Yasuo, Hitoyoshi, 19..-...., biologiste
Hitoyoshi Yasuo researcher
VIAF ID: 189731480 (Personal)
Permalink: http://viaf.org/viaf/189731480
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Works
Title | Sources |
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ANISEED 2015: a digital framework for the comparative developmental biology of ascidians | |
The ascidian genome contains another T-domain gene that is expressed in differentiating muscle and the tip of the tail of the embryo. | |
Autonomy of ascidian fork head/HNF-3 gene expression. | |
Brachyury expression in tailless Molgulid ascidian embryos | |
Cell lineage and cis-regulation for a unique GABAergic/glycinergic neuron type in the larval nerve cord of the ascidian Ciona intestinalis | |
Co-expression of Foxa.a, Foxd and Fgf9/16/20 defines a transient mesendoderm regulatory state in ascidian embryos | |
Distinct modes of mitotic spindle orientation align cells in the dorsal midline of ascidian embryos. | |
Divergent mechanisms specify chordate motoneurons: evidence from ascidians. | |
A dynamic history of gene duplications and losses characterizes the evolution of the SPARC family in eumetazoans | |
Embryological methods in ascidians: the Villefranche-sur-Mer protocols. | |
Ephrin-mediated restriction of ERK1/2 activity delimits the number of pigment cells in the Ciona CNS. | |
FGF8/17/18 functions together with FGF9/16/20 during formation of the notochord in Ciona embryos | |
Function of vertebrate T gene | |
Implications of Polycomb and Trithorax complexes in the early development of Ciona intestinalis. | |
Interprétation d’un signal graduel en une décision cellulaire binaire : une approche quantitative basée sur l’induction neurale de l’ascidie. | |
MEK/ERK regulation by the ephrin pathway during neural development in ascidian Ciona intestinalis. | |
Muscle development in Ciona intestinalis requires the b-HLH myogenic regulatory factor gene Ci-MRF. | |
A Nodal/Eph signalling relay drives the transition from apical constriction to apico-basal shortening in ascidian endoderm invagination | |
p120RasGAP mediates ephrin/Eph-dependent attenuation of FGF/ERK signals during cell fate specification in ascidian embryos | |
Patterning of brain precursors in ascidian embryos. | |
Physical association between a novel plasma-membrane structure and centrosome orients cell division. | |
Planar polarization of a mono-ciliated epithelium : the zebrafish floor-plate | |
Polarisation planaire d'un épithélium mono-cilié : le plancher du poisson-zèbre. | |
Quantitative analysis of animal morphogenesis : from high-throughput laser imaging to 4D virtual embryo in ascidians. | |
Rôle de la voie Wnt dans la polarisation des précurseurs neuronaux chez l'embryon de C. elegans. | |
Sequential and combinatorial inputs from Nodal, Delta2/Notch and FGF/MEK/ERK signalling pathways establish a grid-like organisation of distinct cell identities in the ascidian neural plate. | |
A signalling relay involving Nodal and Delta ligands acts during secondary notochord induction in Ciona embryos. | |
Signatures nucléotidiques de l'activité des enhancers développementaux chez l'ascidie Ciona intestinalis | |
Similarity and diversity in mechanisms of muscle fate induction between ascidian species. | |
Snail mediates medial-lateral patterning of the ascidian neural plate. | |
Spécification de destinées cellulaires dans l'embryon de l'ascidie Ciona intestinalis : étude de la ségrégation des destinées neurale et notochorde | |
A two-step model for the fate determination of presumptive endodermal blastomeres in Xenopus embryos. | |
β-Catenin-driven binary fate specification segregates germ layers in ascidian embryos. |