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Original Article

Control of upper-limb prostheses

A case for neuroelectric control

Pages 57-61 | Published online: 09 Jul 2009

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Read on this site (1)

Kengo Ohnishi, Richard F Weir & Todd A Kuiken. (2007) Neural machine interfaces for controlling multifunctional powered upper-limb prostheses. Expert Review of Medical Devices 4:1, pages 43-53.
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Articles from other publishers (19)

A A Kabanov & G V Nikonova. (2021) Gesture recognition system based on electromyography signals. Journal of Physics: Conference Series 1791:1, pages 012100.
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Rafi Ayub, Dario Villarreal, Robert D Gregg & Fan Gao. (2016) Evaluation of transradial body-powered prostheses using a robotic simulator. Prosthetics and Orthotics International 41:2, pages 194-200.
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Diana Avdeeva, Ekaterina Zakharchenko, Dang Quang Nguyen, Nikita Turushev, Aryslan Abdrakhmanov, Roman Vorona, Arnold Popkov & Sergey Tverdokhlebov. (2016) Advantages of Nanosensors in the Development of Interfaces for Bioelectric Prostheses. MATEC Web of Conferences 79, pages 01051.
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Roshan James & Cato T. Laurencin. (2015) Regenerative engineering and bionic limbs. Rare Metals 34:3, pages 143-155.
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Todd Kuiken. (2006) Targeted Reinnervation for Improved Prosthetic Function. Physical Medicine and Rehabilitation Clinics of North America 17:1, pages 1-13.
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H. Smart. 2004. Powered Upper Limb Prostheses. Powered Upper Limb Prostheses 191 204 .
Mark B. Colton & Sanford G. Meek. (2002) An Experimental Neuroelectric Prosthetic Arm. IFAC Proceedings Volumes 35:2, pages 313-318.
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R. Muñoz, L. Leija, Ja. Alvarez, J.L. Reyes, J. Flores, Pablo-Ro. Hedz, A. Minor & G. Sierra. (2002) Evaluation of electrical impedance of Pt–Ir epimysial electrodes under implantation in muscles. Sensors and Actuators A: Physical 101:1-2, pages 117-122.
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R. Munoz, L. Leija, J. Alvarez, P.R. Hernandez & J.L. Reyes. (1997) Implantable electrode for chronic recording from skeletal muscle. Implantable electrode for chronic recording from skeletal muscle.
M.J. Osborn & S. Wolpert. (1993) A VLSI-based biological interface for extracellular potentials. A VLSI-based biological interface for extracellular potentials.
T. Gregory & M. Joseph. 1993. Robots and Biological Systems: Towards a New Bionics?. Robots and Biological Systems: Towards a New Bionics? 637 665 .
M.J. Osborn & S. Wolpert. (1992) A VLSI-based biological interface for prosthetic devices. A VLSI-based biological interface for prosthetic devices.
C.J. Abul-Haj & N. Hogen. (1990) Functional assessment of control systems for cybernetic elbow prostheses. I. Description of the technique. IEEE Transactions on Biomedical Engineering 37:11, pages 1025-1036.
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Cary Abul-Haj & Neville Hogan. (1987) An Emulator System for Developing Improved Elbow-Prosthesis Designs. IEEE Transactions on Biomedical Engineering BME-34:9, pages 724-737.
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Carlo J De Luca, L Jack Bloom & L Donald Gilmore. (1987) Compression Induced Damage on In-Situ Severed and Intact Nerves. Orthopedics 10:5, pages 777-784.
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P. Hortensius, S. Onyshko & A. Quanbury. (1986) Low power multichannel electromyographic data acquisition system. Journal of Biomedical Engineering 8:4, pages 364.
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Stephen C. Jacobson, David F. Knutti, Richard T. Johnson & Harold H. Sears. (1982) Development of the Utah Artificial Arm. IEEE Transactions on Biomedical Engineering BME-29:4, pages 249-269.
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Robert W. Mann. (1981) Cybernetic limb prosthesis: The ALZA distinguished lecture. Annals of Biomedical Engineering 9:1, pages 1-43.
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Byron K. Lichtenberg & Carlo J. De Luca. (1979) Distinguishability of Functionally Distinct Evoked Neuroelectric Signals on the Surface of a Nerve. IEEE Transactions on Biomedical Engineering BME-26:4, pages 228-237.
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