Showing posts with label nanotechnology. Show all posts
Showing posts with label nanotechnology. Show all posts

Monday, July 21, 2025

The intelligent pills and nanosubs are coming to the estrade.




Intelligent pills mean systems that deliver medicine only when the body needs it. The system is a microchip-controlled capsule and sensor pack that analyses things like blood sugar and then releases diabetes medicine into the body. That is one of the most conventional uses of the intelligent pills. The intelligent pills can also detect things like the neural system’s animal functions and release medicine to the blood. 

This kind of thing can help to make people survive neurotoxin exposure. The intelligent pills can release atropine into the blood if a person is under nerve gas exposure. Theoretically, all medicines can be released from intelligent capsules. But the system must recognize the threat. And then release the right medicals. 

The intelligent pills can also map the gut and find things like harmful bacteria from the stomach. The most extreme version of the intelligent pills is the nanosubmarine that can swim in the human blood vessels. And then inject the medications into the right cells. That allows the use of new types of medicals like artificial mRNA to fix the cells.  

"Nanosubmarines, or nanosubs, are synthetic microscopic devices that can navigate and perform specific tasks within the human body. Most of the self-propelled devices will be used to detect substances, decontaminate the environment, perform targeted drug delivery, conduct microsurgery and destroy malicious cells. Nanosubmarines use a variety of methods to navigate through the body; currently the preferred method uses the electrochemical properties of molecules. There have been multiple successful tests using this technology to heal mice with inflammatory bowel diseases. The general goal of nanosubmarines is to be able to produce a machine which can sense and respond autonomously, all while being fueled by its environment."  (Wikipedia, Nanosubmarine)



Above: Artist's view in nanosubmarine in veins. 

The main purpose of a nanosubmarine is to navigate the body and perform a specific task. The most speculated task is the treatment and diagnosis of diseases from within the body. This is supported by the task of detecting substances, as most diseases cause a specific type of protein or other molecule to be made in abundance within the bloodstream. Another speculated task is microsurgery. With this technology, doctors will be able to perform surgery on specific locations from within the body..One example of this could be a treatment for cancer. A nanosubmarine could be built to detect specific cancer cells within the body; after locating the cells, the nanosub would be able to kill only the mutated cells and ignore healthy cells. " (Wikipedia, Nanosubmarine)

But intelligent nanotechnical systems can also make it possible. To perform X-ray fluoroscopy. Or ultrasound research in the human body. In that case, the sensors. Those around the body can send signals that allow for mapping injuries from the body. The system can use receivers that are connected to the skin. The system can use ultrasound to make images of tissues and bones to search and report injuries. The internal systems can also observe blood pressure and oxygen level, and nutrient needs. The internal system can send acoustic or electromagnetic signals from inside the body. And that makes it a more effective way to observe tissues. The system allows real-time observation of the blood pressure, blood flow, oxygen and many other things. 

In the most radical visions, those systems are surgically implanted. That kind of system makes it possible to search injuries from the body using a system that is based on surgically implanted sensors. That system can also communicate with receivers that connect this system to BlueTooth and computers and mobile systems. That kind of tool can be effective in everyday work, military operations, and sports. People like astronauts also need a system that can search injuries in real time. The ultrasound- and X-ray systems in the suit can detect injuries and observe the health of the operator. 


https://retailpharmacymagazine.com.au/micro-submarines-inside-body-could-deliver-meds/


https://www.rudebaguette.com/en/2025/07/these-sensors-see-what-humans-cant-chinese-tech-breakthrough-unleashes-vision-chip-that-surpasses-the-human-eye-and-redefines-machine-perception-forever/

https://scitechdaily.com/caltechs-new-smart-pill-can-read-your-gut-like-never-before/

https://en.wikipedia.org/wiki/Nanosubmarine

Monday, October 24, 2022

The new sensors benefit information about living organs and quantum technology.


Image 1


Researchers found near atomic-scale detail in the mechanism of hearing.


Researchers found near atomic-scale detail in the mechanism of hearing. This allows us to create new types of sensors. Which are suitable for robots. Those systems make it possible to connect the microchips to the sensors of some animals. And those systems can send data on how those animals see and hear things. 

Knowledge of some senses and their interaction with the neural system is an important thing. The problem with small-size sensors and biological sensors is solving how the sensor interacts with electric systems. 

If researchers can someday build an artificial ear that works in the same way,  as the real ear by using similar biological systems. They can make new types of observations about noise. By using real ears. Researchers can test how disturbing or painful some noise is. But those systems can also connect with robots. 






Image 2:) 


https://scitechdaily.com/scientists-discover-mechanism-of-hearing-in-near-atomic-detail/amp/


The new quantum sensors are making a revolution in science. 


Researchers manipulated light on the nanoscale. And that works as a pathfinder for new type 3D screens and VR systems. This also makes it possible to create new scanners that can scan nanometer-scale structures. And that thing can be useful in the new nanomachines. 

But the ability to manipulate light in the nanoscale makes it possible to create a new type of sensor. If we think about the 100% reflecting mirrors and nano-size laser rays we could create a new version of the telescope, that observes gravitational waves. That kind of telescope might have a honeycomb structure where the extremely thin laser ray is jumping from the walls. 

And that thing makes it possible to create a laser ray that length is the same as the Ligo sensor, but the package can be more compact. The new type of gravitational sensor could be the cube where laser ray jumps between walls. If that kind of thing can be possible. The gravitational waves can benefit easier. Those waves can give information about things that are happening inside neutron stars and black holes. 

In those sensors, the quantum entanglements can make the things like laser rays.  Those systems can get an accuracy That is higher than ever before. Quantum entanglement acts like a laser ray. When energy hits it the sensor detects that change. 

The new quantum sensors can also replace the GPS. Those quantum sensors can be next-generation navigation tools. Those quantum navigation tools are still under research. 

The idea of those systems can be seen in image 2. There is a network of quantum transmitters at certain points on Earth, and the system detects the position of those transmitters. There is the possibility that the Earth's magnetic fields are unique a certain points on Earth. That thing can detect by ultra-accurate sensors. 


https://scitechdaily.com/breaking-an-optical-rule-engineers-manipulate-light-at-the-nanoscale/


https://scitechdaily.com/entanglement-enhanced-matter-wave-interferometer-now-with-double-the-spookiness/


Image 2:) https://scitechdaily.com/high-tech-quantum-sensors-navigating-when-gps-goes-dark/

The system can create quantum-correlated photons from sunlight.

"Correlated photon pairs, generated via sunlight-pumped spontaneous parametric down-conversion in a nonlinear crystal, demonstrate ghos...