From predicting cell forces to analyzing complex genomic data, AI is unlocking new insights into how cells respond to mechanical cues. www.nature.com/articles/s44...
From predicting cell forces to analyzing complex genomic data, AI is unlocking new insights into how cells respond to mechanical cues. www.nature.com/articles/s44...
@naturematerials.bsky.social
on mechanical cell competition! Great collaboration between our CAM team, Chavrier's and Doostmohammadi's. Special congrats
@luanger.bsky.social, @andreasschoenit.bsky.social, Siavash Monfared! 🎉
www.nature.com/articles/s41...
@naturematerials.bsky.social
on mechanical cell competition! Great collaboration between our CAM team, Chavrier's and Doostmohammadi's. Special congrats
@luanger.bsky.social, @andreasschoenit.bsky.social, Siavash Monfared! 🎉
www.nature.com/articles/s41...
#ucsf
#ucsf
www.nature.com/articles/s41... @naturebiotech.bsky.social y.social @nadavahituv.bsky.social tuv.bsky.social
www.nature.com/articles/s41... @naturebiotech.bsky.social y.social @nadavahituv.bsky.social tuv.bsky.social
🔬Integrin nanoclusters act as STARnodes—nanoscale hubs that organize key proteins (FAK, vinculin, paxillin) to drive robust and precise focal adhesion signaling. #CellBiology #Mechanobiology #Nanoclusters #STARnodes
🔬Integrin nanoclusters act as STARnodes—nanoscale hubs that organize key proteins (FAK, vinculin, paxillin) to drive robust and precise focal adhesion signaling. #CellBiology #Mechanobiology #Nanoclusters #STARnodes