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Neurons in a dish learn to play Pong

nature.com

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Re: Neurons in a dish learn to play Pong

#2
This is about 40x more cells than they used to fly a fighter jet in a simulation back in 2004. https://www.nature.com/articles/nrn1572 .

I suppose the claim to fame in this similar study is the use of the title organoid and there's some legitimacy to that. Form and function are intimately tied in the brain and just a bunch of neurons on a petri dish isn't quite an organ.

Re: Neurons in a dish learn to play Pong

#3
post #2

This is about 40x more cells than they used to fly a fighter jet in a simulation back in 2004. https://www.nature.com/articles/nrn1572 . I suppose the claim to fame in this similar study is the use of the title organoid and there's some legitimacy to that. Form and function are intimately tied in the brain and just a bunch of neurons on a petri dish isn't quite an organ.

No post body was provided.

Re: Neurons in a dish learn to play Pong

#4
i would urge people to read the paper instead. The 'learning' is a bit iffy , and this was meant to test the brain theory of Friston rather than plug neurons into pong. Still, great job on the neurotechnology involved and a step in the direction where we should be going, controlling large numbers of neurons

Ars Technica has a better article, although they dont describe the dense electode array correctly: https://arstechnica.com/science/2022/10/a-dish-of-neurons-ma...

Re: Neurons in a dish learn to play Pong

#5
A question for someone who understands the neurology and biology of this much more than I do:

Once I have a group of neurons like this trained to do something, can I actually count on them to continue performing that task until they die? Or is it possible they spontaneously reorganize or "learn" a previously unseen behavioral pattern?

Re: Neurons in a dish learn to play Pong

#10

A question for someone who understands the neurology and biology of this much more than I do: Once I have a group of neurons like this trained to do something, can I actually count on them to continue performing that task until they die? Or is it possible they spontaneously reorganize or "learn" a previously unseen behavioral pattern?

I guess they can become tired also, just like humans. (Not a biologist)
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