Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile
Tsuyoshi Momose

@tsuyoshimomose

CNRS Researcher in Developmental Biology

ID: 827408874

calendar_today16-09-2012 16:59:27

61 Tweet

100 Followers

22 Following

Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile Photo

Amazing work of my collaborator Brandon Weissbourd was uploaded to BioRxiv. It deciphers how scatter neurons of jellyfish create complex feeding behaviour with whole-body calcium imaging. We worked hard together to develop transgenic Clytia! biorxiv.org/content/10.110…

Clytia group LBDV (@clytia_vlfr) 's Twitter Profile Photo

Congratulations to Brady and Tsuyoshi ! -Developing Clytia transgenesis for GCaMP imaging and targeted neural ablation, and relating neural activity patterns to jellyfish feeding behaviour.

Nice-Matin (@nice_matin) 's Twitter Profile Photo

Une alerte pollution aux particules fines sur le littoral des Alpes-Maritimes, du sable du Sahara dans l'atmosphère bit.ly/3bAPdaj

Une alerte pollution aux particules fines sur le littoral des Alpes-Maritimes, du sable du Sahara dans l'atmosphère bit.ly/3bAPdaj
Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile Photo

カリフォルニア工科大のBrady Weissbourd (Richard Anderson研)との共同研究の仕事がBioRxivに投稿されました。トランスジェニッククラゲの技術を確立し、個体レベルで神経活動を可視化するという、クレイジーな仕事です。 (リクエストがあったので日本語でも) biorxiv.org/content/10.110…

Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile Photo

Congratulations Brady! After many years of careful investigation, Clytia now officially became a (hard-core) neuroscience model.🍾 cell.com/cell/fulltext/…

Lior Pachter (@lpachter) 's Twitter Profile Photo

Our Clytia medusa cell type atlas introducing WHAMseq is out. This collaboration, with Tara Chari, Brady Weissbourd, Jase Gehring, Anna Ferraioli, @Leclere_L, Sandra Chevalier, @richcopley, Clytia group LBDV and David Anderson now has me hooked on jellyfish! science.org/doi/10.1126/sc…

Our Clytia medusa cell type atlas introducing WHAMseq is out. This collaboration, with Tara Chari, Brady Weissbourd, <a href="/JaseGehring/">Jase Gehring</a>, <a href="/AnnaFerraioli_/">Anna Ferraioli</a>, @Leclere_L, Sandra Chevalier, @richcopley, <a href="/Clytia_Vlfr/">Clytia group LBDV</a>  and David Anderson now has me hooked on jellyfish! science.org/doi/10.1126/sc…
Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile Photo

Looks great for epithelial cell segmentation. Perhaps need a new train for our species. journals.biologists.com/dev/article/14…

Clytia group LBDV (@clytia_vlfr) 's Twitter Profile Photo

In Clytia embryos, a single Wnt ligand source independently orients PCP to guide morphogenesis and regulates axial gene expression. Was this coupling mechanism at the origin of animal axis specification? biorxiv.org/content/10.110… Elegant study led by Tsuyoshi Momose LBDV Villefranche

In Clytia embryos, a single Wnt ligand source independently orients PCP to guide morphogenesis and regulates axial gene expression. Was this coupling mechanism at the origin of animal axis specification?  biorxiv.org/content/10.110…  Elegant study led by <a href="/tsuyoshimomose/">Tsuyoshi Momose</a>
 <a href="/biodev_vlfr/">LBDV Villefranche</a>
Tsuyoshi Momose (@tsuyoshimomose) 's Twitter Profile Photo

elifesciences.org/reviewed-prepr… How a localised Wnt3 ligand establishes a consistent body axis. It controls both β-catenin and PCP pathways and systematically coordinates gene expression, tissue polarity and morphology. It also highlights a cell polarity-driven axis evolution scenario.

elifesciences.org/reviewed-prepr…
How a localised Wnt3 ligand establishes a consistent body axis. It controls both β-catenin and PCP pathways and systematically coordinates gene expression, tissue polarity and morphology.
It also highlights a cell polarity-driven axis evolution scenario.