Check out our latest preprint on the rapid identification of bacteria using the Adaptive Channel Bacterial Capture chip and multiplexed fluorescence microscopy to capture and identify bacteria from low density samples! #AMR#microfluidics
https://t.co/nGPD2aXpHi
Excited for @micro_anna_ and Abhishek's preprint on real-time detection of σ finger displacement! Waiting >20 yrs to see this... key points: process depends hugely on promoter sequence and is *very* heterogeneous. Work got +++ feedback in Microbial Txn GRC last week.
check out or new manuscript on the conformational dynamics of sigma finger (a small mobile element in all RNA polymerases): led by the wonderful @micro_anna_ and @AchillesKap#smFRET#bacterialtranscription#singlemolecules https://t.co/9X9lpNCKLR
Our paper on bleaching-resistant single-molecule fluorescence trajectories is finally out -- check out how *REFRESH* works here ⤵️ #smFRET#photobleaching#singlemolecules https://t.co/Aren9nbN2k
1/2 Superresolution without switching? pMINFLUX colocalizes and tracks two molecules with nanometer precision, separating them by their distinct fluorescence lifetimes. Check out our recent preprint in collaboration with @FerStefaniLab: https://t.co/oML74RLVfp
In our latest review, https://t.co/AIYJtHRz2P, we discussed recent technology development of spectroscopic single-molecule localization microscopy #SMLM#sSMLM, and its applications to biology and chemistry. We emphasized the impact of #sSMLM to single-particle tracking #SPT.
We have developed a new type of microscope for 3D tracking of individual fast moving molecules in living cells. The position of the molecule is “triangulated” at the microsecond timescale and the laser-beam follows the molecule using feedback implemented in hardware.
okay so AI can literally read our minds now.
a team from osaka was able to reconstruct visual images from mri scan data using stable diffusion.
first row is the image presented to the test subject, second row is the reconstructed image from mri data.
wild.
🧬 70 years ago today, Cambridge theorists Francis Crick and James Watson determined DNA's structure.
It changed everything, but the breakthrough was only possible thanks to many talented scientists, including Rosalind Franklin and Maurice Wilkins.
Discover more 👇
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