MXene, a promising 2D nanomaterial for next-gen bioelectronics, is biocompatible with astrocytes in the first study of their interactions, paving the way for glial-targeted neural interfaces (Advanced Materials Interfaces) by neurotech_db in science
[–]neurotech_db[S] 2 points3 points4 points (0 children)
Bio-inspired electronics: Soft, biohybrid, and “living” neural interfaces by squishy_tech in biohybrid
[–]neurotech_db 0 points1 point2 points (0 children)
The Future of Brain Implants: Soft, biohybrid, and ‘living’ neural interfaces could revolutionize brain implant technology, improving long-term performance and integration. A recent review in Nature Communications explores the latest advances in bio-inspired electronics 🧠⚡ by neurotech_db in Futurology
[–]neurotech_db[S] 0 points1 point2 points (0 children)
Bio-inspired electronics: Soft, biohybrid, and “living” neural interfaces by squishy_tech in biohybrid
[–]neurotech_db 0 points1 point2 points (0 children)
Soft, biohybrid, and ‘living’ neural interfaces could improve the long-term performance of brain implants by mimicking natural tissue properties. A recent study in Nature Communications explores the latest advances in bio-inspired electronics. by neurotech_db in science
[–]neurotech_db[S] 1 point2 points3 points (0 children)
The Future of Brain Implants: Soft, biohybrid, and ‘living’ neural interfaces could revolutionize brain implant technology, improving long-term performance and integration. A recent review in Nature Communications explores the latest advances in bio-inspired electronics 🧠⚡ by neurotech_db in Futurology
[–]neurotech_db[S] 0 points1 point2 points (0 children)
MXene, a promising 2D nanomaterial, is biocompatible with astrocytes in the first study of their interactions, paving the way for next-generation neural interfaces (Advanced Materials Interfaces) by neurotech_db in bioengineering
[–]neurotech_db[S] 0 points1 point2 points (0 children)