Reposted by Michał JanuszewskiFranz Rieger @riegerfr.bsky.social · 21/04/2026Can generative AI accelerate neuroscience? Excited to share MoGen at ICLR 2026!🧠 We use point cloud flow matching to generate high-fidelity 3D neuron fragments, capturing intricate details like dendritic spines. 174
Reposted by Michał JanuszewskiJanelia Research Campus @hhmijanelia.bsky.social · 03/06/2025👀 For more than 15 years, Janelia researchers have been on a mission to catalogue the neurons of the fly optic lobes & develop genetic tools to study them. This effort has culminated in a complete inventory of all the visual neurons in the fruit fly ➡️ www.nature.com/articles/d41... 1339
Michał Januszewski @michalwj.bsky.social · 22/05/2025Wouldn't it be great if we could not only image large connectomic volumes but also completely reconstruct them? And if a whole mouse brain project didn't cost billions? With the PATHFINDER preprint (www.biorxiv.org/content/10.1...), we preview a future where it doesn't have to. 23312
Reposted by Michał JanuszewskiJan-Matthis Lueckmann @janmatthis.bsky.social · 24/04/2025We'll present our #ICLR2025 spotlight on ZAPBench this afternoon: 📍 Hall 3 #61! 0226
Reposted by Michał JanuszewskiJan-Matthis Lueckmann @janmatthis.bsky.social · 04/03/2025⚡️ Excited to introduce ZAPBench, our #ICLR2025 spotlight: The Zebrafish Activity Prediction Benchmark measures progress in predicting neural activity within an entire vertebrate brain (70k+ neurons!) Explore interactive visualizations, datasets, code + paper: google-research.github.io/zapbench 🧠🧪google-research.github.ioZAPBenchZAPBench evaluates how well different models can predict the activity of over 70,000 neurons in a novel larval zebrafish dataset. 24019