Neuralink has unveiled Blindsight, a brain-computer interface designed to restore vision for the blind,including those blind from birth.
The device works by bypassing damaged eyes or optic nerves, sending visual information from a camera directly to the brain's visual cortex.
Note: Neuralink devices are investigational and are not commercially available or FDA approved. This video features voluntary participants in clinical trials who chose to share their personal experiences. Their statements reflect individual perspectives and experiences, which may not be representative of all participants or future outcomes.
Kenneth was diagnosed with ALS in 2024 and is losing his ability to speak.
Through Neuralink’s brain-computer interface technology, he is working towards regaining not just the ability to speak, but to speak in his own, original voice.
See how this is made possible.
Interested in joining our team? Explore open roles at https://t.co/XXGoQDpfDk.
Note: Neuralink devices are investigational and are not commercially available or FDA approved. This video features voluntary participants in clinical trials who chose to share their personal experiences. Their statements reflect individual perspectives and experiences, which may not be representative of all participants or future outcomes.
We are working to restore mobility that was lost due to disease or spinal cord injury by allowing participants to control robotic arms with their thoughts.
See how this is possible.
We're looking for exceptional engineers to help take it to the next level. Explore opportunities at https://t.co/XXGoQDpfDk.
Neuralink devices are investigational and not FDA approved. This video features voluntary clinical trial participants sharing their personal experiences, which may not reflect all participants or future outcomes.
We're building a surgical robot capable of reaching any brain region. The goal: a generalized neural interface to help solve any condition that originates in the brain.
The needle grasps and inserts each electrode thread of our implant into the brain.
We've built the technology to produce these needles in-house, using lasers to mill features invisible to the naked eye.