The tiny blobs of human brains grow "eyes" in the laboratory. And that thing can make for creating the new sensors for the nano- and miniature machines. Those extremely small cyborgs use muscle cells for moving and the neurons can deliver the control signals for the system.
The interacting neuron-microchip system can give the images for the controller's computers and the neurons can give electricity for the miniature microchips that control the system. Those systems are more accurate and independent than ever before.
The size of those bobs was less than 1 mm. but that thing can bring an interesting vision in nano- and biotechnology. The ability to make small brains, that can see things open the new road to the nano- and miniature machines. The problem with the nanomachines is that they must produce large numbers that are effective. That thing that the eyes that can sense light and other things can brow in the laboratory can solve the problem of the sensors of the nanomachines.
The problem with the small-size machines is that they cannot handle very effective computers. So the living neurons are controlled by electric signals can be the answer to the data handling problem of the miniature machines. The neurons can control the muscle cells that are moving things like the nylon fibers which purpose is to move those machines. And also the bioelectricity can use for delivering electricity for the microchips that are delivering commands for the system.
The idea is that the small blobs of neurons are created in the laboratory, and then those cells would program for searching certain things. And then they will put in the small-size robot, what the brain cells are controlling by using the BCI-type system. In these visions, the neurons can take from animals like a mouse.
And those neurons which mission is to share the senses can be taken from the optic or other sensorial lobes of the brain of the mouse. Then those neurons can be cloned for the control system for the small-size robots. The muscle cells use for moving the system. Those cells can connect with neurons which are controlling the movements of those cells.
If a computer decodes the signals of those neurons that thing can make it possible to create the new type of miniature robots. That thing makes it possible to make interactive brains for robots. This kind of system can use for blocking the blood flow to the tumors. And the same system can also be a horrifying weapon.
The idea is that in the soft-core robot are the cells, that create chemicals that clot blood. Those cells are in the chamber. The miniature robot will inject in the veins, and then the controller will drive it in a certain position. Then the ventilation will open, and the cells that are closing the veins can get the nutrient.
That makes them make the chemical or fibrin that closes the blood. That thing can block the blood flow to the tumor. The system can use the miniaturized radio control for searching the right position and then the operator can adjust the flow of the nutrient to those cells. The system can adjust the blood flow to certain organs or the areas where the tumor is.
And if that system is used to control the prisoners it can be very effective. That kind of system would not necessarily kill immediately. The system can use giving warnings before deadly force is used like blocking the blood flow to the musculus of the heart. And that thing makes it possible to take the prison escaper alive.
()https://dailyuknews.com/science/tiny-blobs-of-human-brain-cells-are-grown-in-a-lab-with-rudimentary-eyes-that-can-detect-light/
Image():https://images-prod.healthline.com/hlcmsresource/images/News/6107-Nanobots_Body-1296x729-Header.jpg
(https://visionsoftheaiandfuture.blogspot.com/2021/08/the-new-miniature-cyborgs-are-coming.html)
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