I am super excited to announce that my core bioengineering project has been published in Nature Biomedical Engineering.
https://t.co/4Trm9Na8Ui
This paper presents a technology for constructing “organ-specific and functional vascularized organoids” targeting the liver.
Today we all lost our jobs.....
Three Nature papers showing that scientists in the conventional sense are obsolete
At least read the first one.... the AI replaced all things that the scientist does ....
https://t.co/zMsRLaaRDU
Excited to share our RegVelo paper in Cell
https://t.co/ZAnQphaXsg
We unify RNA velocity + GRNs into one model → better OOD prediction of perturbations (e.g. gene KOs), with examples incl. neural crest KO predictions 🔬
Big thanks to W Wang, Z Hu & T Sauka-Spengler 🙏
Check out these liver #organoids from the @TakebeLab!
Dr. Norikazu Saiki and the team produced organoids capable of forming their own internal blood vessels and coagulation factors.
@natBME article: https://t.co/oVJfUvpPiJ
Discussion: https://t.co/VLTsTCTyJ2
Scientists from Cincinnati Children’s and colleagues based in Japan report achieving a major step forward in #organoid technology–producing #liver tissue that grows its own internal blood vessels. @TakebeLab@CuSTOMOrganoids https://t.co/mdiHDcyGBy
Virtual cell ver.1
https://t.co/AwFUNRMcR7
What is key to realizing a world where cells (and even organs and organisms) can be truly simulated on computers?
Large amounts of data? Perturbation experiments/simulations? Architecture? Text? Images? Or something else…?
Complement factor D targeting protects endotheliopathy in organoid and monkey models of COVID-19 by @ns_ore_ns & colleagues
https://t.co/X8dgDhlHyV
Open stem cell research from @CellStemCell
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