Absrtact: The biggest obstacle to the development of human implantable devices is the difficulty of charging, and the technology developed by Stanford University's central-wireless transmission charging system can carry the capacity of the implanted sensors, pacemakers and nerve stimulator to put a card on the body.
The biggest obstacle to the development of human implantable devices is the difficulty of charging, the "midfielder wireless transmission" technology, developed at Stanford University, is capable of delivering electricity to implanted sensors, pacemakers and nerve-stimulator devices-putting a card sized card on the body to charge an electronic device that wanders inside the body. The charging device radiates the same amount of radio waves as a smartphone, so there is no need to worry about security issues.
In general, micro implants need to consider the issue of battery replacement, this charging technology not only solves the problem, but also can further reduce the size of the implant equipment-to rice sizes, the smaller the volume of the more accurate to capture human physiological information.
Researchers have experimented with the technique in both pigs and rabbits, and the next step is to test the body, but it will take years for regulators to approve.
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