An autofocus algorithm that is applicable across a range of imaging modalities. Preprint from @lasergroup.bsky.social
www.biorxiv.org/content/10.1...
@lasergroup
We are a group of physicists, engineers, and biologists applying microscopy tools and techniques to understand mechanisms of disease. And we have moved from Twitter. https://laser.ceb.cam.ac.uk/
An autofocus algorithm that is applicable across a range of imaging modalities. Preprint from @lasergroup.bsky.social
www.biorxiv.org/content/10.1...
Want to see how AI-driven imaging might reshape the future biomedical research? Read the full paper here: tinyurl.com/AImicroscopy... ๐ง ๐ธ #Microscopy #DeepLearning #AI #Automation
The key challenges? Teaching microscopes what to image, when to image, and how to imageโwithout human input. Our review lays out the latest advances & how DL is breaking barriers in microscopy automation. (4/5)
Why does this matter? Current imaging methods need too much manual intervention, limiting throughput. Fully autonomous super-resolution imaging could transform drug discovery & disease phenotyping, just like AI has in other fields. (3/5)
DL is already a game-changer for denoising, fast reconstruction, & object classification in microscopy. But automation? Thatโs the next frontier! Our review dives into how DL can enable microscopes to think for themselves. (2/5)
๐ฌ๐ Exciting news! Our latest review in Small Methods explores how Deep Learning (DL) is revolutionising super-resolution microscopyโpushing the boundaries of biomedical imaging! ๐งต๐ (1/5)
๐ Read our full paper on this breakthrough in polar microscopy and its implications for deep-sea and cold-adapted life: tinyurl.com/smallcoldmic โ๏ธ๐ฌ (5/5)
๐งฌ This approach works across multiple microscopy techniques, including super-resolution imaging. Tested on live Antarctic fish cells, it enables accurate studies in evolutionary biology, biophysics, and biotechnology. (4/5)
๐ข Anne-Pia presents a new method for high-fidelity imaging at ~0ยฐC! Using a cooling collar, 10% ethanol as an immersion medium, and nitrogen flow to reduce condensation, we maintain live biological samples under physiological conditions. (3/5)
๐ง High-resolution microscopy requires short working distances and immersion media, causing rapid heat transfer to samples. For cold-adapted organisms, this means cell damage, altered biology, and unreliable results. (2/5)
๐ฌโ๏ธ The Antarctic seabed harbors astonishing biodiversity, yet organisms that live their entire lifecycle at ~0ยฐC remain vastly understudied. Why? Because imaging these fragile lifeforms under physiological conditions is technically challenging. youtu.be/cK2DdWLsbes?... (1/5)
Fairwell, Bismoy Mazumder, after 6 glorious years in the group and good luck for the next chapter of your life. See you in India!
HI! ๐ Weโre the Department of Chemical Engineering and Biotechnology at the University of Cambridge. We like:
๐งชScience that pushes the envelope
๐Working to solve the worldโs biggest challenges
๐งโ๐ฌCollaborating with amazing scientists
๐ซTea!
๐คRobots!
#DrivenByCuriosity #DrivingChange
Hello, world! This is our first post on BlueSky. Very happy to have moved on from where we were previously. All news for the group now on Bluesky.
๐ฌ๐งช๐