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Man with bionic leg to climb skyscraper

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To prepare, Vawter and the scientists have spent hours adjusting the leg’s movements.

On one recent day, 11 electrodes placed on the skin of Vawter’s thigh fed data to the bionic leg’s microcomputer. The researchers turned over the “steering” to Vawter.

He kicked a soccer ball, walked around the room and climbed stairs. The researchers beamed.

Vawter likes the bionic leg. Compared to his regular prosthetic, it’s more responsive and more fluid. As an engineer, he enjoys learning how the leg works.

It started with surgery in 2009. When Vawter’s leg was amputated, a surgeon repositioned the residual spaghetti-like nerves that normally would carry signals to the lower leg and sewed them to new spots on his hamstring. That would allow Vawter one day to be able to use a bionic leg, even though the technology was years away.

The surgery is called “targeted muscle reinnervation” and it’s like “rewiring the patient,” Hargrove said. “And now when he just thinks about moving his ankle, his hamstring moves and we’re able to tell
the prosthesis how to move appropriately.”

To one generation it sounds like “The Six Million Dollar Man,” a 1970s TV show featuring a rebuilt hero. A younger generation may think of Luke Skywalker’s bionic hand.

But Hargrove’s inspiration came not from fiction, but from his fellow Canadian Terry Fox, who attempted a cross-country run on a regular artificial leg to raise money for cancer research in 1980.

“I’ve run marathons, and when you’re in pain, you just think about Terry Fox who did it with a wooden leg and made it halfway across Canada before cancer returned,” Hargrove said.

Experts not involved in the project said the research is on the leading edge.

Most artificial legs are passive.

“They’re basically fancy wooden legs,” said Daniel Ferris of the University of Michigan.

Others have motorized or mechanical components but don’t respond to the electrical impulses caused by thought.

“This is a step beyond the state of the art,” Ferris said. “If they can achieve it, it’s very noteworthy and suggests in the next 10 years or so there will be good commercial devices out there.”

Copyright 2013 The Associated Press. All rights reserved. This material may not be published, broadcast, rewritten or redistributed.

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