CompuCell3D is a powerful software for modeling tissue systems. Join CompuCell3D Workshop 2026 to learn more! https://t.co/irbegEiT5o
I'll talk about Tumor Migration Patterns at 1:00 PM EDT, 07.31.26. The session will also be live-streamed on YouTube https://t.co/KI9JjtXlwD.
Spacetime That Remembers
A localized shear front moves across a flexible Spacetime fabric, briefly twisting and slipping the weave as it passes. But the fabric does not fully return to where it was.
Just received a proof copy of my new GeoAI book from Amazon! The printing quality is very good. It is now the #1 best-seller in GIS, Remote Sensing, and Computer Programming Languages. Grab your packpaer copy here: https://t.co/03KbrDXord
PDF edition available in English, Spanish, Chinese, French, and German: https://t.co/i039IxTV6U
#geospatial #geoai #opensource
https://t.co/8TeegQLVv6
Join us at the upcoming qBio Conference, where researchers across biophysics, systems biology, and quantitative modeling come together to share cutting-edge discoveries and ideas.
qBio Conference, July 27-30, 2026, at University of Chicago
Textbooks haven't changed in 100 years. Until now...
Smart Biology's LIFE 3D Animated Textbooks replace flat diagrams with immersive 3D models, narration, and interactive quizzes.
It's the textbook reimagined.
#biology#science#3D#animations#EdTech
1/10
ML can solve PDEs – but precision🔬is still a challenge. Towards high-precision methods for scientific problems, we introduce BWLer 🎳, a new architecture for physics-informed learning achieving (near-)machine-precision (up to 10⁻¹² RMSE) on benchmark PDEs.
🧵How it works:
New paper on the generalization of Flow Matching https://t.co/BJMHUnY6xJ
🤯 Why does flow matching generalize? Did you know that the flow matching target you're trying to learn **can only generate training points**?
with @Qu3ntinB, Anne Gagneux & Rémi Emonet 👇👇👇
Last year in Science, researchers reported a nanoscale-resolution reconstruction of a millimeter-scale fragment of human cerebral cortex, giving an unprecedented view into the structural organization of brain tissue at the supracellular, cellular, and subcellular levels. https://t.co/mGd4TnbVTn #ScienceMagArchives
Very happy to join Gorden Research Conference for bacterial cell biology and development. I’ve been enjoying learning chem-genetical molecular mechanisms of cellular regulations, such as growth, membrane structure, and condensates.
I'm happy to share our new paper, Protrusion force and cell-cell adhesion-induced polarity alignment govern collective migration modes.
https://t.co/McDNhBzxfA
We are thrilled to share that our first paper from my new lab, Spateo (https://t.co/a0BC0Cf3Ec) for spatiotemporal modeling of molecular holograms, is now online in Cell: https://t.co/UUZkyXYJtG. Spateo is a comprehensive analytical framework for 3D whole-embryo spatiotemporal modeling. Its advanced features include:
• 3D alignment and reconstruction at the whole-mouse-embryo scale (see the animation).
• 3D spatial domain digitization and cell-cell communication analysis to understand spatial gene expression gradients and both inter- and intracellular communication.
• 3D morphometric and volumetric analyses along with 3D morphogenesis vector field modeling to quantify dynamics such as surface area, volume, and cell density across organs, and to dissect the interplay between morphogenesis factors and cell migration.
• A “Google Earth”-like browser, Spateo-viewer (https://t.co/s33SS7jvYL and https://t.co/BbY6bIJtS0), for interactive and intuitive exploration of 3D spatial data.
• Additional features, such as RNA signal-based single-cell segmentation.
We are also honored that Nature “News and Views” has highlighted this work as well: https://t.co/8F4s6GJeBY.
This is really an amazing outcome after two years' heroic revision process that rewrite the entire paper using a new data (https://t.co/xbahWSeGgx) for whole mouse embryos.
How is the collective behavior of cells in curved tissues influenced by fundamental properties of the underlying geometry? We find that gaussian curvature induces a striking “active velocity wave” in rotating spheroids!
Beautiful live analysis (spinning-disk) of human fibroblast migration in a 3D collagen matrix using particle image velocimetry to measure matrix deformation. Cells deform the matrix at the front of migration. Not seen with HUVEC. Yamada & Doyle @NIH
https://t.co/KL9efVKzAH
It's always amazing to see the connection between tiny molecular machine and living cell. This short clip shows filopodia and lamellipodia extension via actin polymerization in a migrating fibroblast. #biology#Animations#education
Another graduation season. Sal Khan was invited as the keynote speaker, and announced the partnership with CMU. It is always inspiring to listen to talks from great people, and listen to their stories about positive impact.
https://t.co/oaOXhdu2bb