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cytodata.bsky.social
𝗢𝗻𝗲 𝗪𝗲𝗲𝗸 𝗟𝗲𝗳𝘁: Abstract submission for oral presentations 🗣️ and hackathon registration 🧑‍💻 for CytoData 2025 Berlin close July 25!

Submit abstracts or register here: 🔗 cytodata25.eu-openscreen.eu/registration/

#Cytodata2025 #Hackathon #ImageBasedProfiling
cytodata.bsky.social
Exciting news! We've extended the deadline for oral submissions for Cytodata 2025. You now have until July 25 to submit oral presentations and register for the hackathon. Don't miss this chance! Poster submission closes September 10, and general registration ends October 1
cytodata.bsky.social
🌟 𝗥𝗲𝗺𝗶𝗻𝗱𝗲𝗿 🌟
The deadline for abstract submissions for oral presentations at Cytodata 2025 in Berlin is approaching!

👉 𝗦𝘂𝗯𝗺𝗶𝘁 𝘆𝗼𝘂𝗿 𝗮𝗯𝘀𝘁𝗿𝗮𝗰𝘁 𝗯𝘆 𝗝𝘂𝗻𝗲 25!
cytodata25.eu-openscreen.eu/registration/

#BerlinConference #Imageanalysis #Microscopy
cytodata.bsky.social
Join us in Berlin for CytoData 2025!
👉 Info & registration: cytodata25.eu-openscreen.eu

🔬 Hackathon: Nov 17–19
📢 Symposium: Nov 20–21

Explore advancements in image-based profiling & high-content screening and Tackle real-world challenges using EU-OPENSCREEN data.
cytodata.bsky.social
🌟 Call for Proposals: Host CytoData 2026! 🌟

We invite North American institutions to submit proposals for the 2026 symposium, whether in-person or hybrid. Nominate your institution by September 1, 2025. Join us in shaping the future of image-based profiling!
docs.google.com/forms/d/e/1F...
cytodata.bsky.social
MorphoDiff utilizes a diffusion process to generate images while encoding perturbation information in the latent space. It excelled in generating images with high fidelity and demonstrated the ability to generalise to held-out compounds.
cytodata.bsky.social
IMPA employs a conditional style transfer process to separate perturbation and batch information from basic cellular information and incorporates perturbation details. It demonstrated significant improvement over other batch correction methods and generalised to unseen perturbations.
cytodata.bsky.social
Recent approaches, IMPA [1] and MorphoDiff [2], use generative models to predict cellular responses to chemical and genetic perturbations.
[1] www.nature.com/articles/s41...
[2] openreview.net/forum?id=Pst...
[1] Predicting cell morphological responses to perturbations using generative modeling (IMPA): Nature Communications (2025) https://www.nature.com/articles/s41467-024-55707-8

IMPA employs a conditional style transfer process to separate perturbation and batch information from basic cellular information and incorporates perturbation details. It demonstrated significant improvement over other batch correction methods on the RxRx1 dataset and showed the ability to generalize to unseen perturbations.
[2] MorphoDiff: Cellular Morphology Painting with Diffusion Models: ICLR2025 (accepted spotlight presentation) https://openreview.net/forum?id=PstM8YfhvI

MorphoDiff utilizes a diffusion process to generate images while encoding perturbation information in the latent space. It excelled in generating images with high fidelity and demonstrated the ability to generalize to held-out compounds.
cytodata.bsky.social
Save the date for the CytoData Symposium and Hackathon 2025!
Hosted by EU-OPENSCREEN, MDC, and FMP
📅 November 17-21, 2025
📍 Berlin, Germany

Join us for an exciting event!
#Symposium2025 #Hackathon2025 #ImageAnalysis #BioImaging #LifeSciences #SaveTheDate #Microscopy
cytodata.bsky.social
👋 We are CytoData Society (CytoDS)! 🌟 We build and maintain an active community around image-based profiling of biological phenotypes induced by genetic, chemical, or other perturbations of biological systems. Join us to explore, share, and innovate together! #CytoData #Community