"A brain in a vat that believes it is walking"
Organoids are replacing regular AI in systems. An organoid network connects so-called mini-brains into a network. This technology is based on. Mini-brains are used. In the medical industry. To replace microchips. Mini-brains are lab-grown neural structures. Created originally for medical testing. Researchers tested neurological and cancer medicines using those brains. Researchers taught mini-brains to play ping-pong and interact with computers.
During that experiment. Mini-brains controlled computers. This made it possible to create artificial intelligence using half-organic networks. It’s possible to connect. Mini-brains together. Using regular computers and networks. That means it's possible to create a computer. That is as intelligent as humans. An interesting detail is that. It’s possible to create full-size human brains in the laboratory. And then those brains. They could be connected. Those brains in a vat together. That makes it possible to create the ultimate neural computers.
Another interesting model is this. The brain-in-a-vat can also control robot bodies. The robot bodies can have organic brains that control their actions. And in some very interesting futuristic ideas, the bird-of-prey, or those birds' brains, could control jet fighters. Researchers can create artificial brains. Using cloned stem cells. Then they connect those brains to a jet fighter’s computer.
Those things are interesting. This can pave the way to robots. And computers. That are as intelligent as humans. This raises ethical and moral questions. Do those machines need the same rights as humans have? The problem with intelligent machines is that they can start to think that they are slaves. The brain is the center of our lives.
And that means. Cloned brains are also like ours. Cloned brains require information. To know how to react. So, when we think about the robots. That human brains control. We think about humans. With steel shells.
And that can lead to machine rebellion. When. We think about machines. We think about non-organic silicon microchips. We never thought about machines that computers created using living neurons. Those artificial brains can think. In a similar way. To how. We think. Organic computers. They are similar to our brains. But there is one little difference. Computers can drive information into them. With. Incredible speed. And they can spread that information across the network.
When we think about the brain-in-a-vat. It. Can communicate with other brains using the brain-computer-interface. Those chips. That the system will use. They can be similar to those microchips that some companies have already implanted in human brains. Those microchips allow wireless communication over the network.
And that makes it possible for organic brains to communicate with computers. Or they can communicate directly with other brains. This can give a network high-level abilities. And those systems are opening a path to next-generation systems.
Maybe someday in the future. We will send the probes to other solar systems. In some scenarios, those probes could use brain-in-a-vat as computers. This means those cloned brains communicate and control the craft’s computers. When those brain cells turn old. The system can clone other brains. And drive data into the new brains.
https://en.wikipedia.org/wiki/Brain_in_a_vat

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