Biomimicry News
Recent News |  Archives |  Tags |  About |  Newsletter |  Submit News |  Links |  Subscribe to BiomimicryNews.com RSS Feed Subscribe


More Articles
Fish can recognize a face based on UV pattern aloneFish can recognize a face based on UV pattern alone

Ancient DNA from rare fossil reveals that polar bears evolved recently and adapted quicklyAncient DNA from rare fossil reveals that polar bears evolved recently and adapted quickly

'Anaconda' meets 'Jurassic Park': Study shows ancient snakes ate dinosaur babies'Anaconda' meets 'Jurassic Park': Study shows ancient snakes ate dinosaur babies

Scientists locate apparent hydrothermal vents off AntarcticaScientists locate apparent hydrothermal vents off Antarctica

Mars Express heading for closest flyby of PhobosMars Express heading for closest flyby of Phobos

Predicting the fate of stem cellsPredicting the fate of stem cells

Artificial foot recycles energy for easier walkingArtificial foot recycles energy for easier walking

New fiber nanogenerators could lead to electric clothingNew fiber nanogenerators could lead to electric clothing

What drives our genes? Researchers map the first complete human epigenomeWhat drives our genes? Researchers map the first complete human epigenome

Juggling enhances connections in the brainJuggling enhances connections in the brain

Tracking down the human 'odorprint'Tracking down the human 'odorprint'

Fill 'er up - with algaeFill 'er up - with algae

Scientists discover quantum fingerprints of chaosScientists discover quantum fingerprints of chaos

Researchers help identify cows that gain more while eating lessResearchers help identify cows that gain more while eating less

Researchers Build Robotic Ankle With Power-Assisted Joint (7/27/2007)

Tags:
prosthetics

The powered ankle-foot prosthesis developed at the MIT Media Lab by Professor Hugh Herr and researchers in the lab's biomechatronics research group. - Photo Credit: Webb Chappel
The powered ankle-foot prosthesis developed at the MIT Media Lab by Professor Hugh Herr and researchers in the lab's biomechatronics research group. - Photo Credit: Webb Chappel
An Army veteran who lost part of his leg in Iraq walked with more spring in his step Monday as he unveiled the world's first robotic ankle -- an important advance for lower-limb amputees that was developed by a team at MIT.

Garth Stewart, 24, who lost his left leg below the knee in an explosion in Iraq, demonstrated the new powered ankle-foot prosthesis during a ceremony at the Providence, R.I., Veterans Affairs Medical Center. Stewart walked in the device, which, unlike any other, propels users forward using tendon-like springs and an electric motor. The prototype device reduces fatigue, improves balance and provides amputees with a more fluid gait. It could become commercially available as early as the summer of 2008.

MIT Media Lab Professor Hugh Herr and his team of researchers developed the ankle-foot. Herr, NEC Career Development Professor and head of the biomechatronics research group at the Media Lab, is a VA research investigator. He is also a double amputee who tested his invention: "This design releases three times the power of a conventional prosthesis to propel you forward and, for the first time, provides amputees with a truly humanlike gait," Herr said.

"It's wild," he said, "like you're on one of those moving walkways in the airport."

Because conventional prostheses only provide a passive spring response during walking, they force the amputee to have an unnatural gait and typically to expend some 30 percent more energy on walking than a non-amputee. The new ankle is light, flexible, and -- most importantly -- generates energy for walking beyond that which can be released from a spring alone.

This is accomplished through a device equipped with multiple springs and a small battery-powered motor. The energy produced from the forward motion of the person wearing the prosthesis is stored in the power-assisted spring, and then released as the foot pushes off. Additional mechanical energy is also added to help momentum.

Herr created the device through the Center for Restorative and Regenerative Medicine (CRRM), a collaborative research initiative that includes the Providence VA Medical Center, Brown University and MIT. The center's mission is to improve the lives of individuals with limb trauma through tissue restoration, advanced rehabilitation and new prosthetics that give amputees - particularly war veterans - better mobility and control of their limbs and reduce the discomfort and infections common with current prostheses.

To achieve this goal, the center funds a team of researchers with expertise in tissue engineering, orthopedics, neurotechnology, prosthetic design and rehabilitation. The aim is to bring these complementary techniques together to create "biohybrid" limbs composed of biological and man-made materials - a melding of man and machine.

To meet this goal, the VA has provided an additional $6.9 million to construct a state-of-the-art rehabilitation research building that will house the center on the campus of the Providence VA Medical Center. Construction begins this fall.

"A major goal of the center is to develop artificial limbs that perform like biological ones," said Professor Roy Aaron, M.D., of Brown University, director of the CRRM. "Hugh Herr and his team have met that goal - and done so successfully. This device is a major step forward for Garth Stewart and other amputees."

Joel Kupersmith, M.D., chief research and development officer for VA, said a top priority for the department is providing state-of-the-art prosthetic care for veterans - especially those returning from Iraq and Afghanistan. VA research, he said, is integral to this effort.

"The robotic ankle is a sterling example of how our leading-edge research improves veterans' lives," Kupersmith said. "Up to now, prosthetic devices have not been able to duplicate the complex functions of our feet and ankles as we walk and run. The ingenious computerized design of this new prosthesis changes all of this, as it constantly 'thinks' and responds, allowing the person to walk or run in a more natural and comfortable way."

Michael E. Selzer, M.D., director of Rehabilitation Research and Development for VA, agreed: "Hugh Herr and his Media Lab group are well-known for their scientific ingenuity and creativity on behalf of amputees. This new technology represents rehabilitation research at its finest, and is yet another milestone in VA's long history of outstanding achievements in this area."

What's next? According to Herr, within the next year he hopes to get small, wireless implants into his muscles near the neuromuscular juncture, so that when the muscle contracts, the electrical impulse will send precise information to control the artificial limb. Looking longer term, Herr is working with Brown's Aaron to determine if an implant could be used to mechanically attach the artificial limb directly to the amputee's residual limb bone. The goal: to transmit loads directly to the bone structure of the amputee, eliminating the discomfort now experienced with conventional prostheses.

Note: This story has been adapted from a news release issued by MIT

Post Comments:

Search

New Articles
Strength is shore thing for sea shell scientistsStrength is shore thing for sea shell scientists

Mussels - material artists with gripMussels - material artists with grip

Artificial bee silk a big step closer to realityArtificial bee silk a big step closer to reality

Glue, fly, glueGlue, fly, glue

Gecko's lessons transfer wellGecko's lessons transfer well

Mussel-inspired 'glue' for fetal membrane repairMussel-inspired 'glue' for fetal membrane repair

Slime design mimics Tokyo's rail systemSlime design mimics Tokyo's rail system

Unusual snail shell could be a model for better armorUnusual snail shell could be a model for better armor

Cockroaches offer inspiration for running robotsCockroaches offer inspiration for running robots

Dental delight: Tooth of sea urchin shows formation of biomineralsDental delight: Tooth of sea urchin shows formation of biominerals

Copying mother nature's designsCopying mother nature's designs

Tough yet stiff deer antler is materials scientist's dreamTough yet stiff deer antler is materials scientist's dream

The cause behind the characteristic shape of a long leaf revealedThe cause behind the characteristic shape of a long leaf revealed

Scientists are first to 'unlock' the mystery of creating cultured pearls from the queen conchScientists are first to 'unlock' the mystery of creating cultured pearls from the queen conch

Mushrooms, water-repellants more similar than you might thinkMushrooms, water-repellants more similar than you might think



Archives
March 2010
January 2010
December 2009
November 2009
October 2009
September 2009
August 2009
July 2009
June 2009
May 2009
April 2009
March 2009
February 2009
January 2009
December 2008
November 2008
October 2008
September 2008
August 2008
July 2008
May 2008
April 2008
March 2008
February 2008
January 2008
December 2007
November 2007
October 2007
September 2007
August 2007
July 2007
June 2007
October 2006


Science Friends
Agricultural Science
Astronomy News
Biology News
Cognitive Research
Chemistry News
Tissue Engineering
Cancer Research
Cybernetics Research
Forensics Report
Fossil News
Genetic Archaeology
Genetics News
Geology News
Nanotech News
Physics News


  Archives |  Submit News |  Advertise With Us |  Contact Us |  Links
Use of this site constitutes acceptance of our Terms of Service and Privacy Policy. All contents © 2000 - 2011 Web Doodle, LLC. All rights reserved.