Showing posts with label axons. Show all posts
Showing posts with label axons. Show all posts

Monday, September 20, 2021

Are the magnetite crystals in neurons nontechnical switches? Is their purpose to create connections between axons in the nervous system?

 


Of course, those crystals can act as the sensors of the magnetic sense. But is there some other and same way interesting explanation because those crystals are in our brains, 


Is the purpose of magnetite in our nervous system simply acting as the switch that connects the inner membrane of the neuron to the axon when the connections are needed? That thing would explain why those magnetite crystals are in our nervous system? 

Why is the magnetite in our nervous system? The fact is that maybe we have the answer for that thing. Maybe the purpose of the magnetite crystals is to pull the inner membrane and the end of the axon together. And that thing opens the road for the message that goes through the nervous system. The system would work like this. 

When the nervous system requires the route or connection it simply warms the magnetite crystals at the membrane and the end of the axon. That happens by increasing the energy production of the mitochondria. That thing increases the magnetic effect of magnetite. And then the axons will transmit the data in the cell. 

Those magnetite crystals can replace by using nanotechnological microchips. That means those microchips can inject into the nervous system of bugs or birds. They can use to remote control living organisms. And the nanotechnical microchips can send data to the data transmitter, which sends the senses of the animal to the computer by using the internet. 


The system can connect with the GPS location system. And EEG data can send to the command center by using the GPS transmitter. The command center can send the control signal by using a two-way data connection. 


The microchips can install in the proteins that the neurons are using as a nutrient. Then they will put in the amoeba or bacteria that is traveling to the neuro-tissue. And then the programmed cell death kills those transportation organisms. Those bacteria or amoeba will release those microchips over the brain tissue, and then the feeding system of neurons will position them in the right places. 

Magnetite has caused one very interesting theorem. That mineral can be used as the hard disk and what if the radio waves are used to stress the magnetite bites in the nervous system? That thing would transmit electricity to the nervous structure.

Can we someday see things that happened just before humans or animals died by stressing the magnetite from the brains of the corpse by using radio waves and superconducting quantum technology? The power of quantum computers can make it possible that the EEG curves of the animal or humans can turn into a film that can be seen on the screen of the computer. 

But in some other visions, those magnetite crystals that are stored in the nervous structure can store the last experience before death. That thing requires extremely accurate sensors. 

Theoretically is possible to return the memories of the dead person. If the crystals which are found from the head of dead persons are put in a superconducting chamber. And observing those crystals with very accurate sensors. The EEG curves that are stored in those crystals can return to observable form. 

Can maybe store on the computer's hard disk. And then the EEG can maybe somewhere in the future decode to the screen of the computer. The idea is that the superconducting magnetite crystals are stressed with radio waves. And the superconducting sensor can see the changes in the curves of the radio waves when they are traveling through the magnetite crystals. 


()https://physicstoday.scitation.org/do/10.1063/PT.6.1.20180830a/full/


()https://www.realclearscience.com/blog/2019/06/11/why_is_there_magnetite_in_the_human_brain.html#:~:text=A%20study%20published%20last%20yearfound%20that%20magnetite%20is,is%20produced%20within%20our%20cells%2C%20the%20researchers%20wrote.


()https://scitechdaily.com/magnetic-stimulation-shifts-abnormal-neural-connections-towards-correct-locations/


Image:()https://scitechdaily.com/magnetic-stimulation-shifts-abnormal-neural-connections-towards-correct-locations/

()https://visionsoftheaiandfuture.blogspot.com/

Friday, December 20, 2019

Theory of the neurocomputer



Theory of the neurocomputer 


What is, what little neurons have made?


Term neurocomputer means a computer, which has similar data handling function with human brains. The system bases multiple microprocessors, which are acting like living neurons. Each microprocessor has own small database and the entirety of processors are collecting those databases, what the sensors will input to that structure. So as you see in theory the neurocomputer is quite easy to create.

But can it someday be more intelligent than a human being? That is a question, what has been bothered, philosophers even centuries. And this question is one of the most frightening things in the world.

The neurocomputer is one of the most fascinating things in the human mind. The system is quite easy to model, but hard to make, and the thing is that we cannot create that kind of computer without deep knowledge of the actions and abilities of neurons, and the neurocomputer means a computer, what learns things like a human being.

There have been abilities to make copies of human brains by using 3D structures of transistors. The problem of those structures is that they don't have memory blocks inside them. So what makes neurons so special? The thing that the neurons are containing the memory blocks, what can be linked together.

When we are thinking that the RAM or read-access memory and ability to store data makes humans, that thing is not true. We must have the ability to forget things because forgetting things makes our memory and ability to handle data effectively operating. 


The reason what makes our brains so unique and powerful is that if the brains don't need some connections they would remove axons from that cell. That causes the memory block would be opened for new data. When the neurons are releasing some connections the connection from the sensors is replacing it, and then the new memory sign would be stored. A large number of neurons guarantees that the memories are stored in the small bites and if the data is missing because the neuron is damaged, that allows that only the small bite of memory or "picture" what is stored in memory has been lost.

How to create microchip, what emulates neuron? We should simply create microprocessors, which are equipped with very small RAM and flash memories. Both memory types, the fast memory, what is deleting, when the electricity is cut and the long term flash-memory, what acts like hard disk are both installed in the neuron, so we should model that kind of structure in the every each microprocessor, what we would do in the neurocomputer.

What makes neuron the neuron? That cell has integrated the memory block and the ability to connect itself to other neurons.  That thing is the ability to conduct electricity and the second thing is the ability to create connections between other neurons. And that thing makes a thing, which is called "intelligence". So if we think that that the database and the number of data are making artificial intelligence that thing would be similar to human intelligence.

So what is human intelligence? If we are thinking about the form of human intelligence we might think that thing is the great number of the databases, what are networking with each other? And every single neuron has the own database. When the human brains would start to make something intelligent, the neurons will send the message through the brains by using multiple neural connections and this thing makes human brains so effective.

They can use multiple data handling units at the same time. So this "iron-based" database handling system would be a series of multiple databases.  And the human brains are the database handling tools.

Could neurocomputer be the series of microprocessors that have integrated memory block? 


But there is also one really big difference between human brains and computers. In human brains, each data handling unit has own memory block. And in the normal computer, the microprocessor and data storages are indifferent places.

So if we want to make a copy of human brains we should make microprocessors, where is an integrated memory. That thing would make the wires between the processor and the memory blocks very short, which eliminates the heat, and one of the reasons for that is an oscillation of the metal atoms.

But when we are thinking about the RAM, there are two types of reading access memory. The memory, what is erasing when the electricity is cut in the memory circuit. And the memory, what stores data to flash-storage. Both of those things are RAM, and if we would make the microprocessors, what have similar abilities with the neurons,  we must create the microchip, which has both types of memory. That thing would make possible to create the microprocessor, which acts more like a neuron.


Tuesday, October 1, 2019

Biotechnology and nanomachines

Biotechnology and nanomachines

As I have written earlier, there is not very much difference between biotechnology and nanotechnology. Nettles and medusas have cells, which can use as extremely thin styluses. And when we are thinking the axons of neurons, they could be used as the electric wires in the extremely small microchips.

The brain cells of the bugs are planned to use as the biocomputers of some miniature robots. The cell would put in the chamber, where is connected to the EEG-sensors, and that thing makes possible that the neuron can operate the robot or computer, which is connected to it. This thing would make nanorobots more independent, what they could ever be.

One snake has the poison, which molecule seems like a rotor. When this rotor would slip in the cell, it would start to rotate and destroy the internal organs of the cell. This thing makes that molecule very interesting because it can use also for something, what we might ever think. The thing in nanotechnology is that only the imagination is giving limits for this very fascinating part of the machinery. The nanomachines are operating like full-size machines but their size is extremely small.

If those rotors would be equipped with iron atoms, what is put on the outer corner of those rotors, and they are put in the metal ring, that thing would allow creating extremely small generators, which can deliver electric power to the extremely small nanorobots. Those robots would send in the human body, and then those systems might even fix the DNA molecule inside the cells.

Another very imaginational way to operate the nano-size generators is to slip them in mitochondria. That would give extra power to those cells' organs, and in theory that would make more power to muscles and neurons. But this kind of thing is fantastic and as well as dangerous thoughts because we don't know, what will happen if we would create more electricity for cells of the human body or nervous system.

But when we are thinking about the use of nature with nano- and mini technology, there are some very interesting things in the vegetables, which can easily be used for nanotechnology. Those things are the injection hairs of the nettles, what can cut and then empty from the formic acid. That hair can be used as an injection stylus in some cases.

The thing in the use of natural materials in nanotechnology and it's instruments is a very interesting opportunity. If we think things like harpoon cells of some medusas, those things would be suitable tools in nanotechnical purposes. They are easy to collect, but the problem is that they are poisonous. But also benzene, what can be used in the nanotubes is really poisonous and highly carcinogenic material. Those cells can be used as the injection and transfer parts of extremely small parts of robots to one place to another.

Six clicks separate people from each other.

“A long-observed social phenomenon suggests that people across the globe are separated by surprisingly few connections. Credit: Stock” (Scit...