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A Real-time EMG-based Assistive Computer Interface for the Upper Limb Disabled

Changmok Choi, Jung Kim

Year
2007
Citations
29

Abstract

This paper presents the design of an assistive real-time system for the upper limb disabled to access a computer via residual muscle activities without standard computer interfaces (e.g. a mouse and a keyboard). For this purpose, electromyogram (EMG) signals from muscles in the lower arm were extracted and filtered using signal statistics (mean and variance). In order to control movement and clicking of a cursor from the obtained signals, six patterns were classified, applying a supervised multi-layer neural network trained by a backpropagation algorithm. In addition, an on-screen keyboard was developed, making it possible to enter Roman and Korean letters on the computer. Using this computer interface, the user can browse the Internet and read/send e-mail. The developed computer interface provides an alternative means for individuals with motor disabilities to access computers. A possible extension of our interface methodology can be incorporated in controlling bionic robot systems for the limb disabled (e.g. exoskeletons, limb prostheses).

Keywords

Computer scienceInterface (matter)Brain–computer interfaceCursor (databases)ExoskeletonHands freeArtificial neural networkBackpropagationUser interfaceThe Internet

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