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Tag: Brain-Computer Interface

Mind-Reading Breakthrough: US Scientists Decode Inner Speech with High Accuracy

Mind-Reading Breakthrough: US Scientists Decode Inner Speech with High Accuracy

Mind-Reading Breakthrough: US Scientists Decode Inner Speech with High Accuracy In a groundbreaking advancement, US scientists have successfully decoded inner speech with an impressive 74% accuracy, marking a significant leap in brain-computer interface (BCI) technology. This marks the first time researchers have been able to understand brain activity associated with simply *thinking* about speaking. Led by Erin Kunz from Stanford University, the team’s achievement holds immense promise for individuals with severe speech and motor impairments. BCIs capable of interpreting inner…

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Breakthrough Brain Implant Decodes Thoughts, Prioritizing User Privacy with Password Feature

Breakthrough Brain Implant Decodes Thoughts, Prioritizing User Privacy with Password Feature

Breakthrough Brain Implant Decodes Thoughts, Prioritizing User Privacy with Password Feature A groundbreaking new brain implant has been unveiled that can accurately decode a person’s internal thoughts, representing a significant leap in brain-computer interface (BCI) technology. Crucially, the device incorporates a unique privacy feature: it only begins to decipher internal speech when the user consciously thinks of a preset password or keyword. Published in Cell on August 14th, the study showcases a BCI capable of accurately interpreting up to 74%…

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UC Davis Breakthrough: Neural Implant Enables Instant, Expressive Speech for Paralysis Patients

UC Davis Breakthrough: Neural Implant Enables Instant, Expressive Speech for Paralysis Patients

UC Davis Breakthrough: Neural Implant Enables Instant, Expressive Speech for Paralysis Patients A team of scientists at the University of California, Davis has achieved a groundbreaking milestone in neuroprosthetics, developing a neural implant that can instantly translate brain signals directly into speech sounds and words. This revolutionary technology represents a significant leap forward, aiming to provide a ‘fully digital vocal tract’ for individuals with severe paralysis. Unlike previous brain-computer interface (BCI) systems that often suffered from high latency, limited vocabulary,…

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