00:00Turning thoughts into text on a screen.
00:07The cap Daniel is wearing is recording the rhythmic patterns of his brain waves.
00:13As he reads the sentence, Daniel mouths the words,
00:18which enhances the way the brain recognises speech.
00:21An artificial intelligence decoder then translates his thoughts into words.
00:27It's close but not perfect.
00:30To prove this isn't a trick,
00:32I must choose the word Daniel should think of to end this sentence.
00:36Spoon.
00:38The AI reader gets it right about 75% of the time.
00:43The team is aiming for 90% accuracy.
00:46We have several sentence templates here.
00:48The technology uses two types of AI to decode the brain waves.
00:52At first we use the deep learning model to translate the brain signals into the intended words.
01:00And then we use the large language model to make the match of the decoded words
01:05and make up for the errors in the EEG decoding.
01:10Unlike earlier models, this technology does not need to be implanted in the brain.
01:15Experts say it could be used for rehabilitating stroke patients.
01:20As scientists, we look at a medical condition
01:24and we look at what function has been affected by that medical condition.
01:29What is the need of the patient?
01:31We then address that unmet need through technology
01:37to restore that function back to what it was.
01:42After that, the sky's the limit.
01:45A wearable device that could read your mind used to be science fiction.
01:50Now it's a step closer to reality.
01:53Technology that allows us to perform tasks just by thinking about them.
02:00And could one day even be used to read each other's minds.
02:06esIZABUR-1-34EN.
02:07This is a step cuz it will help us push to get an axe.
02:08Attention if you have been involved in this direction.
02:09Let's take a look.
02:10Let's see.
02:11Florida air
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