Our new perspective out in @Sci_Bull ✨
The Organ‑on‑a‑Chip‑AI Virtual Cell (OoC‑AIVC) loop is proposed as a closed‑loop bidirectional framework for next‑gen biomedicine.
#OrganOnAChip#AIVC#VirtualCell#DigitalTwin
https://t.co/l6d4QfFTsO
JUST PUBLISHED: Metabolism-Regulating Microspheres: Design Principles, Therapeutic Applications Across Multisystem Diseases, and Future Perspectives
Click here to read the latest free, Open Access article from Research: https://t.co/SiHKX7X7Ts
The Innovation Life | Intelligent hydrogel microspheres open new strategies for precise local therapy of osteoarthritis (OA). #lifesciences#life#research#TIC2025
The Innovation Conference 2025 Topic Four: Brain-Inspired Intelligence and Materials Science.
This session will feature discussions on the computational applications and prospects of brain-inspired intelligent devices, as well as their material requirements.
https://t.co/ZmlSV7BL5S
#ArtificialIntelligence #materialscience
Novel engineered extracellular matrix developed by team from Chongqing Medical University aids cartilage repair, via @EurekAlert! https://t.co/anavsn8BbG
Our study shows that using IFN-γ-ECM can supercharge cartilage repair by boosting chondrocyte health and stem cell recruitment, offering a promising new strategy for cell-free cartilage grafts! 🥳🥳 #CartilageRepair#RegenerativeMedicine
https://t.co/Ar3eOli0TQ
AI Meets Academic Communication! The Cross-Cultural Intelligent Communication: AI-Powered Academic Exchange and Knowledge Sharing conference brought together experts to explore how AI is revolutionizing journal publishing and academic collaboration.
🌟 Calling young researchers in interdisciplinary medical fields! 🌟
Join IMed's 5th batch of Young Editorial Board. Passionate about multidisciplinary collaboration? Send your resume to [email protected] or scan the following code
Don't miss out on this growth opportunity! 🚀
Check this out! Our team developed selenium-loaded hydrogel microspheres that target damaged cartilage in osteoarthritis. It fights oxidative stress and slows down OA. A promising new approach! @Biomaterials_#Osteoarthritis#hydrogelmicrospheres
https://t.co/0kFS7LKK2G
New research! We created injectable mineralized hydrogel microspheres that help rebuild bone networks faster and smarter.Perfect for healing tricky bone defects.🚀#BoneHealing#HydrogelTech#InnovativeScience
I'm honored to be recognized by ScholarGPS as an inaugural Highly Ranked Scholar in the field of Intravenous Therapy over the past five years! @ScholarGPS https://t.co/mhVUIlRDEr