SSVEP, Alpha, & EMG Triple BCI for Real-Time Control of a 6-Command Arduino-Powered RC Car
A hybrid brain–computer interface combining SSVEP, alpha rhythms, and EMG signals to control an Arduino-driven RC car with six distinct commands.
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Whether you're curious about BCIs or eager to innovate, you're in the right place. Let's push boundaries together!
Learn moreA hybrid brain–computer interface combining SSVEP, alpha rhythms, and EMG signals to control an Arduino-driven RC car with six distinct commands.
A day-long conference on everything Neurotech! Dissections, lab demos, and workshops to introduce high school students to the opportunities within neurotechnology.
Consulting Division teams presented their strategy pitches to industry judges, closing a year's worth of work.
Publications Division storyboarded, illustrated, and brought to life a children's book encouraging awareness about differences in our brains and bodies. Published and available on Amazon!
Using machine learning to detect whether participants truly comprehend semantic content.
Building brain-computer interfaces (BCIs) from the ground up. Teams utilize machine learning and hardware prowess and combine diverse signal acquisition systems.
Learning the foundations of neurotechnology. Teams evaluate up-and-coming research and receive mentorship from current explorers in the field.
Empowering the next generation of neurotechnology innovators. Teams build K-12 educational programs to share neurotech with our communities.
Tackling industry challenges. Teams evaluate and devise market-strategy plans for players within the neurotechnology industry.
Sharing neurotechnology knowledge in diverse forms. Teams publish scientific magazines, children's books, and podcasts.