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Do You Know The Technical Principles Of Nanorobots?
Release time:
2024-08-21
The so-called nanorobot refers to a type of ultra micro robot that can work at the nanoscale. Nanorobots not only have a volume in the nanometer range, but their operating environment is also in the nanometer range. How much is one nanometer? For example, the diameter of a hair is between 40000 and 50000 nanometers, the average diameter of a cell is between 10000 and 20000 nanometers, and nanorobots are much smaller than cells.
The idea of nanorobots is to apply biological principles at the nanoscale, discover new phenomena, and develop programmable molecular robots. The redesign of cellular signaling and gene regulatory networks in synthetic biology has led to the development of "in vivo" or "wet" biological computers or cellular robots, resulting in another form of nanorobotics technology.
Principles of Nanorobot Technology:
The emergence of nanobiology is inseparable from the invention of SPM and its applications in life sciences. The process of life is the most complex thing known in physics and chemistry. Unlike macroscopic biology, nanobiology observes life phenomena from a microscopic perspective and aims to manipulate and modify molecules. The development of nanobiology has achieved remarkable results in a short period of time. Biological scientists have proposed many challenging new concepts in the field of nanobiology. The processing technology of nanobiology can learn from biological cells.
In fact, every cell is a living example of nanotechnology application: cells not only convert fuel into energy, but also build and activate proteins and enzymes based on the information stored in DNA. By recombining DNA from different species, genetic engineers have learned to build new nanotools of this kind, such as using bacterial cells to produce medical hormones. Scientists have developed various nanorobots that can enter the microscopic world of the human body and walk based on the principles of molecular pathology. They are expected to be used to remove harmful substances, repair damaged genes, activate cellular energy, maintain human health, and extend human lifespan. Medical nanorobots are still in the experimental stage.
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