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Innovations in Prosthetic Interfaces for the Upper Extremity

Theodore A. Kung, Reuben A. Bueno, Ghadah K. Alkhalefah, Nicholas B. Langhals, Melanie G. Urbanchek, Paul S. Cederna

Year
2013
Citations
73

Abstract

Advancements in modern robotic technology have led to the development of highly sophisticated upper extremity prosthetic limbs. High-fidelity volitional control of these devices is dependent on the critical interface between the patient and the mechanical prosthesis. Recent innovations in prosthetic interfaces have focused on several control strategies. Targeted muscle reinnervation is currently the most immediately applicable prosthetic control strategy and is particularly indicated in proximal upper extremity amputations. Investigation into various brain interfaces has allowed acquisition of neuroelectric signals directly or indirectly from the central nervous system for prosthetic control. Peripheral nerve interfaces permit signal transduction from both motor and sensory nerves with a higher degree of selectivity. This article reviews the current developments in each of these interface systems and discusses the potential of these approaches to facilitate motor control and sensory feedback in upper extremity neuroprosthetic devices.

Keywords

ReinnervationSensory systemInterface (matter)Computer scienceMotor controlNeuroprostheticsPhysical medicine and rehabilitationNeuroscienceBrain–computer interfaceHuman–computer interaction

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