Claire Dessalles (@clairedessalles) 's Twitter Profile
Claire Dessalles

@clairedessalles

Researcher at ILM Lyon, interested in the physics of biological tissues and the role of anisotropy and activity. Former postdoc @RouxLab & PhD @Polytechnique.

ID: 1189284061405007873

calendar_today29-10-2019 20:53:20

2,2K Tweet

1,1K Followers

1,1K Following

Ke Yuan (@keyuan_bch) 's Twitter Profile Photo

This is a groundbreaking study for pericyte fans. We discovered the unique pericyte marker Higd1b which only labels pericytes without any off-target effect from other mural cells. ATS PC Assembly AHA Science NAVBO

Aissam Ikmi (@aissamikmi) 's Twitter Profile Photo

The evolution of shape diversity through the lens of physics—explored in our new paper! A fruitful collaboration between our lab @EMBL, Salbreux’s lab unige & others, led by Bailleul Richard—now independent at École normale supérieure | PSL—& Nicolas Cuny. bit.ly/3WRqdEa

The evolution of shape diversity through the lens of physics—explored in our new paper! A fruitful collaboration between our lab @EMBL, Salbreux’s lab <a href="/unige/">unige</a> &amp; others, led by <a href="/BailleulRichar1/">Bailleul Richard</a>—now independent at <a href="/ENS_ULM/">École normale supérieure | PSL</a>—&amp; Nicolas Cuny. bit.ly/3WRqdEa
Hao Yin (@haoyin20) 's Twitter Profile Photo

Glioma as 3D #ActiveNematic #LiquidCrystal Interconvert from −1/2 to +1/2 Topological defects, corr. ⏬apoptosis ⏫cellularity Quasi-long-range-order over 300~3000 𝝁m Blood vessels frequently serve as anchors of twist-/wedge-like disclination lines (where the alignment

Glioma as 3D #ActiveNematic #LiquidCrystal

Interconvert from −1/2 to +1/2 Topological defects, corr. ⏬apoptosis ⏫cellularity

Quasi-long-range-order over 300~3000 𝝁m

Blood vessels frequently serve as anchors of twist-/wedge-like disclination lines (where the alignment
Seirin (@seirin_lab) 's Twitter Profile Photo

Published! If you are interested in the geometry of cell/cells, surely keep your eyes on this paper 😊 sciencedirect.com/science/articl…

Published! If you are interested in the geometry of cell/cells, surely keep your eyes on this paper 😊 

sciencedirect.com/science/articl…
CellMech2025 (@cellmech2025) 's Twitter Profile Photo

🎨 CellMech 2025 presents the Scientific Art Contest! Submit a stunning image from your research and have it featured in our gallery during the conference. 🗳️ Audience will vote for the winner! Deadline: 6 June 2025 📅 Details: buff.ly/edJ17gy #CellMech2025 #SciArt

CellMech2025 (@cellmech2025) 's Twitter Profile Photo

⚠️ Big news!! Our official conference program is online!! buff.ly/1FDdbf4 🐥 Early bird deadline: May 31, 2025 ✍️ Presenting author deadline: May 31, 2025 Register now👉 buff.ly/HWLb3RR 🎨 Submit your beautiful scientific image 👉 buff.ly/hySqSV6

SoftBio Colloids Lab (@softbiocol) 's Twitter Profile Photo

Publication Alert!🎉 🚀🧪 New paper out! Soft Matter We show that Janus lipid vesicles can self-propel under AC electric fields, exhibiting run-and-tumble dynamics—just like bacteria, but driven by membrane-phase behavior. 👉 Read here: pubs.rsc.org/en/content/art…

Publication Alert!🎉
🚀🧪 New paper out! <a href="/softmatter/">Soft Matter</a> 
We show that Janus lipid vesicles can self-propel under AC electric fields, exhibiting run-and-tumble dynamics—just like bacteria, but driven by membrane-phase behavior.
👉 Read here: pubs.rsc.org/en/content/art…
Serra group @ UC San Diego (@mattia__serra) 's Twitter Profile Photo

📣 New preprint alert! We developed a framework to uncover Coherent Structures in flows on dynamic surfaces—revealing dynamic attractors, repellers and deformation directions in active nematic vesicles, pancreatic spheroids, and beating zebrafish hearts. biorxiv.org/content/10.110…

📣 New preprint alert! We developed a framework to uncover Coherent Structures in flows on dynamic surfaces—revealing dynamic attractors, repellers and deformation directions in active nematic vesicles, pancreatic spheroids, and beating zebrafish hearts.
biorxiv.org/content/10.110…
Carlos F. Guimarães (@guimaraes_cf) 's Twitter Profile Photo

Today the European Research Council (ERC) announced important updates to ERC grants coming with the 2026 and 2027 Work Programmes, in both proposal form and evaluation process! Here are the more significant changes to take into account: (1/5)

Today the <a href="/ERC_Research/">European Research Council (ERC)</a> announced important updates to ERC grants coming with the 2026 and 2027 Work Programmes, in both proposal form and evaluation process!   

Here are the more significant changes to take into account: (1/5)
Mara Pitulescu (@marapitulescu) 's Twitter Profile Photo

🚨🚨Do not miss the upcoming 𝐄𝐕𝐁𝐎 𝐬𝐞𝐦𝐢𝐧𝐚𝐫 this Thursday ‼️ Excellent line-up of speakers! Registration: tinyurl.com/yv5k529s

Euro Curvo Bio Net COST (@eurocurvobio) 's Twitter Profile Photo

🌍📷You already know what’s up. It’s Euro Curvo Bio Net COST Wednesday! This month: John Dunlop (the big boss himself) 📷13:30 CET | Live on Zoom Come for the curves, stay for the science. curvobio.com/webinars #Webinar #ScienceTalk #Biophysics #geometrynodes

🌍📷You already know what’s up. It’s <a href="/eurocurvobio/">Euro Curvo Bio Net COST</a> Wednesday! This month: John Dunlop (the big boss himself)  📷13:30 CET | Live on Zoom Come for the curves, stay for the science. curvobio.com/webinars    #Webinar #ScienceTalk #Biophysics #geometrynodes
Søren Grubb (@sorengrubb) 's Twitter Profile Photo

🐭🧠 #PrecapillarySphincters (PS) at the #arteriole–#capillary junction rapidly dilate ~30% in seconds during #SensoryStimulation—regulating #capillary #BloodFlow dynamically. Here we investigated whether they protect downstream microvessels during abrupt #BloodPressure surges 🧵

🐭🧠 #PrecapillarySphincters (PS) at the #arteriole–#capillary junction rapidly dilate ~30% in seconds during #SensoryStimulation—regulating #capillary #BloodFlow dynamically. Here we investigated whether they protect downstream microvessels during abrupt #BloodPressure surges 🧵
Volodymyr Nechyporuk-Zloy (@vnzloy) 's Twitter Profile Photo

Ring deconvolution microscopy: exploiting symmetry for efficient spatially varying aberration correction Amit Kohli et al. doi.org/10.1038/s41592…

Ring deconvolution microscopy: exploiting symmetry for efficient spatially varying aberration correction
Amit Kohli et al.
doi.org/10.1038/s41592…
Xavier Trepat (@xaviertrepat) 's Twitter Profile Photo

How to turn a layer of fibroblasts into a tulip 🌷? Check out our new pre-print on shape-programmable living surfaces. Led by Pau Guillamat IBEC biorxiv.org/content/10.110…

bioRxiv Biophysics (@biorxiv_biophys) 's Twitter Profile Photo

Dissecting Molecular Origins of the Mechano-Adaptive Behaviors of Actomyosin Bundles biorxiv.org/content/10.110… #biorxiv_biophys