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Myoelectric Control of Artificial Limb Inspired by Quantum Information Processing

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arxiv 1302.3934 v2 pith:HHLA3XZA submitted 2013-02-16 quant-ph physics.med-ph

classification quant-phphysics.med-ph
keywords controllimbartificialprocessingdifferentinformationmyoelectricneural
verification ladder T0 review T1 audit T2 compute T3 formal
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Precise and elegant coordination of a prosthesis across many degrees of freedom represents a significant challenge to efficient rehabilitation of people with limb deficiency. Processing the electrical neural signals, collected from the surface of the remnant muscles of the stump, is a common way to initiate and control the different movements available to the artificial limb. Based on the assumption that there are distinguishable and repeatable signal patterns among different types of muscular activation, the problem of the prosthesis control reduces to one of pattern recognition. Widely accepted classical methods for pattern recognition, however, cannot provide simultaneous and proportional control of the artificial limb. Here we show that, in principle, quantum information processing of the neural signals allows us to overcome the above-mentioned difficulties suggesting a very simple scheme for myoelectric control of artificial limb with advanced functionalities.

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