EPISODE · Oct 30, 2023 · 58 MIN
Brain Computer Interfaces
from Gresham College Lectures · host Gresham College
Our brains are computers. What if we could enhance their processing power? Medical technology now allows for brain signals to be read and translated to reverse paralysis. Deep brain stimulation is also used to treat diseases such as Parkinson’s. Neural interfaces are already improving lives. How do they work? What’s next for our physical connection to digital technology? And what are the implications of having new hardware in our heads?A lecture by Victoria Baines recorded on 24 October 2023 at Barnard's Inn Hall, LondonThe transcript and downloadable versions of the lecture are available from the Gresham College website: https://www.gresham.ac.uk/watch-now/brain-computerGresham College has offered free public lectures for over 400 years, thanks to the generosity of our supporters. There are currently over 2,500 lectures free to access. We believe that everyone should have the opportunity to learn from some of the greatest minds. To support Gresham's mission, please consider making a donation: https://gresham.ac.uk/support/Website: https://gresham.ac.ukTwitter: https://twitter.com/greshamcollegeFacebook: https://facebook.com/greshamcollegeInstagram: https://instagram.com/greshamcollegeSupport the show
What this episode covers
Our brains are computers. What if we could enhance their processing power? Medical technology now allows for brain signals to be read and translated to reverse paralysis. Deep brain stimulation is also used to treat diseases such as Parkinson’s. Neural interfaces are already improving lives. How do they work? What’s next for our physical connection to digital technology? And what are the implications of having new hardware in our heads? A lecture by Victoria Baines recorded on 24 October 202...
NOW PLAYING
Brain Computer Interfaces
No transcript for this episode yet
Similar Episodes
Apr 20, 2026 ·29m
Apr 20, 2026 ·53m
Apr 20, 2026 ·37m
Apr 13, 2026 ·33m
Apr 13, 2026 ·46m
Apr 13, 2026 ·48m