Showing posts with label human brains. Show all posts
Showing posts with label human brains. Show all posts

Tuesday, February 22, 2022

Researchers are found math neurons in human brains.



Image 1:)

Researchers are found math neurons in human brains. That thing gives new information on how and when the neurons are starting to specify. The discovery of the neurons that are specialized in mathematics is opening new paths for neurosciences. Because there are the math neurons there should be language neurons. 

And maybe there are specialized neurons for every type of skill that people have. So there could be cooking neurons and social neurons that are controlling social activities in the neural network. 

When researchers are finding when the separation of the neurons starts. That thing makes the revolution in the training and education. Learning new skills is rewiring brains. And if that process can be controlled by researchers, that brings the new and powerful educating tools to the hands of the educational processors. 

That kind of research can serve the medical care of brain damages. There is a possibility that in the future. The person whose brain is injured. Can get the neural transplant. That thing can make by using the cloned neurons. But the problem is: How to transfer the skills, that people had to those neurons? Every single skill that a person has is stored in neurons.





Image 2:)


And that thing means that if a neuron is lost. The data includes skills that are stored in those neurons gone forever. 

That is the thing that makes brain damage so hard to recover. Researchers can clone neurons. But the problem is how to recover skills and memories that are gone to the cloned neurons. Skills are memories like all other things. 

The thing is that when we are expanding our understanding of brains and their function we are getting tools how to make more effective neural networks. And those things might consist the hybrid systems where the living neurons are connected with artificial intelligence and non-organic sensors. 

We know why our brains are so effective. Brains are made of billions of neurons and that thing makes them effective. But the thing is that the brains are starting their data handling process same time in multiple locations in neural structure. 

And that increases their effectiveness. When some neuron group is needed for some other mission, that group will store the thing in memory. And that allows that other neuron group will continue with that thing. The internal axon structure can transmit the data that is stored in memory to anywhere in the neural structure. 

The new type of neural computers, networks, and deep-learning AI can use the data that is collected from the sensors. The deep-learning systems are following the success of the robots by using certain parameters. Those parameters can be simply how far a robot can operate without causing damages or getting damaged. 

The fuzzy logic makes that kind of system "quite easy to make". At the first, the AI would operate by using a large number of actors. When some actor will make mistake the AI drops that thing away. If the AI would follow robots that system records how far a robot can travel or how long it can operate. 

Then the parameter can be simple like this: (number of actions/time unit). The best result would be stored in the memory of AI. And then the AI would use mission records to find out where the mistake is made. If a robot falls into the canyon. 

The AI would control those machines to drive farther from the canyon's edge. So the best result is the same thing that makes the AI select a certain route. And of course, if we want to connect the number of actions to the robot. That thing can be picking up the ground samples. 


https://scitechdaily.com/brains-of-cosmonauts-rewired-during-space-missions/


https://scitechdaily.com/hiddenite-a-new-ai-processor-based-on-a-cutting-edge-neural-network-theory/


https://scitechdaily.com/specific-math-neurons-identified-in-the-brain/


Image 1:)https://scitechdaily.com/brains-of-cosmonauts-rewired-during-space-missions/


Image 2:)https://scitechdaily.com/specific-math-neurons-identified-in-the-brain/


https://thoughtandmachines.blogspot.com/

Monday, April 1, 2019

Could the soul of human hide in the digital mode?

Could the soul of human hide in the digital mode?

The idea was actually in the movie "Tron", where the man disappeared, but the electric vortex or the soul would suck in the computer. The thing was that the system would destroy the body of the human, but the person would continue the living in the digital form, which means that the brain waves of that person would be stored in the computer or Internet. Then the soul could jump between the different robots and hide on the Internet, and if we could do that, could we someday return the soul to some other or the cloned body. And would the experience of being in the digital form similar to the movie "Tron".

This might feel a wild idea, but things like witness protection and other kinds of things would need the case that the body would be cooled in the very low temperature, and then the person would "sleep" a couple of hundred of years. And then the "soul" would return to that body, when the people, who were treated that person have been dead, or the symptom, what caused the freezing would get treatment.

The thing in that kind of thing is that we cannot even know is that kind of thing possible, or would it cause the thing that this inmates personality would change? In the case that we could store our EEG or soul on the Internet, we must think, what it might feel to be in the electric memory of the computer.

Would it actually like in some "Tron" movie, or would it be something different, or would that brain signals have the awareness at all, and could that person remember things, about the time, when that hypothetical test, where the soul has been copied and transferred to the new body has been done. One of the most interesting questions about this kind of things is would that EEG has the own will, what would make it dangerous? And would it possible to create synthetic EEG or soul and transfer it to the brains by using electric shocks, what will stimulate the neurons?

And the second thing in the cases that we would store our memories to the Internet for reusing that thing, would the person what would be created by the cloning and memory transfer actually the thing or person, what that person was before that operation? The idea that the soul can  be copied in the hard disk would seem very interesting, but there is one thing, and that is that we don't have a single official experience about this kind of things, but there is one very interesting problem, and that is the possibility of connection with the original and copied souls. This kind of things is really interesting to think about when we are thinking about computers and their connection to human brains.

Monday, March 4, 2019

The quantum processor would act like human brains.

The quantum processor would act like human brains.


The quantum processor is actually a copy of the human brains. There are two layers of microprocessors, what are communicating together. The upper layer is like the brain core and the lower layer would be like the bottom of the brains. And in theory, this is the thing, what could make the quantum processor possible, if the operating system would support that two or more layer 3D structure, what is in structural and operationally copy of the human brains.  About attempts to make a copy of human brains by using transistors is a very interesting question. The problem is that if we would want that transistors would replace neurons, we must remember one thing.

The thing is that we would need 30 to 500 billion transistors for replacing each neuron. And maybe in somewhere in future, we would have nanotechnical way produced transistors for making fully functioning copy of human brains, and in fact, there are persons, who attempted to make similar structures by using transistors and other technical components.

And the thing is that the transistors and later microchips are connected in the 3D-structure, what is filled with polymer. The role of the polymer is to insulate the metal structure from the electromagnetic radiation. And the fat has the same role in human brains.  The human brains are so effective because many neurons would handle the problems at the same time.

This means that the data goes in the human brains in simultaneous rows what comes one after one in the mirror neurons, what brings the thing in the knowledge, and the structure of human brains have been used for creating the quantum processors. But the thing is that we cannot create the operating system for that thing. The quantum processor would have the 3D structure, and it can be like two layers of microprocessors, which are connected together.

The thing is that by using this kind of technology the scientists attempted to create artificial brains, what are learning things like human brains. And this thing has been problematic because even the best and the most powerful computers in the world only the fraction of the transistors, what are needed for creating that structure, and of course, there would be needed the operating system, what will teach that thing to operate.

The artificial intelligence is a strange thing because if it wanted to create that it can spontaneously learn things like humans do, the hardware and software must have more advantages. There is a possibility to create programs and operating system, what can be taught to make decisions on the car, what travels on the road. This system bases the idea, that the programmer would program the system, what has the capacity for image recognition. Then the car would take a little trip with driver and programmer, and the camera what is installed in the car is taking the picture all the time.

And the programmer would mark everything, what comes to the way by telling the car, should it drive slower or evade things like traffic lights or street lights and people. That thing would happen by using the photographs, what the system has collected. A person who would teach that machine would mark every point in the pictures and give instruction, what to do in each situation. If the car would face similar objects, it can use the procedures, what it has done earlier with similar objects. But in fact, there are many risks with this kind of things. And the driver must always find the things, what is going on.

There could happen things like that the programmer forgets to mark some vital targets like humans or pets to the system. And the thing is that the computers would not know anything, what is not programmed in their memory. The thing in machines is that they would never ask anything, and even if they would ask something like "did you forget something" the user can close that window by using the ESC button.

But if the computer would become self-learning it can also ask other computers the instructions, and link it's own database to the other databases, what are stored in the network of the servers. This would be a very nice and easy way in theory to create the program, which can drive a car on the road. Making more complicated things must artificial intelligence have the supporting infrastructure, what is more advanced, larger and complicated.

The problem is that this kind of thing needs more than some 150 billion transistors. The transistors are the thing, which makes microchip operating, but the thing is that the benefit about human brain if that it will start the handling of problems in multiple places. The ability to use many places or centers or nexuses for computing at the same time give the very small thing the very high power computing capacity. And this is the thing, what makes the human brains so fascinating.

Saturday, March 2, 2019

How to make human brains 2.0? (And writing about advantages of the biotechnology of tomorrow)


Kimmo Huosionmaa

The next text would be thought, what kind of advantages will the nano- and biotechnology have probably in the tomorrow or near in the future. The copy of human brains is probably under the development in some laboratories on the world. The technology would base the advanced nanotechnology and things like installing the microchips in the neurons, what is filled with silicone. Scientists have been made artificial brains by using silver, is the great news of today's neuroscience and artificial intelligence. But maybe tomorrow we can make copies of human brains, and in theory, this technology already exists.

The idea is that liquid part of every each neuron would be replaced by using silicone, and inside each neuron would be installed the microchip. That technology allows to create artificial brains, and the transmitters can be replaced with nanorobots, what would store the information in their mass memory chip and then transmit the signal from cell to another. In those artificial neurons would have tiny docking ports for each nano-sized submarine. And those submarines would travel between those neurons like some spacecraft, and replace the transmitters in that artificial tissue.

This kind of things make me think about this kind of technology, and we might have a copy of the human brains in a couple of years. The thing is that nanotechnology allows creating a perfect and fully functioning copy of human brains, and the thing about those supercomputers is, that we can make copies of the neurons, and put them in the same core, and make those copies by using silver and carbon fibers. Those carbon fibers would be acting like axons of the neurons, and the supporting cells can replace with nanomachines, what would act like real cells in the real bodies. And the core of artificial neurons would be made by silver.

 But this thing is still very expensive and the use of those brains would be only science fiction. There is also made theories about the thing that human brains could live forever in the future. This thing goes like this in theory. and it might seem quite difficult to accomplish. So the neurons of the human brains would suck empty, and the core of those neurons would cover by the polymer. Then the cells would fill with silicone, which would allow that those neurons stay in the form.

And the polymer would equip with nanomachines, what would transfer the axons make new connections, and the role of those robots would be that they would bring the carbon fiber in the right place, and then they would put it in the right place. That would allow making connections in that system just like human brains would do, and in the each of those would install the microchip, where is coded the DNA of each neuron. The microchip can communicate with nanomachines as it makes in the natural brains. Also, the fat between the neurons would be replaced by silicone, which helps to protect those neurons.

This kind of systems are very advanced, and they need extremely sharp technology. The thing is that those systems might use plutonium batteries for creating the electricity, or they can be equipped with artificial mitochondria, what can use to make orgone energy by using the food, what person eats. This technology uses actually similar things, what the so-called bio-battery uses. Bio battery uses similar food what we eat or sugars to create electricity by using bacteria.

In this technology, the electrodes are connected to bacteria, what are all in the same way in the tank. And that tank can be very small size. That kind of biological batteries is very attractive because they are quite easy to build in theory. And they use the same food, what we use. And in the cell phones that could mean that the telephone would operate by using lemonade or some other sugary drink. If that technology will be true in some day it would revolutionize mobile technology.  That technology seems very simple, the electrodes would connect to both sides of the battery, and the heat what comes from the mitochondria of the bacteria would make the organ electricity true, and those bio batteries can also installed in each neuron.


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