Friday, March 14, 2025

MIT researchers converted skin cells into neurons.



The ability to transform skin cells into neurons is an interesting thing. That is one way to create the cells to fix neuroimages in accidents. That is not the only thing. That this kind of version of bio-intelligence makes. 

Synthetic organic intelligence means hybrid systems that involve organic and non-organic elements. Those systems include microchips and living neurons. In some ideas, the hyper-powerful computer is the group of the brains under the dome. Those brains interact with computers using neural connections that are at the point, where the spine nerve normally goes. 

Microprocessors decode and encode signals between those neurons and the regular computers. 

The system is one version of the brain-computer interface,  BCI. 

And that system can be more powerful than we ever imagined. 

The ability to transform skin cells into neurons makes it possible to create new types of bio-hybrid microchips that mimic human brains better than regular microchips. The system can have three layers of living neurons. Those layers can act like human brains. And that is one of the most powerful and fundamental systems. 

That we can even imagine. It's possible that those systems can turn even more intelligent than humans. It's hard for us to imagine things like flat brains. The system can involve three boxes there are three layers of living neurons. 

And those three boxes form. The biological microchips that mimic human brains. That kind of system is one of the most intelligent and powerful than we can imagine. The ability to create artificial brains for machines is an interesting and same way frightening possibility. 

The ability to create large numbers of cloned neurons opens new paths for R&D work. But there are always risks in that kind of technology. The ability to create the singularity of brains and computers opens new and fascinating roads for people. I know that this kind of thing causes moralistic and ethical questions. That thing can make it possible to create new multipurpose, intelligent robots. 

And maybe in the future. That thing allows developers to create artificial humans. That brings new visions for long-term space travel. In that version, long-term space travel happens. By using normal AI-controlled spacecraft. Then at the destiny, the system creates the humans from the dataset. Every crew member's memories and DNA are stored in the computer. Then near destiny the AI creates cells that the system needs and then it bioprints those astronauts. 

That kind of biotechnology with 3D bioprinters makes it possible to bioprint even humans. 

This thing opens new roads to space systems. And it can also make it possible to create things. That we cannot even imagine. 

The thing is that we are just imagining theoretical systems that can transfer humans between stars. 

There will be hundreds of years before we can make routine flights in our solar system. Or that is the prediction. Maybe, that technology advances. Faster than we expect. 

But still, the road to another solar system is too far for technology. That we can produce in decades. It took centuries for technology to advance to a level that we can send spacecraft that can travel between Earth and Proxima Centauri in a human lifetime. 


 https://interestingengineering.com/health/mit-converts-skin-cells-into-neurons

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