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Maxence Lanoizelet

@maxencelanoizelet.bsky.social
33 followers 31 following 0 posts

Postdoc in the Seuntjens lab. Working on the post-hatching brain development of cephalopods. bio.kuleuven.be/df/es/

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Reposted by Maxence Lanoizelet
Luca Masin @lucamasin.bsky.social · 16/02/2026
🚨New preprint out!🚨 I’m excited to share the latest work by Anyi Zhang and me, which shows that mTORC1-dependent transient dendritic pruning is essential for efficient axonal regeneration in spontaneously regenerating zebrafish neurons. www.biorxiv.org/content/10.6...
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Horst Obenhaus @octoscience.bsky.social · 23/12/2025
Do you love quantifying animal behavior as much as we do? We have just the tool for you! Presenting #OCTRON - a pipeline that helps you create rich annotation data and enables training of custom segmentation models. Have a look, particularly if you work with non-model / invertebrate organisms!
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Alexandre Paix @alexandrepaix83.bsky.social · 14/12/2025
I like that Development journal does these interviews, specially when it is about good scientists and good people journals.biologists.com/dev/article/...
journals.biologists.com
The people behind the papers – Agnès Roure and Sébastien Darras
In animals, species-specific organs and nervous systems are patterned from the developing neuroectoderm by conserved canonical Wnt signals. However, how these developmental trajectories diverged throu...
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Sébastien DARRAS @darras-sebastien.bsky.social · 10/12/2025
Latest publication from the #DEEVA team in @biom-banyuls.bsky.social and @obs-banyuls.fr and @cnrsbiologie.bsky.social @sorbonne-universite.fr in #WindyBanyuls Congratulations to @agnesroure.bsky.social and @rafathchowdhury.bsky.social #Ciona #ascidians
journals.biologists.com
Six3/6 acts downstream of canonical Wnt signaling to regulate the formation of anterior neural border-derived structures in ascidian embryos
Highlighted Article: In ascidian embryos, canonical Wnt signaling limits the posterior extension of the most anterior structure, the palps, by activating Six3/6, which inhibits palps fate.
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Journal of Cell Biology @jcb.org · 14/11/2025
With transcriptomic and functional data, @lucamasin.bsky.social et al. @labmoons.bsky.social show that local glycolysis supports injury-induced axonal regeneration. rupress.org/jcb/article/... 📕 In Cellular Neurobiology collection: rupress.org/jcb/collecti... #SfN25
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Horst Obenhaus @octoscience.bsky.social · 21/07/2025
One of the “golden videos” that I took during my Grass Fellowship @grassfoundation.bsky.social - active sleep in these little guys is so obvious and flamboyant! @mblscience.bsky.social
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Eve Seuntjens @eveseuntjens.bsky.social · 15/05/2025
We're hiring! Our lab is looking for a postdoc to investigate the #evodevo of #cephalopod brains. Did you recently graduate, and do you want to join our EU #WEAVE project with the Simakov and @simon-sprecher.bsky.social labs? Find the application form👇Thanks for RT 🐙🦑 www.kuleuven.be/personeel/jo...
kuleuven.be
Postdoctoral researcher in evolutionary developmental neurobiology
Come join our EU cephalopod consortium to discover how octopuses and other coleoids developed their large nervous system. Postdoc position available in the Seuntjens Lab in Leuven, Belgium.
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Biology Open @biologyopen.bsky.social · 15/05/2025
African turquoise killifish are short-lived & their CNS exhibits human-like ageing. Zandecki @eveseuntjens.bsky.social & co reveal the cellular diversity during the explosive growth of the telencephalon, uncovering specific progenitor signatures for each neurogenic region. 🧠 doi.org/10.1242/bio....
Progenitor heterogeneity in the developing telencephalon. A multi-panelled figure showing different progenitor cells in different areas of the developing telencephalon of the killifish.  HCR-FISH targeting CX43 (pan Astro-RG, magenta) and ZIC2 (NE-RG, yellow) (A) or NGPmix (turquoise) (B), is combined with immunohistochemical staining for the proliferation marker PCNA (white). NGPs account for the bulk of proliferation; Astro-RGs and NE-RGs appear both dividing and non-dividing depending on the location in the telencephalon. (C-E) Magnifications of the regions in the boxes in A and B. Non-dividing Astro-RGs (CX43+, PCNA−) are indicated with a magenta arrowhead and appear isolated in between stretches of dividing NGPs. (F) Illustration of a 5 dph coronal telencephalic section at mid-anterior-posterior level. The distribution of dividing and non-dividing Astro-RGs, NE-RGs and NGPs is displayed in the ventricular zone.
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Sébastien DARRAS @darras-sebastien.bsky.social · 23/04/2025
Looking for a post-doc? In the frame of the #MSCA-PF 2025 program at @sorbonne-universite.fr , the #DEEVA team (biom.obs-banyuls.fr/presentation...) from @biom-banyuls.bsky.social and @obs-banyuls.fr in #WindyBanyuls proposes a research project (www.sorbonne-universite.fr/sites/defaul...).
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Amy Courtney @amycourtneyyy.bsky.social · 04/04/2025
Very excited and proud to finally share this story! 🐙 We discovered surprising roles for dopamine and acetylcholine in the Octopus visual system… doi.org/10.1101/2025...
doi.org
Novel dopaminergic neurotransmission in the Octopus visual system
Coleoid cephalopods such as the common octopus have a complex visual system, with a camera-type eye and a large optic lobe, that evolved independently from its counterpart in vertebrates. However, the...
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Sébastien DARRAS @darras-sebastien.bsky.social · 12/03/2025
The #DEEVA team proposes a PhD research project on the formation of cellulosic fins in ascidians: Molecular regulation of cellulose-based 3D morphogenesis in animals. This project stems from a study that we have published last year (rdcu.be/ediJK).
Left panel: 3D reconstruction from confocal imaging of tadpole-like larvae of ascidians (also known as sea squirts) to visualize the cellulosic median fin. Top image is the larva itself. Mid panel: Surface rendering with the tunic that prevents seeing the larva. Lower panel: same as mid panel with a transparent tunic.
Right panel: logo of the DEEVA team (DEvelopment and EVolution of Ascidians.
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BIOM @biom-banyuls.bsky.social · 06/01/2025
📖 www.insb.cnrs.fr/fr/cnrsinfo/... @obs-banyuls.bsky.social @sorbonne-universite.fr @maxencelanoizelet.bsky.social
insb.cnrs.fr
Des requins et des hommes : à la recherche des asymétries perdues
Chez de nombreux vertébrés, y compris l’humain, l’épithalamus, une région clé du cerveau régulant les émotions et les comportements, présente des asymét
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