Explore how PEDOT:PSS hydrogels and DLP technology are creating revolutionary brain-computer interfaces that bridge the gap between rigid electronics and soft neural tissue.
Explore how machine learning algorithms decode EEG signals to identify physical motions, with applications in rehabilitation and human-computer interaction.
Explore how flexible neural implants made from advanced materials are revolutionizing neuroscience by reducing tissue damage and improving long-term brain-computer interfaces.
Explore BrainGate technology - a revolutionary brain-computer interface that bridges the gap between thought and action for people with paralysis and spinal cord injuries.
Explore how cutting-edge technologies like brain-computer interfaces, robotics, and virtual reality are revolutionizing neurorehabilitation and helping stroke survivors regain movement.
Explore how brain-computer interfaces are turning silent thoughts into digital speech, restoring communication and personhood to those with locked-in syndrome.
Exploring the convergence of neuroscience, brain implants and artificial intelligence - how silicon chips are bridging the gap between human cognition and AI.
Explore how Error-Related Potentials (ErrPs) are transforming neurological diagnosis and treatment through cutting-edge brain research.
Explore the fascinating frontier of hybrid intelligence where human cognition joins forces with the computational prowess of AI systems.
Explore how real-time brain signal visualization is transforming neuroscience, enabling us to watch the brain's electrical activity as thoughts and sensations occur.