Susan Cox
@micoxscopy.bsky.social
📤 56
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Microscopy. Computer vision. Cell cytoskeleton. King's College London
pinned post!
How do you quantify cell structures which are deformed between different observations? Our preprint shows how to perform Simultaneous QUAntification of Structure and Structural Heterogeneity (SQUASSH) on 3D fluorescence microscopy data. (1/5)
www.biorxiv.org/content/10.1...
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Extracting biological structure and heterogeneity from the nano to the macro scale
Fluorescence microscopy is an essential tool in biology. It has revealed great variability at multiple scales, in macromolecular complexes, cells, and organisms. Understanding this variability will re...
https://www.biorxiv.org/content/10.1101/2025.08.06.668903v1
6 months ago
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reposted by
Susan Cox
Julia Sero
2 months ago
I can highly recommend! Excellent value. :)
add a skeleton here at some point
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Some fowl play here: vision language models are biased against 3-legged chickens, say they have 2 or 4 legs
vlmsarebiased.github.io
6 months ago
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How do you quantify cell structures which are deformed between different observations? Our preprint shows how to perform Simultaneous QUAntification of Structure and Structural Heterogeneity (SQUASSH) on 3D fluorescence microscopy data. (1/5)
www.biorxiv.org/content/10.1...
loading . . .
Extracting biological structure and heterogeneity from the nano to the macro scale
Fluorescence microscopy is an essential tool in biology. It has revealed great variability at multiple scales, in macromolecular complexes, cells, and organisms. Understanding this variability will re...
https://www.biorxiv.org/content/10.1101/2025.08.06.668903v1
6 months ago
1
28
11
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