As prominent artificial intelligence (AI) researchers eye limits to the current phase of the technology, a different approach is gaining attention: using living human brain cells as computational ...
Please provide your email address to receive an email when new articles are posted on . The Stentrode brain-computer interface offers a non-invasive, nonsurgical solution for paralysis. Additional ...
Every four years at the Cybathlon, teams of researchers and technology “pilots” compete to see whose brain-computer interface holds the most promise. Owen Collumb, a Cybathlon race pilot who has been ...
California-based Cognixion is launching a clinical trial to allow paralyzed patients with speech disorders the ability to communicate without an invasive brain implant. Cognixion is one of several ...
In her lab at Oregon Health and Science University in Portland, Oregon, speech-language pathologist Melanie Fried-Oken has seen the development of assistive communication devices and brain-computer ...
Neurosurgeon and Engineer Dr. Ben Rapoport, co-founder of Precision Neuroscience, joins WIRED to answer the internet's burning questions about the emerging technology of brain implants and ...
A man who hasn’t been able to move or speak for years imagines picking up a cup and filling it with water. In response to the man’s thoughts, a robotic arm mounted on his wheelchair glides forward, ...
Neurotech developer Subsense is developing technology that might become the first nonsurgical, nanoparticle-based bidirectional brain-computer interface (BCI). It would be a big leap forward for the ...
Brain–computer interfaces are technologies that enable direct communication between brain activity and external devices, enabling researchers to monitor and interpret brain signals in real time. These ...
Using the AI-BCI system, a participant successfully completed the “pick-and-place” task moving four blocks with the assistance of AI and a robotic arm. UCLA engineers have developed a wearable, ...
A Chinese team reported a breakthrough in brain-computer interface technology in Beijing. Researchers used implanted electrodes to precisely localize deep-seated brain tumor boundaries. The trial ...
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