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The role of Zic transcription factors in regulating hindbrain retinoic acid signaling
Danna L Drummond, Caroline S Cheng, Lyndsay G Selland, Jennifer C Hocking, Lisa B Prichard, Andrew J Waskiewicz BMC Developmental Biology 2013, 13:31 (12 August 2013)
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| ePUB | PubMed
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Live imaging and analysis of postnatal mouse retinal development
Philip EB Nickerson, Kara M Ronellenfitch, Nicklaus F Csuzdi, Jamie D Boyd, Perry L Howard, Kerry R Delaney, Robert L Chow BMC Developmental Biology 2013, 13:24 (10 June 2013)
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| ePUB | PubMed
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Editor’s summary
An improved method, using CO2-independent culture medium and agarose embedding, for live imaging of mouse retinal explants allows tracking of interkinetic nuclear migration within individual retinal cells, and analysis of changes in retinal progenitor cell morphology.
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3.
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Identifying targets of the Sox domain protein Dichaete in the Drosophila CNS via targeted expression of dominant negative proteins
Shih Pei Shen, Jelena Aleksic, Steven Russell BMC Developmental Biology 2013, 13:1 (5 January 2013)
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The response of early neural genes to FGF signaling or inhibition of BMP indicate the absence of a conserved neural induction module
Crystal D Rogers, George S Ferzli, Elena S Casey BMC Developmental Biology 2011, 11:74 (15 December 2011)
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Plasticity of photoreceptor-generating retinal progenitors revealed by prolonged retinoic acid exposure
Craig B Stevens, David A Cameron, Deborah L Stenkamp BMC Developmental Biology 2011, 11:51 (30 August 2011)
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Editor’s summary
Retinal neurogenesis in zebrafish displays a dynamic sensitivity to retinoic acid (RA) with embryos exposed to exogenous RA showing significant alteration of rod and cone mosaic patterns mediated by the RARalphab receptor.
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Cug2 is essential for normal mitotic control and CNS development in zebrafish
Hyun-Taek Kim, Ju-Hoon So, Seung-Hyun Jung, Dae-Gwon Ahn, Wansoo Koh, Nam-Soon Kim, Soo-Hyun Kim, Soojin Lee, Cheol-Hee Kim BMC Developmental Biology 2011, 11:49 (15 August 2011)
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| PubMed
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Two-color fluorescent in situ hybridization in the embryonic zebrafish brain using differential detection systems
Gilbert Lauter, Iris Söll, Giselbert Hauptmann BMC Developmental Biology 2011, 11:43 (4 July 2011)
Abstract | Full text | PDF
| PubMed | Cited on BioMed Central
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Editor’s summary
A new methodology for whole mount in situ hybridization (WISH) permits comparison of two different gene expression patterns at the cellular level in the embryonic zebrafish brain with greater sensitivity than conventional methods.
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The Enhancer of split transcription factor Her8a is a novel dimerisation partner for Her3 that controls anterior hindbrain neurogenesis in zebrafish
Katharine J Webb, Marion Coolen, Christian J Gloeckner, Christian Stigloher, Brigitte Bahn, Stefanie Topp, Marius Ueffing, Laure Bally-Cuif BMC Developmental Biology 2011, 11:27 (17 May 2011)
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Correct anteroposterior patterning of the zebrafish neurectoderm in the absence of the early dorsal organizer
Máté Varga, Shingo Maegawa, Eric S Weinberg BMC Developmental Biology 2011, 11:26 (16 May 2011)
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| PubMed
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