Assistive algorithms are widely used in brain-computer interfaces (BCIs), but their effects on neural representations remain unclear. Here, the authors show that adaptive BCIs lead the brain to learn ...
A Brain-Computer Interface (BCI), also known as a brain-machine interface, is a direct communication technology that analyzes ...
What if your thoughts could allow you to feel the texture of an object, type a message, or move a robotic arm? How does the brain translate thought into physical movement, and can technology bridge ...
European Commission-funded MINIGRAPH project integrates graphene neural interfaces, implantable electronics with robotic ...
A five-day brain-computer interface training protocol that feeds back the brain's own error-related potentials significantly ...
Treatment-resistant neurological and psychiatric disorders, including Parkinson’s disease, epilepsy, and major depressive disorder, continue to impose a substantial global health burden despite ...
Even if you cannot move your hands, you can select characters on a screen by thinking "cursor to the right" in your mind.
Brain-computer interfaces (BCIs) have made remarkable progress restoring movement and speech in people with paralysis. While brain-computer interface technology thus far has largely focused on ...
Brain–computer interface research is advancing rapidly, bringing new possibilities for restoring movement, communication and independence to people with neurological disorders. In this special issue ...
A tiny stack of printed nanomaterials, thinner than a human hair and flexible enough to bend with living tissue, just did something no fabricated device has done before: it fired electrical spikes so ...
Neural interfaces are devices that can detect or modulate neuronal activity when placed in contact with the brain. They are already used to treat various conditions related to the nervous system.
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