.
| +2
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2
Pax6 loss alters the morphological and electrophysiological development of mouse prethalamic neurons
enthalten in:
Development (Cambridge, England)
| 2022
von
Tian, T.
|
Quintana-Urzainqui, I.
|
Kozić, Z.
| +2
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3
The role of the diencephalon in the guidance of thalamocortical axons in mice
enthalten in:
Development (Cambridge, England)
| 2020
von
Quintana-Urzainqui, I.
|
Hernández-Malmierca, P.
|
Clegg, J.
| +3
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4
Gli3 controls the onset of cortical neurogenesis by regulating the radial glial cell cycle through Cdk6 expression
enthalten in:
Development (Cambridge, England)
| 2018
von
Hasenpusch-Theil, K.
|
West, S.
|
Kelman, A.
| +6
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5
The transcription factor Foxg1 regulates the competence of telencephalic cells to adopt subpallial fates in mice
enthalten in:
Development (Cambridge, England)
| 2010
von
Manuel, M.
|
Martynoga, B.
|
Yu, T.
| +3
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6
Foxg1 regulates retinal axon pathfinding by repressing an ipsilateral program in nasal retina and by causing optic chiasm cells to exert a net axonal growth-promoting activity
enthalten in:
Development (Cambridge, England)
| 2008
von
Tian, N.
|
Pratt, T.
|
Price, D.
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7
Controlled overexpression of Pax6 in vivo negatively autoregulates the Pax6 locus, causing cell-autonomous defects of late cortical progenitor proliferation with little effect on cortical arealization
enthalten in:
Development (Cambridge, England)
| 2007
von
Manuel, M.
|
Georgala, P.
|
Carr, C.
| +13
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8
The winged helix transcription factor Foxg1 facilitates retinal ganglion cell axon crossing of the ventral midline in the mouse
enthalten in:
Development (Cambridge, England)
| 2004
von
Pratt, T.
|
Tian, N.
|
Simpson, T.
| +2
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9
The role of neurotrophin receptors in female germ-cell survival in mouse and human
enthalten in:
Development (Cambridge, England)
| 2003
von
Spears, N.
|
Molinek, M.
|
Robinson, L.
| +6
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10
Pax6 is required to regulate the cell cycle and the rate of progression from symmetrical to asymmetrical division in mammalian cortical progenitors
enthalten in:
Development (Cambridge, England)
| 2002
von
Estivill-Torrus, G.
|
Pearson, H.
|
van Heyningen, V.
| +2
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1
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Zeitschrift: Development (Cambridge, England)
Medienart
10
Aufsätze
6
E-Artikel
6
E-Ressourcen
4
Gedruckte Aufsätze
Zeitschriftentitel
Development (Cambridge, England)
Thema
10
Journal Article
10
Research Support, Non-U.S. Gov't
5
Nerve Tissue Proteins
4
Homeodomain Proteins
4
PAX6 Transcription Factor
4
Pax6 protein, mouse
4
Transcription Factors
3
EC 2.7.10.1
3
Eye Proteins
3
Forkhead Transcription Factors
3
Paired Box Transcription Factors
3
Repressor Proteins
2
Cell cycle
2
Foxd1 protein, mouse
2
Foxg1 protein, mouse
2
Gli3 protein, mouse
2
Nerve Growth Factors
2
Pax6
2
Zinc Finger Protein Gli3
1
148997-75-5
Alle anzeigen ...
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Erscheinungszeitraum
3
2020-
2
2010-2019
5
2000-2009
Erscheinungsjahr(e)
Von:
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Sprache
10
Englisch
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