Australia has unveiled a bionic eye system that sends visual signals directly to the brain—giving hope to those suffering from total blindness.
The system includes a camera-equipped eyeglass, a wearable processor, and an implant that bypasses the optic nerve to connect to the brain’s vision center. Initial trials have shown users recognizing shapes, lights, and even limited movement.
While still under clinical development, the bionic eye marks a new era of neuroprosthetics, where vision loss may one day be fully reversible.
#BionicEye #VisionRestoration #AustraliaInnovation #Neuroprosthetics #BlindHope #michanicalmind
The system includes a camera-equipped eyeglass, a wearable processor, and an implant that bypasses the optic nerve to connect to the brain’s vision center. Initial trials have shown users recognizing shapes, lights, and even limited movement.
While still under clinical development, the bionic eye marks a new era of neuroprosthetics, where vision loss may one day be fully reversible.
#BionicEye #VisionRestoration #AustraliaInnovation #Neuroprosthetics #BlindHope #michanicalmind
Australia has unveiled a bionic eye system that sends visual signals directly to the brain—giving hope to those suffering from total blindness.
The system includes a camera-equipped eyeglass, a wearable processor, and an implant that bypasses the optic nerve to connect to the brain’s vision center. Initial trials have shown users recognizing shapes, lights, and even limited movement.
While still under clinical development, the bionic eye marks a new era of neuroprosthetics, where vision loss may one day be fully reversible.
#BionicEye #VisionRestoration #AustraliaInnovation #Neuroprosthetics #BlindHope #michanicalmind
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