Skip to: Content
Skip to: Site Navigation
Skip to: Search

  • Advertisements

New transistor allows humans, machines to merge. Are cyborgs imminent?

Scientists at Lawrence Livermore National Laboratories in California have created a transistor that is controlled by biological proteins, allowing for electronic devices to be wired directly into the human body.

By Stephanie Pappas, TechNewsDaily Contributor / May 19, 2010

Scientists at Lawrence Livermore National Laboratories in California have developed a tiny transistor powered by the biological compound ATP, which could lead to electronics integrated directly with the body, creating true cybernetic organisms.

Newscom/File

Enlarge

Humans and machines could be one step closer to merging thanks to a new transistor controlled by the molecule that powers biological cells.

Skip to next paragraph

The nano-sized device could be used in medical devices or prosthetics wired directly into the human body.

"Our devices make a bridge between the biological world and the electronic world," said Aleksandr Noy, who developed the transistor along with colleagues at Lawrence Livermore National Laboratories in California. "In effect, we made a biological protein talk directly with a nanoelectronic circuit."

Transistors are electronic components that can modulate or switch current on and off in a circuit. To make one that would respond to a biological molecule, Noy and his team borrowed from living cells.

First, they built the backbone of the transistor out of a carbon nanotube between two electrodes. Next, they insulated the electrodes and covered the nanotube with a mixture of fatty molecules called lipids and proteins. The covering formed a lipid "bilayer" — a double lipid membrane — much like those that make up the outer membranes of biological cells.

The researchers then poured a solution of sodium ions, potassium ions and adenosine triphosphate, or ATP, over the transistor while running a voltage through it. In cells, ATP is the primary source of energy. It fulfilled the same role in the transistor, powering the proteins embedded in the lipid bilayer.

These proteins began working, transferring sodium and potassium ions across the bilayer. The charges from the ions created an electrical field around the transistor, which then changed the ability of the transistor to conduct electricity by as much as 35 percent. The higher the concentration of ATP, the more the conductivity changed.

Getting a biological molecule to control the electric current in a transistor is a first step toward computers that would interface directly with the brain, Noy told TechNewsDaily.

That could include "futuristic" devices that would translate thought directly to typed words, he said, but could also have a more immediate application in the field of prosthetics.

To develop machines controlled by the mind, "we will need to have a way for our [brain cells] to talk to the electronic systems," Noy said. "I think what we demonstrated is a first step towards that distant goal."

Related:

Nanotechnology may have found its Henry Ford

Eyes flashing, I-Fairy robot conducts wedding in Tokyo

Opinion: Expect exponential progress

E-mail

Photos of the day

05.27.12 »

Editors' Picks:

Become a fan! Follow us! YouTube Link up with us! See our feeds!

What happens when ordinary people decide to pay it forward? Extraordinary change. See how individuals are making a difference...

Pastor Jean Enock Joseph (c.) visits one of his projects in Croix-des-Bouquets, just outside Port-au-Prince, Haiti’s capital.

Jean Enock Joseph teaches self-help to lift Haiti

Pastor Jean Enock Joseph doesn't shy from Haiti's toughest problems. His message: Haitians have the ability to help themselves.