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A Gaussian Mixture Model Based Classification Scheme for Myoelectric Control of Powered Upper Limb Prostheses

IEEE Transactions on Biomedical Engineering · 2005 · Vol. 52(11) · pp. 1801–1811
Yanjiang HuangKevin EnglehartB. HudginsAdrian D. C. Chan

Abstract

This paper introduces and evaluates the use of Gaussian mixture models (GMMs) for multiple limb motion classification using continuous myoelectric signals. The focus of this work is to optimize the configuration of this classification scheme. To that end, a complete experimental evaluation of this system is conducted on a 12 subject database. The experiments examine the GMMs algorithmic issues including the model order selection and variance limiting, the segmentation of the data, and various feature sets including time-domain features and autoregressive features. The benefits of postprocessing the results using a majority vote rule are demonstrated. The performance of the GMM is compared to three commonly used classifiers: a linear discriminant analysis, a linear perceptron network, and a multilayer perceptron neural network. The GMM-based limb motion classification system demonstrates exceptional classification accuracy and results in a robust method of motion classification with low computational load.

Muscle activation and electromyography studiesEEG and Brain-Computer InterfacesNeuroscience and Neural EngineeringMixture modelPattern recognition (psychology)Artificial intelligenceComputer scienceMultilayer perceptronSegmentationPerceptronArtificial neural networkAutoregressive modelLinear discriminant analysis

MeSH terms

AlgorithmsArtificial IntelligenceElectromyographyJoint ProsthesisModels, BiologicalMovementMuscle ContractionPattern Recognition, AutomatedProsthesis DesignTherapy, Computer-AssistedModels, StatisticalNormal DistributionUpper Extremity
Citations
641
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15.24
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Cited by
Support Vector Machine-Based Classification Scheme for Myoelectric Control Applied to Upper Limb
IEEE Transactions on Biomedical Engineering · 2008 · 816 citations
References
A new strategy for multifunction myoelectric control
IEEE Transactions on Biomedical Engineering · 1993 · 2,108 citations
A wavelet-based continuous classification scheme for multifunction myoelectric control
IEEE Transactions on Biomedical Engineering · 2001 · 695 citations
A robust, real-time control scheme for multifunction myoelectric control
IEEE Transactions on Biomedical Engineering · 2003 · 1,718 citations
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