Congrats @PCusachs and co. on the new story highlighting the importance of nuclear mechanics to fundamental cell physiological processes! 👏🥳
I'm also happy to see a graduate of my lab back in @KCLstemcells Marc Molina-Jordán @Marcmj15
among contributors!
https://t.co/NxJsG0i9up
@thevy_lok Thanks for all the advices 😍 Hope I would be able to do such a nice, clear and pedagogic manuscript as yours, I really enjoyed it! 🤓 I loved to see you before I left for writing :)
Rapid rolling of epithelia triggers transient cell swelling. Beautiful work from @CaterinaTomba showing how the mechanoosmotic balance of cells participate in tissue morphogenesis. @unige_en@sciences_UNIGE @NCCR_ChemBio https://t.co/btvVuaboAp
How can you pattern capillary-scale structures in collagen for #microvascular#tissuenengineering?
(left) my first paper in ugrad used pulled glass
https://t.co/y2KYkqJCvT
(right) new approach uses laser-based cavitation molding
https://t.co/rFWmvbD4Is
In "Viscoelasticity of basal plasma membranes and cortices derived from MDCK II cells," Janshoff investigates the viscoelastic properties of basolateral membranes derived from polarized MDCK II epithelia in response to external deformation. https://t.co/qMSCFFxqI3
This is it: the discovery of the cytoskeleton by Nikolai Koltsov in 1903 🤯
I have no German, so I'm reading one paragraph at a time via google translate. It's giving me that slow-reveal feeling you get with your own discoveries. It's delightful, as is the voice it's written in.
This is a monolayer of endothelial cells synchronizing their calcium signaling in response to a periodic external mechanical stimuli
Tune to the #cellbio2021@ASCBiology "Building the Cell" subgroup today 4pm to hear from @zamir_amos about emergent multicellular synchronization!
Strain maps of cardiomyocyte nuclei during contraction indicate that, by integrating environmental mechanical cues, the nuclei of cardiomyocytes stabilize the fate of the cells through the reorganization of epigenetically marked chromatin.
https://t.co/KZMEaueH35
New publication! "How cells tell up from down and stick together to construct multicellular tissues"
https://t.co/WWuohfrJtu
In it, we review how cell-cell adhesion and apicobasal polarity combine to yield simple epithelia, the building block of multicellular animal life. (1/3)
We are very excited to share our preprint: Mechanics of cell integration in vivo ⚙️🐸🔬🧮. Wonderful collaboration with @DoostmohammadiL and @AboutalebAmiri 🧮. https://t.co/nKwEiCyvZ8, So, how do cells navigate through complex 3D environments? 🧵1/14⬇️
Our paper on the spatial arrangement of actin and myosin at the cell cortex just got published! Special thanks to Binh An Truong Quang and @Ruby_Peters_@PDN_Cambridge@LMCB_UCL (1/3)
https://t.co/MTMyC2fb0P
‼️ #JobAlert ‼️
Post-doc position available in the "Cell adhesion and Mechanics" Team @IJMonod
👉 "Dead or Alive" project (@ERC_Research grant) on the biomechanics of cell extrusion
Contact @BLadoux & @ReneMege!
https://t.co/DQNU8eSKCz
Here is our new preprint of image denoising in fluorescence microscopy using our Noise2Noise ImageJ plugin. There is no need for retraining the model. The denoising is instant, accurate (~8dB improvement in PSNR), and easy to use. https://t.co/x5bphFZ3nn