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China approved invasive brain implant NEO: first in the world

https://sudonull.com/china-approved-invasive-brain-implant-neo-first-in-the-world

China became the first in the world to approve commercial use of the invasive brain implant NEO. Paralyzed patients can move their hands again. Learn how BCI is changing neurotechnology.

Drug for growing new teeth TRG035: trials in Japan

https://sudonull.com/drug-for-growing-new-teeth-trg035-trials-in-japan

Japanese startup Toregem BioPharma has started clinical trials of a drug for growing teeth. Learn how TRG035 works, risks and potential of the technology.

From other projects

Titanium implants with bone masking — development by IPTT RAS

https://ymaho.com/titanium-implants-with-bone-masking-development-by-iptt-ras

Bioactive coating for 3D-printed titanium implants mimics living bone. The implant fuses with tissue, reducing rehabilitation time. Learn how the technology is changing surgery.

Neuralink Robot: Automatic Chip Implantation into the Brain

https://ymaho.com/neuralink-robot-automatic-chip-implantation-into-the-brain

Neuralink introduced a robot that implants chips into the brain in 20 minutes without opening the membrane. Learn how the technology is changing neurosurgery and the BCI market.

Stem cell kidney growth implant: trials in Japan

https://ymaho.com/stem-cell-kidney-growth-implant-trials-in-japan

Trials of an implant for growing kidneys from stem cells have begun in Japan. The technology could replace dialysis. Details about the breakthrough and risks — in the analysis.

Biodegradable stent: French cardiologists implanted a new one

https://ymaho.com/biodegradable-stent-french-cardiologists-implanted-a-new-one

French cardiologists implanted a fully biodegradable stent that is eliminated in 18 months. Learn how it is better than its predecessors and what risks remain. Read the details.

Chip USC for edge computing in medicine: synaptic plasticity

https://ymaho.com/chip-usc-for-edge-computing-in-medicine-synaptic-plasticity

Analog USC chip mimics the brain, learns without batteries and code. Revolution for wearable devices and implants. Learn how the self-learning memristor works.

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