Brain-computer interface startups are surging — and poised to expand technologically and geographically. After early ...
At the heart of this research is a miniaturized transcranial optogenetic neural stimulator. This innovative device operates wirelessly, enabling real-time modulation of cortical activity. Key features ...
A radically miniaturized brain implant called BISC is redefining what’s possible in human–computer interaction, offering a paper-thin, wireless, high-bandwidth link directly to the brain. With over 65 ...
By directly communicating with the brain, a new wireless device could someday help restore lost senses or manage pain without medications, its developers say.
Brain-computer interfaces (BCIs) are emerging as a groundbreaking technology that has the potential to revolutionize the way humans interact with machines. By bridging the gap between human cognition ...
Forbes contributors publish independent expert analyses and insights. Jason Alan Snyder is a technologist covering AI and innovation. New research shows brain-computer interfaces can decode inner ...
Forbes contributors publish independent expert analyses and insights. Global Thought Leader in Cybersecurity and Emerging Tech Examining the mesh between humans and machines provides insight into the ...
Everyone – ourselves included – is talking about AI these days, for good reason. AI models now draft legal contracts, design chips, code software, edit videos, discover drugs, even run autonomous labs ...
An important milestone for brain-computer interfaces has been achieved. A new peer-reviewed neuroscience study led by researchers at the University of California, Los Angeles (UCLA) demonstrates a ...
BISC is an ultra-thin, single-chip brain-computer interface that sits between the brain and skull and uses 65,536 electrodes. The implant streams high-bandwidth neural data over a custom UWB link to a ...
Brain–machine interfaces (BMIs) represent a transformative field at the intersection of neuroscience, engineering and computer science, allowing for direct communication between the brain and external ...