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Development (Cambridge, England)|August 20, 2011
Fez function is required to maintain the size of the animal plate in the sea urchin embryoShunsuke Yaguchi, Junko Yaguchi, Zheng Wei, et al.
Current Biology : CB|May 20, 2020
Establishment of homozygous knock-out sea urchinsShunsuke Yaguchi, Junko Yaguchi, Haruka Suzuki, et al.
Nature Communications|November 19, 2025
Non-visual photoreceptive brain specification in sea urchin larvaeJunko Yaguchi, Koki Tsuyuzaki, Ikutaro Sawada, et al.
The Journal of Comparative Neurology|August 26, 2020
Neural anatomy of echinoid early juveniles and comparison of nervous system organization in echinodermsLaurent Formery, François Orange, Antoine Formery, et al.
Development, Growth & Differentiation|March 11, 2015
Early development and neurogenesis of Temnopleurus reevesiiShunsuke Yaguchi, Atsuko Yamazaki, Wakana Wada, et al.
Scientific Reports|September 9, 2017
Calaxin establishes basal body orientation and coordinates movement of monocilia in sea urchin embryosKatsutoshi Mizuno, Kogiku Shiba, Junko Yaguchi, et al.
Cytoskeleton (Hoboken, N.J.)|August 3, 2013
Glutathione transferase theta in apical ciliary tuft regulates mechanical reception and swimming behavior of Sea Urchin EmbryosYinhua Jin, Shunsuke Yaguchi, Kogiku Shiba, et al.
Methods in Cell Biology|April 6, 2019
Whole mount in situ hybridization techniques for analysis of the spatial distribution of mRNAs in sea urchin embryos and early larvaeEric M Erkenbrack, Jenifer C Croce, Esther Miranda, et al.
The Journal of Experimental Biology|August 3, 2010
Development of a dopaminergic system in sea urchin embryos and larvaeHideki Katow, Takashi Suyemitsu, Shio Ooka, et al.
Genome Biology|May 18, 2007
A global view of gene expression in lithium and zinc treated sea urchin embryos: new components of gene regulatory networksAlbert J Poustka, Alexander Kühn, Detlef Groth, et al.
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