How will medical care change when wearable devices are implanted in the body?

When I was a child, I especially liked to watch an animated cartoon called "Ghost Shell". The era based on this cartoon is dominated by computers, artificial intelligence and the Internet. The development of technology has made it possible to implant communication terminals into the human body, and humans can interact directly with computers and networks. Not only thought, but also the rapid development of prosthetic technology, which makes "all organs are artificial" possible.

赛博格 is the transliteration of English "Cyborg", which is a unified and unified function composed of human and man-made objects. It is essentially "the human nervous system is connected with the computer." "Chassis Agent Team" is the initial source of the cyborg concept, and has a significant impact on sci-fi works such as "The Matrix." With the continuous development of science and technology, it is impossible to achieve the state of "all organs are artificial" in real life, but there have been many advances in research such as chip implantation. Software developers, students, and entrepreneurs are the first to be interested in body implant technology.

"The world's first electronic man"

Professor Kevin Warwick is currently the Vice President of Coventry University in the United Kingdom. He is known as "the world's first electronic man." Back in 1998, Warwick successfully implanted the chip into his arm, making him the first person in the world to carry a chip in his body. The chip is placed in a small glass tube of 23 mm in length and 3 mm in diameter. In addition to the silicon chip, there is an electromagnetic coil in the tube.

In 2002, he again took the knife and implanted a chip with 100 electrodes on his wrist and connected it to the computer through wires. When he wants to clench his fist, the brain's electrical signals pass through the nervous system and pass through the wrist to the palm of his hand. The wafer electrode is in contact with the nerve cells, so it also receives electronic signals from the brain. The chip transmits the signal to the computer, the computer records and analyzes the signal, and copies the same signal, which is then transmitted to the robot, and the robot makes a punch.

In a later experiment, Warwick also implanted a wafer electrode for his wife that could be connected to Warwick's brain. When his wife clenched his fists, Warwick's brain received a pulsed current that he described as "a very basic form of telegram communication between our nervous systems." Most implants now do not communicate with the human body, but instead communicate with subcutaneously implanted sensors and external interaction technologies. This may change.

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