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Methods in Cell Biology|February 20, 2019
Temnopleurus as an emerging echinoderm modelShunsuke YaguchiZoological Science|February 25, 2026
Emergence of a Central Nervous System: A Two-Step Evolutionary Model Suggested by Sea Urchin ExperimentsShunsuke YaguchiDevelopmental Dynamics : an Official Publication of the American Association of Anatomists|November 24, 2021
Direct TGF-ß signaling via alk4/5/7 pathway is involved in gut bending in sea urchin embryosHaruka Suzuki, Shunsuke YaguchiDevelopment, Growth & Differentiation|December 19, 2021
Temnopleurus reevesii as a new sea urchin model in geneticsShunsuke Yaguchi, Junko YaguchiFrontiers in Cell and Developmental Biology|September 1, 2023
Rx and its downstream factor, Musashi1, is required for establishment of the apical organ in sea urchin larvaeJunko Yaguchi, Shunsuke YaguchiDevelopment, Growth & Differentiation|June 8, 2018
Transforming growth factor-β signal regulates gut bending in the sea urchin embryoHaruka Suzuki, Shunsuke YaguchiBMC Biology|April 6, 2021
Sea urchin larvae utilize light for regulating the pyloric openingJunko Yaguchi, Shunsuke YaguchiProceedings of the National Academy of Sciences of the United States of America|March 6, 2019
Evolution of nitric oxide regulation of gut functionJunko Yaguchi, Shunsuke YaguchiThe Journal of Comparative Neurology|October 7, 2003
Expression of tryptophan 5-hydroxylase gene during sea urchin neurogenesis and role of serotonergic nervous system in larval behaviorShunsuke Yaguchi, Hideki KatowMethods in Cell Biology|April 6, 2019
Analysis of neural activity with fluorescent protein biosensorsRobert D Burke, Shunsuke YaguchiPageof 82