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  2. Robotic prosthesis control - Wikipedia

    en.wikipedia.org/wiki/Robotic_Prosthesis_Control

    Echo control tries to take the kinematics from the sound leg and control the prosthetic leg to match the intact leg when it reaches that part of the gait cycle. [3] In 1988 a battery-powered active knee joint powered by DC motors and controlled by a robust position tracking control algorithm was created by Popovic and Schwirtlich.

  3. Jaipur foot - Wikipedia

    en.wikipedia.org/wiki/Jaipur_foot

    A Jaipur foot in production. The Jaipur foot, also known as the Jaipur leg, is a rubber-based prosthetic leg for people with below-knee amputations.Although inferior in many ways to the composite carbon fibre variants, its variable applicability and cost efficiency make it an acceptable choice for prosthesis.

  4. Flex-Foot Cheetah - Wikipedia

    en.wikipedia.org/wiki/Flex-Foot_Cheetah

    2 "bladerunners" using this sort of prosthetic foot. CGI image. The Flex-Foot Cheetah is a prosthetic human foot replacement developed by biomedical engineer Van Phillips, who had lost a leg below the knee at age 21; the deficiencies of existing prostheses led him to invent this new prosthesis.

  5. Prosthesis - Wikipedia

    en.wikipedia.org/wiki/Prosthesis

    The Capua leg (replica) A wooden prosthetic leg from Shengjindian cemetery, circa 300 BCE, Turpan Museum. This is "the oldest functional leg prosthesis known to date". [ 27 ] Iron prosthetic hand believed to have been owned by Götz von Berlichingen (1480–1562) "Illustration of mechanical hand", c. 1564 Artificial iron hand believed to date ...

  6. Nigerian group provides hundreds of prosthetic limbs to ... - AOL

    www.aol.com/news/nigerian-group-provides...

    The accident that broke 10-year-old Princess Igbinosa's right leg could have crushed her dreams of becoming a model in a country where not many can afford prosthetics to cope with life and fight ...

  7. Biomechatronics - Wikipedia

    en.wikipedia.org/wiki/Biomechatronics

    The researchers are also nearing a breakthrough which would allow a person with an amputated leg to control their prosthetic leg through their stump muscles. Researchers at MIT have developed a tool called the MYO-AMI system which allows for proprioceptive feedback (position sensing) in the lower extremity (legs, transtibial).