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Yes and no?

(Disclosure: I are software dev and do not know medical anything but can read good, so I just do a lot of that)

Neural implants ALREADY re-wire muscles; more, they can actually stimulate nerve regrowth (you trying to use those paths actually help them recover; Kill Bill style). I don't see this improving that effect, except that it's a better form of implant (less downsides)...

...however, I wouldn't be surprised if it was better enough than existing implants that you can do something new; namely, make artificial nerves to replace damaged ones... and I wouldn't be further surprised if the effects of the mesh act as a scaffold to promote cell regrowth, like the 3D printed organs.



LTP is a wonderful thing. Your brain grew that network before and now it is fading away. The only thing stopping you from replicating it is the missing medium and if we provide that before you lose the network, it may be able to.


It's been a while since my various neuroscience lectures/courses, but as far as I remember LTP only refers to the process of strengthening existing synaptic connections, not the forming of new ones. The process of forming new connections is called synaptogenesis.

That's just nit-picking about terms though, it is clear enough what you mean - except that growing the exact same network still doesn't give you the exact same synaptic strengths of each connection. And I don't know what you mean by replicating the existing network - do you mean a technique to recreate the exact same neural network? But even if you manage to do that, where are the boundaries, how do you know which connections matter and where do you stop? I probably don't understand your plan though.


Yes, we already have the tech for interfacing nerves. This way nerves can be reached with reasonable precision without surgery, likely without a visit to a hospital.




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