Showing posts with label prosthesis. Show all posts
Showing posts with label prosthesis. Show all posts

Friday, January 7, 2022

Hacking the brains is needed for advanced robotics.

 

 Hacking the brains is needed for advanced robotics. 



Hacking the brains and creating synthetic memories is one of the biggest conspiracy theories in the world. The thing is that these kinds of things are under research and the purpose of that kind of technology, where brains are hacked or cracked is to fix brain damages. Hacking the brains is theoretically very simple. The researchers must only record the EEG from the brains and then connect that EEG signal to certain images. So this thing makes it possible to read dreams and affect them. 

The person would see images about things like animals or humans, and then the EEG will record while that process. Then the person looks at a longer film. And then the EEG that is recorded during that process. Will compile with the EEG records that are taken while the person looks at images. The problem is only if those EEG curves are unique. But if the EEG curves are similar there is the possibility to download things like dreams to the screen of computers. 

The thing is that hacking brains are giving the ultimate possibilities in many areas from science to the military. There is the possibility to educate people simply by inputting data into their brains. And the false memories are making it possible to give combat experience to soldiers before they even go to combat. But these kinds of systems are extremely dangerous in the wrong hands. 

There are visions of the external robot body. Brain hacking gives those systems the ability to communicate with the nervous system without borders. This kind of system requires brain hacking for working perfectly. 

Hacking the brain is needed for developing the prosthesis. That is reacting to nervous signals. The system must "only connect" certain EEG curves to certain movements. The same system can use to control robots and especially human-looking robots by using brain waves. The reason, why the human-shaped robot is easy to control by using the EEG. 

Is that the manipulators and the senses have the match in brains and robot body.  So that thing makes it possible to make a robot emulate the movements that the operator makes. If the system uses the signals taken from the brain areas. Which controls the person's movements the controlling that kind of system requires that person is moving. 

So the system that controls the EEG signal requires the brain tracks that are activating the neurons that are moving muscles. The problem with that kind of external body is that the person who is using them must move while using that robot. The system uses the signals that are taken from the movement centers. So making that kind of system using the system requires the data that activates the neurons that are moving muscles. 


The series of neuron activation while the person will move hands

1) Will to move hands will be sent 

X) To the transmitter-neuron sends that data to 

2) Neuron what is controlling muscles


So the series of actions that this kind of system needs to move robots. While a person sits on the chair is this:


1) Will to move hand or leg will be sent 

X)  to transmitter neurons

2) The robot control level


The problem is how to aim the signals of the transmitter neurons to the robot. That means that those signals must reroute to the robot without those signals can activate the neuron that controls muscles. But if the operator can move all the time. That thing is not the problem. 

Of course, muscles can be disabled, by using some medicals, but that thing is dangerous. And that means the system that controls the external bodies by using the EEG is a challenging but fascinating mission. 

The BCI (Brain-Computer Interfaces) are the key to BMI (Brain-Machine Interfaces). Those systems are control robots by using EEG. Normally the BCI is connected to the speech center in the human brain. And that thing transforms EEG to speech. The same system can use to control robots. The same signals that control the speech synthesizer can route to control robots. So when the operator thinks "robot move forward" the robot moves forward. 

The problem is. How the AI knows which commands are meant for the robot? The solution is taken from dog training. When trainers give commands to dogs they must separate the commands from common noise. 

Certain gestures or certain words predict those commands The purpose of those things is to tell the dog that commands are meant to it. The same problem is with robots. Robots must separate the commands that are given in purpose from other words. 

Before every command is a confirmation word. And the purpose of that prediction word is to route the command to the robot. 

Every order that is given to the robot is forwards the control word. That the AI recognizes that commands are meant for the robot. The same system can use voice commands. And the BCI is only the enhanced version of this system. 

The operator can use virtual reality sets and headphones to connect themselves to the robot. But there is the possibility to connect the robot to the body by using the neural connection that allows controlling robots straight with the EEG. 


https://futurism.com/could-we-hack-our-brains-to-gain-new-senses


https://scitechdaily.com/cracking-the-neural-code-to-the-brain-how-do-we-provide-meaning-to-our-environment/


Image: https://scitechdaily.com/cracking-the-neural-code-to-the-brain-how-do-we-provide-meaning-to-our-environment/


Saturday, October 5, 2019

When eyes would be replaced with cameras

When eyes would be replaced with cameras

If we wish to make a camera, which is connected to human brains, we don't need to make many complicated surgeries. The idea is that the neural impulse would be taken to the sight center of the human brains by using an external device. The system contains the electrodes, which would stimulate the brain core in the point, where the sight centers are. And this kind of system can installed on the helmets, what might look like devices, what bicyclists use every day.

But of course, we could implant microchips into the skull. That means that those microchips, what helps a person to get the more clear vision of the things, what are around that individual. Those microchips can use similar electric technology, which is used in pacemakers. If we would not want to use plutonium batteries, we could create a system, which is similar to the wireless loaders of the mobile telephones.

That wireless loading system might be the same, which is used with mobile telephones, and the user can simply put it under the cushion. But in some imaginational versions of those systems, they could take electricity from the nervous system, and that means those microchips can be extremely small. But let's think about the problems of those microchips.

When we are thinking about the microchip, what mission is to give impulses to the vision center of the human brains we must realize that this system would operate by using BlueTooth, what means that the user can use normal action cameras with those devices. And the problem is if the person would work in the high-power magnetic field.

The thing, that solves that problem is the helmet, or "folio hat", which makes the faraday cage around that system, and the thing is that in those kinds of cases those persons must only put the cap on their head, where is the electrode in the right points. In that case, the data transmission would be done by using the device, which is installed on that hat.

If we are thinking about the systems like microchips, what is controlled by using brain waves, we must realize that we would install the electrodes of the entire EEG-system fixed on the skull, and that system can simply be connected to a portable device. Those devices could be mobile telephones, what have modified programs, what mission is to operate as the decoders, what transfer the electric actions of the brain core to the movement of robots. And they can be connected to thigs like exoskeletons, what mission is to give the paralyzed person able to move.

But those systems can also move the single prosthesis. That kind of prosthesis can just put in the place and remove like some kind of sleeve. And they would transmit the senses what are created by piezoelectric crystals or some other type of pressure and heat sensors wirelessly to the brain core.

In those cases person who would use "auxiliary hand" must not be handicapped. In many cases, people like technicians feel that they should have the third arm. And in this case, the helmet based system can communicate with that extra arm, where can be the sense of touch, but that thing might have also the extra camera, what mission is to be the extra eye to the user of that system.

Tuesday, May 14, 2019

The tale of the new kind of prosthesis

The tale of the new kind of prosthesis

New kind of prosthesis can put in the body of the victim of the accident without that person notices a thing. If the surgical operation would be made while the patient is unconscious, in theory, that thing could even hide from that inmate. Mind-controlled prosthesis or the prosthesis, what is controlled by using EEG would become more realistic than ever before, and the user of those new prostheses would not even notice the existence of the new intelligent prosthesis.

https://www.youtube.com/watch?v=F_brnKz_2tI

That new prosthesis has a sense of touch is very new technology in the world of prosthetics. And there is a possibility to make this thing even more advanced by covering the structure of the prosthesis the bio platform, where the surface makes possible that the skin cells can touch to that layer.

This means that the system would be covered by their own skin of the person, that thing will make life easier, or people would not stare at the prosthesis all the time. The soft tissues what would touch that prosthesis would hide it from the eyes of the other people. This kind of prosthesis could use the same kind of wireless charger for battery, which is used to load the batteries inside that prosthesis.

Or they can be equipped with a similar plutonium battery, what is created for pacemakers. The structure of those prostheses would be the carbon fiber. And the effective computer can be installed in that hand. And then the thing would operate like the real hand. In fact, the computer would communicate with the nervous system by decoding the signal from the nerve system to the control signal of the brains.




Saturday, March 30, 2019

Animals and prosthesis can help many operators in the world.

Animals and prosthesis can help many operators in the world.

In animal protection, the authorities might use next-generation tracking technology.  Any animal in the world can be equipped with a surgically implanted GPS system and the system that would detect the illegal hunters by using the detectors, what observe the body functions. If the body functions of animal disappear the implant would send the message to the observation center, and the operators would notice that the body functions of the animal disappear.

In some scenarios, the animals, what is otherwise wealthy, but what is lost another eye can surgically be implanted the eye prosthesis, what would send the image to the center, where a couple of personnel would look at the screens.  Those prostheses are also tested with humans, whose eyes have been damaged, and they would send the signal to the brains and act like a normal eye. One of the problems of those active prostheses is that it can send the image to the observer by using the satellite data system.

The thing is that inside the skull of that animal can implant the small microchip, what would be connected to the ear nerves. And that microchip can use to send the orders to that animal, what is trained to react them. The stimulation of those nerve tracks would cause that the animal would notice that stimulation as the same way with the sense of hearing, and that kind of system can be used to control the trained animal.

Also, the intelligent eye prosthesis can use with animals. If the animal would be lost its eye, the implant can surgically install to the eye socket. The handicapped animal can be chosen in that kind of experiments. And in fact, if the rat or some other animal would get this kind of implanted camera, it can use as a probe in the world of animals.

But the thing is that the rats can be used as the biorobots. The problem with the use of trained animals, what knowns complicated movements and actions are that the training process of those animals is complicated.

If we would want to train rats to search for explosives or drugs, we must only make them think, that those chemicals are food. And then those animals would be released on the operational area. In the Thirty Years' War, the soldiers trained animals to find the enemy powder storages, and in the head of those animals were connected the candle or firewire.

When the animal went in the storage, that thing caused an explosion. In some CIA experiments, those animals would be equipped with the microwave transmitters or explosive collars, and when those rats went in the ammo storage, the operators would explode those explosives or launch the microwave transmitter.

The used animal was the rat because those rodents are everywhere. In some cases, those animals are equipped with GPS locators and they are dropped in the different places of the operation area, and then they are starting to accumulate the places, where the explosives are hidden, and then the aircraft can bomb that target with smart bombs, what will terminate those explosives and weapons.

Computer researchers published a new algorithm that revolutionizes web management.

The new database structures require new and powerful tools to manage databases in non-centralized solutions. The new data structures can be ...